Cellnest μ-piece 由人I型胶原蛋白重组多肽形成的新型细胞支架

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  • 相关资料
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  • 参考文献

由人I型胶原蛋白重组多肽形成的新型细胞支架Cellnest μ-piece                              由人I型胶原蛋白重组多肽形成的新型细胞支架

Cellnest μ-piece

Cellnest μ-piece是由人I型胶原蛋白重组多肽经过交联处理所形成的、具有特殊结构的细胞支架。

使用时仅需与细胞混合,就可装配成可防止细胞团中心发生坏死的三维细胞结构体(CellSaic),可应用于细胞移植实验。

 

◆特点

何谓Cellnest


Cellnest是一种以不含有任何动物源成分的酶所产生的重组多肽,由FUJIFILM开发。

其序列不含人I型胶原抗原部位,因此容易被生物体吸收分解。

细胞与独特花瓣形结构的微片混合培养,可形成三维细胞结构体

Cellnest μ-piece                              由人I型胶原蛋白重组多肽形成的新型细胞支架

高细胞存活率


 in vitro LIVE/DEAD染色

Cellnest μ-piece                              由人I型胶原蛋白重组多肽形成的新型细胞支架

LIVE:Calcein(绿)    DEAD:EthD-1(红)


在hMSC制作的多细胞球状体中可观察到散布的死细胞;用μ-piece制作的CellSaic中,可观察到很多活细胞

■ in vitro ATP assay (Day 7)


Cellnest μ-piece                              由人I型胶原蛋白重组多肽形成的新型细胞支架

在hMSC(2×104 cells)中进行ATP定量。从图示中可看到与Spheroid的存活率相比,CellSaic的存活率高约2倍。

细胞存活率高,可应用于细胞移植。微片易于被生物体分解、吸收,是安全型的材料(胶原蛋白重组多肽)

Cellnest μ-piece                              由人I型胶原蛋白重组多肽形成的新型细胞支架

大鼠模型由于大脑动脉阻塞引起右脑梗塞,在其梗塞的部位局部移植入CellSaic(BMSC+μ-piece)。将计算左转行动次数并进行评价,作为症状改善的简单指标。

Cellnest μ-piece                              由人I型胶原蛋白重组多肽形成的新型细胞支架

与仅投与细胞悬液相比,可确认移植进CellSaic对左转行动有改善效果。

◆Cellnest μ-piece制作的CellSaic是什么

● 在细胞球状体中紧密嵌入细胞支架,抑制细胞死亡

● 移植后易于血管导入

细胞球状体

400 μm以上厚度的细胞团,从中心位置开始细胞出现死亡(中心坏死)


Cellnest μ-piece                              由人I型胶原蛋白重组多肽形成的新型细胞支架

CellSaic

以细胞支架与细胞间的间隙,或者是细胞支架自身作为氧气、营养、废弃物的通道

Cellnest μ-piece                              由人I型胶原蛋白重组多肽形成的新型细胞支架

Cellnest μ-piece                              由人I型胶原蛋白重组多肽形成的新型细胞支架

CellSaic制作步骤概要

将μ-piecec(0.1 mg/mL)和细胞(1.0×105 cells/mL)的悬液按照200 μL/well加入96孔U型吸附处理板进行培养。用板式离心机进行离心(600 g×5 min),CO2 孵育(37℃)1~2日,即可完成。

Cellnest μ-piece                              由人I型胶原蛋白重组多肽形成的新型细胞支架

◆产品列表


产品编号 产品名称 包装
633-44791 cellnest μ-piece  10 mg


※ 本页面产品仅供研究用,研究以外不可使用。


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产品编号 产品名称 产品规格 产品等级

cellnest人Ⅰ型重组胶原蛋白肽 cellnest, recombinant peptide based on human collagen type

  • 产品特性
  • 相关资料
  • Q&A
  • 参考文献

cellnest人Ⅰ型重组胶原蛋白肽cellnest人Ⅰ型重组胶原蛋白肽                              cellnest, recombinant peptide based on human collagen type

培养基材料



  可用作细胞培养的基础材料的人I型重组胶原蛋白肽,现已开售。本品不含动物物质(无异物),可实现与动物性胶原相同或以上的细胞贴壁性。

  用于再生医疗研究领域。



◆特点


● 不含动物由来物质(无异物)・・・通过酵母生产,实现高安全性

● 与动物胶原具有同等或以上的细胞贴壁性 ・・・有细胞贴壁性同样的RDG序列的复合构造

● 活体分解吸收性・・・在活体内易分解吸收,适用于医疗研究材料

● 分子量均一・・・可加工成各种形态

● 低内毒素(10 EU/g以下)



结构


  从人I型重组胶原蛋白肽α1链中将含有高细胞贴壁性的RGD序列部分切出4种类型片段,片段连接后,3个相同片段连接成结合物形成本产品 。由于本品不含抗原部分,所以保持很高的细胞贴壁性。


cellnest人Ⅰ型重组胶原蛋白肽                              cellnest, recombinant peptide based on human collagen type

 

易加工型

  本品的分子量51 kDa,分子量均一,操作简单。

  可加工为海绵、颗粒、多孔质粒子等形态。


cellnest人Ⅰ型重组胶原蛋白肽                              cellnest, recombinant peptide based on human collagen type

cellnest人Ⅰ型重组胶原蛋白肽                              cellnest, recombinant peptide based on human collagen type

cellnest人Ⅰ型重组胶原蛋白肽                              cellnest, recombinant peptide based on human collagen type

 


产品质量稳定


本品是通过酵母生产的重组体,批次间品质差异小,可稳定供给。


cellnest人Ⅰ型重组胶原蛋白肽                              cellnest, recombinant peptide based on human collagen type



◆使用案例 


培养实例细胞

  内皮细胞(HUVEC),角质化细胞(NHEK),成肌细胞(C2C12),嗜铬细胞瘤(PC12),成骨细胞系(MC3T3-L1),成纤维细胞系(MC3T3-E1),上皮细胞系(CHO-K1, Vero, MDCK),肾细胞(CV-1)


cellnest人Ⅰ型重组胶原蛋白肽                              cellnest, recombinant peptide based on human collagen type

在涂层了本品的培养皿上培养的HUVEC(人脐静脉血管内皮细胞),贴壁和伸展形态良好。



注:本产品已停产,需要其他细胞外基质可点击:


颗粒型细胞支架cellnest μ-piece
凝胶包埋及薄层包被用胶原Cellmatrix
3D培养全合成温敏性水凝胶Mebil Gel

各种细胞系的细胞涂层方法

1. 3T3L1

2. BHK-21

3. C2C12

4. CHO-K1

5. CV-1

6. hMSC

7. HUVEC

8. MC3T3E1

9. MDCK

10. NHEK

11. Vero

欲了解各种细胞系的细胞涂层方法,请点击相关文字。


参考文献


[1]Kentaro Nakamura, Yasuhiko Tabata.A new fluorescent imaging of renal inflammation with RCP.Journal of Controlled Release, Volume 148, Issue 3, Pages 351-358 


[2]Kentaro Nakamura, Reiko Iwazawa & Yasuhiro Yoshioka.Introduction to a new cell transplantation platform via recombinant peptide petaloid pieces and its application toislet transplantation with mesenchymal stem cells.Transplant International, Volume 29, Issue 9, September 2016, Pages 1039-1050

产品编号 产品名称 产品规格 产品等级
635-30081 cellnest人Ⅰ型重组胶原蛋白肽 0.1%溶液
   cellnest, recombinant peptide based on human collagen type I 0.1% solution
20 mL
638-30071 cellnest人Ⅰ型重组胶原蛋白肽冷冻干燥体
  cellnest, recombinant peptide based on human collagen type I Lyophilized
100 mg

细胞培养用胶原蛋白 Cellmatrix®Series

  • 产品特性
  • 相关资料
  • Q&A
  • 参考文献

细胞培养用胶原蛋白细胞培养用胶原蛋白                              Cellmatrix®Series

Cellmatrix® Series

Cellmatrix是作为细胞培养胶原蛋白开发的。可简单再现各种需要使用胶原蛋白的培养方法。

细胞培养用胶原蛋白                              Cellmatrix®Series


◆Cellmatrix® 系列选择指南(Nitta Gelatin提供)



细胞培养用胶原蛋白                              Cellmatrix®Series

优势、特色


Cellmatrix® Type I-A


 ● 猪腱由来,酸可溶性的Type-I胶原蛋白

 ● 浓度3.0 mg/mL、pH3的无菌溶液

 ● 高凝胶强度,适合胶原蛋白・凝胶包埋培养

 ● 凝胶的透明度高,容易显微镜观察


凝胶透明度的比较


细胞培养用胶原蛋白                              Cellmatrix®Series

Type I –A是面对3D培养的产品,对凝胶形成速度

以及透明度进行了优化。可以在细胞下沉到培养容

器底部前,迅速地形成凝胶。且凝胶的透明度非常

高,易于观察细胞。

 Cellmatrix® Type I-C


 ● 猪皮由来的胃蛋白酶可溶化的Type-I胶原蛋白

 ● 浓度3.0 mg/mL、 pH3的无菌溶液

 ● 低粘度,适合包被

 ● 几乎不会凝胶化


 Cellmatrix® Type I-P


 ● 猪腱由来的胃蛋白酶可溶化的Type-I胶原蛋白

 ● 浓度3.0 mg/mL、pH3的无菌溶液

 ● 粘性低、容易处理

 ● 形成凝胶


 Cellmatrix® Type Ⅳ


 ● 用胃蛋白酶处理牛晶状体前囊精制的Type-Ⅳ胶原蛋白

 ● 低粘度、适合包被

 ● 浓度3.0 mg/mL、pH3的无菌溶液

 ● 不会凝胶化

◆胶原蛋白凝胶培养方法


事前准备


细胞培养用胶原蛋白                              Cellmatrix®Series

胶原蛋白凝胶上培养

细胞培养用胶原蛋白                              Cellmatrix®Series

点击此处查看视频版实验操作

胶原蛋白凝胶包埋培养

细胞培养用胶原蛋白                              Cellmatrix®Series


点击此处查看视频版实验操作

胶原蛋白涂层法

细胞培养用胶原蛋白                              Cellmatrix®Series

点击此处查看视频版实验操作

应用


【Type I-A】

  

经胶原蛋白、凝胶包埋培养的

小鼠乳腺癌细胞增殖形态。


Cellmatrix Type I-A具有高凝胶强度


细胞培养用胶原蛋白                              Cellmatrix®Series

细胞培养用胶原蛋白                              Cellmatrix®Series

【Type I-P】

  Cellmatrix Type I-P可形成比较软的凝胶


细胞培养用胶原蛋白                              Cellmatrix®Series


【Type I-C】


  培养细胞的伸展活性

    

细胞培养用胶原蛋白                              Cellmatrix®Series

          左:未涂布                           右:涂布胶原蛋白

彩页下载,请点击:Cellmatrix® 系列 细胞培养级胶原蛋白



【相关资料】

细胞培养用胶原蛋白                              Cellmatrix®Series

Cellmatrix® 胶原蛋白用细胞培养指南

细胞培养用胶原蛋白                              Cellmatrix®Series


Nitta-Gelatin Product Guide

胶原蛋白凝胶培养方法


事前准备


细胞培养用胶原蛋白                              Cellmatrix®Series

胶原蛋白凝胶上培养

细胞培养用胶原蛋白                              Cellmatrix®Series

胶原蛋白凝胶包埋培养

细胞培养用胶原蛋白                              Cellmatrix®Series

胶原蛋白涂层法

细胞培养用胶原蛋白                              Cellmatrix®Series



Q:    请告知胶原蛋白和明胶的差异。为什么明胶在4℃做凝胶,胶原蛋白在37℃做凝胶?

A:    明胶是胶原蛋白的变性产物,具体地说,胶原蛋白是三股螺旋缠绕的结构,分子量为30万道尔顿,经热等因素而被破坏,形成无规则线圈

          结构的蛋白质为明胶。所以明胶和胶原蛋白,一级结构(氨基酸组成)相同,二级结构不同。这个差异反映了胶原蛋白和明胶产生凝胶的

          条件差异。

          胶原蛋白保持三股螺旋缠绕的结构,在螺旋结构外侧排列着疏水性氨基酸——脯氨酸。胶原蛋白凝胶利用这个疏水性氨基酸,通过<温度

          高的一方,具有高结合力>疏水结合,制备明胶。而明胶二级结构被破坏,亲水性氨基酸在外侧排列,通过氢结合和离子结合制作凝胶。

          当温度高时,<氢结合力+离子结合力>克服明胶主链的热运动,不形成凝胶。但是,当变为低温时,<氢结合力+离子结合力>成为热运动

          力量,明胶形成凝胶。

  

 

Q:    用明胶凝胶是否能培养?

A:    用明胶凝胶不能培养。明胶凝胶在37℃的培养条件下不会形成凝胶,将会溶化。

          在组织培养液中,明胶的用途一般为:在培养皿中进行明胶涂层培养,或在明胶海绵上用福尔马林等进行桥联培养。

  

 

Q:    想购买胶原蛋白凝胶,是否有?

A:    以胶原蛋白溶液的状态作为商品销售。可根据附送的手册,进行胶原蛋白凝胶制作。

          请将Cellmatrix Type I-A作为胶原蛋白凝胶培养产品,进行订购。为第一次做胶原蛋白凝胶培养法的顾客,准备了制作凝胶所必须的试剂

          装和胶原蛋白凝胶培养试剂盒。

  

 

Q:    为什么溶解于酸性溶液的胶原蛋白能进行培养?

A:    实际上,在胶原蛋白包埋细胞前,需要将酸性的胶原蛋白溶液调整成中性。

          调整后的胶原蛋白因为低温保持者溶液状态,以这个状态将细胞悬液混合到胶原蛋白溶液中。

          之后,将含有这个细胞的胶原蛋白溶液移到培养皿中,在37℃中加热,胶原蛋白以细胞包埋状态形成凝胶。

          这个就是胶原蛋白凝胶包埋培养法的制作方法。

          详细请参考在线手册。

  

 

Q:    Cellmatrix有很多的胶原蛋白种类,应该选哪个才好?

A:    根据目的不同,变化使用的种类。

          根据主要目的,将产品系列分成如下种类,请参考。

          胶原蛋白凝胶培养试剂盒、Cellmatrix Typr I-A、Cellmatrix TypeI-P适合胶原蛋白凝胶培养法。

          其他的Cellmatrix(Cellmatrix Type I-C,III,IV)不能进行胶原蛋白凝胶培养。

          Cellmatrix Type I-C适合标准的涂层培养法——胶原蛋白涂层培养法。请根据客人实验的细胞及方法,考虑适合的Cellmatrix ,实验性地

          虑其他类型的胶原蛋白。例如,软骨细胞使用Cellmatrix Type II等,表皮细胞使用Cellmatrix Type IV等。

 

  

Q:    为何胶原蛋白凝胶比琼脂凝胶的培养效率好?

A:    请让我简单地说明琼脂培养法和胶原蛋白凝胶培养法的差异。

          被包埋在胶原蛋白凝胶内的细胞,在胶原蛋白基质上以贴壁的状态进行增殖。         .

          可是,被琼脂包埋的细胞,在琼脂基质上以未贴壁状态进行增殖。所以,贴壁依赖性细胞在胶原蛋白凝胶中进行细胞增殖,在琼脂内不进行

          细胞增殖。

          有报告指出:贴壁依赖性比较低的癌细胞,采用胶原蛋白凝胶培养法比采用琼脂培养法,显示高倍数的克隆形成率。

          有众多报告指出:胶原蛋白凝胶法对细胞增殖、细胞分化的诱导、形态形成等有效。

          关于胶原蛋白凝胶培养法的详细报告,请参考主页的论文介绍。

 

 

Q:    胶原蛋白凝胶包埋培养法和胶原蛋白、涂层培养法,有什么不同?

A:    胶原蛋白凝胶包埋培养法是在胶原蛋白凝胶内做细胞包埋,进行细胞培养的方法。

          被包埋到胶原蛋白内的细胞,和体内一样进行三维增殖。

          胶原蛋白涂层培养法是在培养皿上做胶原蛋白薄涂层,然后再上面进行细胞培养的方法,细胞呈单层增殖。

          综上所述,胶原蛋白凝胶包埋培养法是作为细胞外基质,利用胶原蛋白的三维培养法:胶原蛋白涂层培养法是利用胶原蛋白作为细胞吸附因

          子的二维培养法(单层培养法)。

 

  

Q:    想进行胶原蛋白凝胶培养,应该选哪种Cellmatrix才好?

A:    请选Cellmatrix Type I-A。还有为初学者准备的,含有制作胶原蛋白凝胶全部试剂的胶原蛋白凝胶培养试剂盒。

          建议第一次使用的人购买这个胶原蛋白凝胶培养试剂盒,试剂盒货号是638-00781

 

 

Q:    想进行胶原蛋白、涂层培养防法,应该选哪种Cellmatrix才好?

A:    请选Cellmatrix Type I-C。Cellmatrix Type I-C具有低粘度,处理容易,适合标准胶原蛋白涂层培养法。

          根据细胞种类和培养条件的不同,也能得到更好的适合细胞的胶原蛋白涂层。

          例如,表面细胞可使用Cellmatrix Type IV胶原蛋白等。请进行实验研讨。

  

 

Q:    想学习胶原蛋白培养法,请介绍合适的论文。

A:    详细请参考在线手册。

          该手册详细地介绍了:所谓的胶原蛋白是什么、胶原蛋白培养法的效果、胶原蛋白培养发的具体方法等。

          关于论文,请参考主页的论文介绍项目。

  

 

Q:    请具体地告知胶原蛋白、凝胶包埋培养方法。

A:    将作为酸性溶液的胶原蛋白溶液Cellmatrix Type I-A调整成中性。

          调整后的胶原蛋白因为低温,保持着溶液状态,以这个状态将细胞悬浊液混合到胶原蛋白溶液中。之后江汉油田这个细胞的胶原蛋白溶液

          到培养皿中,在37℃中加热,胶原蛋白以细胞包埋状态形成凝胶。

          关于详细 ,请参考在线手册。

 

 

Q:    请具体地告知胶原蛋白涂层的方法。

A:    将Cellmatrix Type I-C用稀盐酸(pH 3.0,约10-3 M)稀释10倍以上,放入培养皿中,在室温中静置30~60分钟。

          静置后,摄取胶原蛋白溶液,以常温、无菌状态干燥培养皿。干燥后,用PBS或培养液洗涤2次,加入细胞悬液,进行普通培养。

  

 

Q:    进行胶原蛋白涂层时,向培养皿注入多少量的胶原蛋白溶液才好?

A:    胶原蛋白溶液注入量为均匀覆盖培养皿底面即可。

          以1 mL/10 cm2比例为标准

 


Q:    Cellmatrix Type IV是否能进行包埋培养?

A:    单独使用Cellmatrix Type IV胶原蛋白不能进行包埋培养。众多胶原蛋白中只有I型胶原蛋白具有凝胶化能力。

          若想研究在包埋培养下的IV型胶原蛋白与细胞的互相作用,请混合I型胶原蛋白IV型胶原蛋白。Cellmatrix Type I和Cellmatrix Type IV的混

          合比例,在1:2~2:1范围为好。混合比例与胶原蛋白凝胶强度的关系,请参考本公司手册<使用胶原蛋白的细胞培养法>。

  

 

Q:    所谓的胶原蛋白是不是培养基?

A:    胶原蛋白不是培养基。所谓的胶原蛋白是培养基的基质。

          胶原蛋白凝胶是在培养基中作为整体结构支撑体的胶原蛋白组织,相当于生物体中的血液。

          在体外的细胞作为胶原蛋白的细胞外基质存在。

          将胶原蛋白作为培养基质使用的胶原蛋白凝胶包埋培养,旨在重现生物内环境的状态。

  

 

Q:    请告知胶原蛋白的稀释方法。

A:    用pH 3.0稀盐酸稀释。因为胶原蛋白具有高粘性,使用像试管一样的细小容器比较难稀释,使用三角烧瓶或离心管(例如:50 mL培养用

          塑料离心管等)等粗的容器比较容易稀释。

          三角烧瓶,像画圆一样摇晃10次左右:离心管,来回颠倒10次左右,进行搅拌稀释。如果,出现起泡,可静置一晚后使用,或以低速离心

          分离(1500 rpm,3 min)脱气后使用。同时,开发了胶原蛋白、涂层培养用低粘度型的Cellmatrix Type I-C。可一起讨论。

  

 

Q:    pH3.0盐酸是多少摩尔值?请告知制作方法。

A:    pH盐酸是10-3摩尔/升。因为盐酸是强酸,浓度基本合适,调整好pH计,就可快速、正确地制作。

          例如,一边用pH仪表测量,一边用巴斯德移液管一滴一滴向100 mL蒸馏水中加入1N的盐酸。

          pH3.0盐酸制成后,请以高压灭菌或过滤灭菌。

 


1.

Matsunaga, M., Hatta, K., Nagafuchi, A., & Takeichi, M. (1988). Guidance of optic nerve fibres by n-cadherin adhesion molecules. Nature, 334(6177), 62-4.

【Cellmatrix® Type I-A. IF:43.07】


2.

Morishita, A. , Kumabe, S. , Nakatsuka, M. , & Iwai, Y. . (2014). A histological study of mineralised tissue formation around implants with 3d culture of hms0014 cells in cellmatrix type i-a collagen gel scaffold in vitro. Okajimas Folia Anatomica Japonica, 91(3), 57-71.

【Cellmatrix® Type I-A】


3.

Nakao, K., Itoh, M., Tomita, Y., Tomooka, Y., & Tsuji, T. (2004). Fgf-2 potently induces both proliferation and dsp expression in collagen type i gel cultures of adult incisor immature pulp cells. Biochemical & Biophysical Research Communications, 325(3), 1052-1059.

【Cellmatrix® Type I-A. IF:2.705】


4.

Udagawa, N., Takahashi, N., Akatsu, T., Tanaka, H., Sasaki, T., & Nishihara, T., et al. (1990). Origin of osteoclasts: mature monocytes and macrophages are capable of differentiating into osteoclasts under a suitable microenvironment prepared by bone marrow-derived stromal cells. Proceedings of the National Academy of Sciences of the United States of America, 87(18), 7260-7264.

【Cellmatrix® Type I-A. IF:9.58】


5.

Koide, N., Sakaguchi, K., Koide, Y., Asano, K., Kawaguchi, M., & Matsushima, H., et al. (1990). Formation of multicellular spheroids composed of adult rat hepatocytes in dishes with positively charged surfaces and under other nonadherent environments. Experimental Cell Research, 186(2), 0-235.

【Cellmatrix® Type I-A ,Cellmatrix® Type III,Cellmatrix® Type IV. IF:3.329】


6.

Jabaji, Z., Brinkley, G. J., Khalil, H. A., Sears, C. M., Nan, Y. L., & Lewis, M., et al. (2014). Type i collagen as an extracellular matrix for the in vitro growth of human small intestinal epithelium. Plos One, 9(9), e107814.

【Cellmatrix® Type I-A. IF:2.776】


7.

Shakado, S., Sakisaka, S., Noguchi, K., Yoshitake, M., Harada, M., & Mimura, Y., et al. (2010). Effects of extracellular matrices on tube formation of cultured rat hepatic sinusoidal endothelial cells. Hepatology, 22(3), 969-973.

【Cellmatrix® Type I-A,Cellmatrix® Type IV. IF:14.971】


8.

Tamura, T., Udagawa, N., Takahashi, N., Miyaura, C., Tanaka, S., & Yamada, Y., et al. (1993). Soluble interleukin-6 receptor triggers osteoclast formation by interleukin 6. Proceedings of the National Academy of Sciences of the United States of America, 90(24), 11924-11928.

【Cellmatrix® Type I-A. IF:9.58】


9.

Takahashi, N., Udagawa, N., Akatsu, T., Tanaka, H., Isogai, Y., & Suda, T. (1991). Deficiency of osteoclasts in osteopetrotic mice is due to a defect in the local microenvironment provided by osteoblastic cells*. Endocrinology, 128(4), 1792-1796.

【Cellmatrix® Type I-A. IF:3.8】


10.

Mano, H. . (1996). Mammalian mature-osteoclasts as estrogen target cells. Biochemical & Biophysical Research Communications, 223(3), 637-642.

【Cellmatrix® Type I-A. IF:2.705】


11.

Udagawa, N., Takahashi, N., Jimi, E., Matsuzaki, K., Tsurukai, T., & Itoh, K., et al. (1999). Osteoblasts/stromal cells stimulate osteoclast activation through expression of osteoclast differentiation factor/rankl but not macrophage colony-stimulating factor: receptor activator of nf-kappa b ligand. Bone, 25(5), 517-523.

【Cellmatrix® Type I-A. IF:4.36】


12.

Woo, J. T., Kasai, S., Stern, P. H., & Nagai, K. (2010). Compactin suppresses bone resorption by inhibiting the fusion of prefusion osteoclasts and disrupting the actin ring in osteoclasts. Journal of Bone & Mineral Research, 15(4), 650-662.

【Cellmatrix® Type I-A. IF:5.711】


13.

Ishida, K., Murofushi, M., Nakao, K., Morita, R., Ogawa, M., & Tsuji, T. (2011). The regulation of tooth morphogenesis is associated with epithelial cell proliferation and the expression of sonic hedgehog through epithelial–mesenchymal interactions. Biochemical & Biophysical Research Communications, 405(3), 455-461.

【Cellmatrix® Type I-A. IF:2.705】


14.

Nakagawa, H. , Wachi, M. , Woo, J. T. , Kato, M. , Kasai, S. , & Takahashi, F. , et al. (2002). Fenton reaction is primarily involved in a mechanism of (?)-epigallocatechin-3-gallate to induce osteoclastic cell death. Biochemical and Biophysical Research Communications, 292(1), 94-101.

【Cellmatrix® Type I-A. IF:2.705】


15.

Onodera, K. I., Fukatsu, T., Kawai, N., Yoshioka, Y., Okamoto, T., & Nakamura, H., et al. (2004). Zooxanthellactone, a novel γ-lactone-type oxylipine from dinoflagellates of symbiodinium sp.: structure, distribution, and biological activity. Bioscience Biotechnology & Biochemistry, 68(4), 848-852.

【Cellmatrix® Type I-A. IF:1.297】


16.

Torisawa, Y. S., Shiku, H., Yasukawa, T., Nishizawa, M., & Matsue, T. (2005). Multi-channel 3-d cell culture device integrated on a silicon chip for anticancer drug sensitivity test. Biomaterials, 26(14), 2165-2172.

【Cellmatrix® Type I-A. IF:10.273】


17.

Murakami, H., Takahashi, N., Tanaka, S., Nakamura, I., Udagawa, N., & Nakajo, S., et al. (1997). Tiludronate inhibits protein tyrosine phosphatase activity in osteoclasts. Bone, 20(5), 399-404.

【Cellmatrix® Type I-A. IF:4.36】


18.

Fujimoto, M., & Mihara, S. I. (1991). Two states of the l-type ca 2+ channel in pc12 cells: different sensitivity to 1,4-dihydropyridines. Neuroscience Letters, 122(1), 9-12.

【Cellmatrix® Type I-A. IF:2.173】


19.

Kawamura, S., Wakitani, S., Kimura, T., Maeda, A., Caplan, A. I., & Shino, K., et al. (1998). Articular cartilage repair: rabbit experiments with a collagen gel-biomatrix and chondrocytes cultured in it. Acta Orthop Scand, 69(1), 56-62.

【Cellmatrix® Type I-A】


20.

Tilney, L. G., Derosier, D. J., & Mulroy, M. J. (1980). The organization of actin filaments in the stereocilia of cochlear hair cells. Journal of Cell Biology, 86(1), 244-259.

【Cellmatrix® Type III,Cellmatrix® Type IV. IF:8.891】


21.

Yoshii, C., Ueda, Y., Okamoto, M., & Araki, M. (2007). Neural retinal regeneration in the anuran amphibian xenopus laevis post-metamorphosis: transdifferentiation of retinal pigmented epithelium regenerates the neural retina. Developmental Biology, 303(1), 45-56.

【Cellmatrix® Type I-C. IF:2.936】


22.

Aoki, K. , & Matsuda, M. . (2009). Visualization of small gtpase activity with fluorescence resonance energy transfer-based biosensors. NATURE PROTOCOLS, 4(11), 1623-1631.

【Cellmatrix® Type I-C. IF:11.334】


23.

Minakawa, M., Miura, Y., & Yagasaki, K. (2012). Piceatannol, a resveratrol derivative, promotes glucose uptake through glucose transporter 4 translocation to plasma membrane in l6 myocytes and suppresses blood glucose levels in type 2 diabetic model db/db mice. Biochemical & Biophysical Research Communications, 422(3), 469-475.

【Cellmatrix® Type I-C. IF:2.705】


24.

Koide, T., Homma, D. L., Asada, S., & Kitagawa, K. (2005). Self-complementary peptides for the formation of collagen-like triple helical supramolecules. Bioorganic & Medicinal Chemistry Letters, 15(23), 5230-5233.

【Cellmatrix® Type I-C. IF:2.448】


25.

Izuta, H., Shimazawa, M., Tsuruma, K., Araki, Y., Mishima, S., & Hara, H. (2009). Bee products prevent vegf-induced angiogenesis in human umbilical vein endothelial cells. Bmc Complementary & Alternative Medicine, 9(1), 45.

【Cellmatrix® Type I-C. IF:2.479】


26.

Umigai, & Naofumi. (2012). Crocetin, a carotenoid derivative, inhibits vegf-induced angiogenesis via suppression of p38 phosphorylation. Current Neurovascular Research, 9(2), 102-109.

【Cellmatrix® Type I-C. IF:1.811】


27.

Isaji, M., Miyata, H., Ajisawa, Y., Takehana, Y., & Yoshimura, N. (2010). Tranilast inhibits the proliferation, chemotaxis and tube formation of human microvascular endothelial cells in vitro and angiogenesis in vivo. British Journal of Pharmacology, 122(6), 1061-1066.

【Cellmatrix® Type I-P. IF:6.583】


28.

Tokunaga, T., Kiso, T., Namikawa, T., & Ohtsubo, Y. (1999). Camp-independent chloride secretion activated by a vasoactive intestinal peptide in a monolayer culture of human bronchial epithelial cells. Biological & Pharmaceutical Bulletin, 22(7), 745-748.

【Cellmatrix® Type I-C. IF:1.54】


29.

Aoki, Y. , Satoh, K. , Sato, K. , & Suzuki, K. T. . (1992). Induction of glutathioner, sr, -transferase p-form in primary cultured rat liver parenchymal cells by co-planar polychlorinated biphenyl congeners. Biochemical Journal, 281(2), 539-543.

【Cellmatrix® Type I-P. IF:4.331】


30.

Yamamoto, M., Kato, K., & Ikada, Y. (2015). Ultrastructure of the interface between cultured osteoblasts and surface-modified polymer substrates. Journal of Biomedical Materials Research, 37(1), 29-36.

【Cellmatrix® Type I-P】


31.

Ishihara, S., Haga, H. M., Mizutani, T., Kawabata, K., Shirato, H., & Nishioka, T. (2010). Integrin beta1-dependent invasive migration of irradiation-tolerant human lung adenocarcinoma cells in 3d collagen matrix. Biochemical & Biophysical Research Communications, 396(3), 651-655.

【Cellmatrix® Type I-C,Cellmatrix® Type I-P. IF:2.705】


32.

Suzuki, M., Ichikawa, K., Sakoda, A., & Sakai, Y. (1993). Long-term culture of primary rat hepatocytes with high albumin secretion using membrane-supported collagen sandwich. Cytotechnology, 11(3), 213.

【Cellmatrix® Type I-P. IF:1.672】


33.

Nakaoka, R. , Tsuchiya, T. , Kato, K. , Ikada, Y. , & Nakamura, A. . (1997). Studies on tumor-promoting activity of polyethylene: inhibitory activity of metabolic cooperation on polyethylene surfaces is markedly decreased by surface modification with collagen but not with rgds peptide. Journal of biomedical materials research, 35(3), 391-397.

【Cellmatrix® Type I-P】


产品编号 产品名称 产品规格 产品等级

胶原蛋白酸性溶液 I-PC、I-AC Atelocollagen/Native Collagen Acidic Solutions

  • 产品特性
  • 相关资料
  • Q&A
  • 参考文献

胶原蛋白酸性溶液 I-PC、I-AC胶原蛋白酸性溶液 I-PC、I-AC                              Atelocollagen/Native Collagen Acidic Solutions

Atelocollagen/Native Collagen Acidic Solutions

胶原蛋白酸性溶液 I-PC、I-AC                              Atelocollagen/Native Collagen Acidic Solutions



◆概要


本产品为牛皮来源的高纯度胶原蛋白酸性溶液,适用于制备 3D 培养和共培养用支架(支架材料)的胶原蛋白凝胶,以及包被培养皿或培养板等器材。有 I-PC(去端肽胶原蛋白)与 I-AC(天然胶原蛋白)两种类型,去端肽胶原蛋白通过蛋白酶切断天然胶原蛋白分子两端存在的肽。

胶原蛋白酸性溶液 I-PC、I-AC                              Atelocollagen/Native Collagen Acidic Solutions

◆应用


胶原蛋白酸性溶液 I-PC、I-AC                              Atelocollagen/Native Collagen Acidic Solutions

胶原蛋白酸性溶液 I-PC、I-AC                              Atelocollagen/Native Collagen Acidic Solutions

胶原蛋白酸性溶液 I-PC、I-AC                              Atelocollagen/Native Collagen Acidic Solutions

包被胶原蛋白


胶原蛋白凝胶中的 3D 培养


在胶原蛋白凝胶上方培养


胶原蛋白酸性溶液 I-PC、I-AC                              Atelocollagen/Native Collagen Acidic Solutions

胶原蛋白凝胶共培养

◆特点


● I-PC(去端肽胶原蛋白)和 I-AC(天然胶原蛋白)中和时,在生理条件下会凝胶化(纤维化)。

● 可选择3mg/mL 与5mg/mL 两种浓度,分别适用于制备包被、3D 培养和共培养用支架(支架材料)的胶原蛋白凝胶。

● 区别于可溶性底物膜制备品,不含细胞来源的生理活性物质、核酸和 MMP 等,可准确评估实验结果。



◆胶原蛋白种类

胶原蛋白酸性溶液 I-PC:牛皮来源去端肽胶原蛋白

胶原蛋白酸性溶液 I-AC:牛皮来源天然胶原蛋白



35 mm 胶原海绵培养皿

◆原理

胶原海绵细胞培养是以胶原蛋白为基础新开发出来的,可用于细胞 3D 培养。多孔胶原海绵是由牛跟腱提取的不溶性I型胶原蛋白制备而成。细胞可渗透入海绵,朝不同方向增殖。

◆优点特色

       所有产品均已灭菌 

◆案例应用

细胞在海绵上培养


产品编号

品名

包装

储存

KOU-CS-35

Collagen sponge for35mm culture dish Bovine tendon   Sterile

5pcs/box

RT

 


Atelocollagen, Permeable membrane for50mmculture dish

◆原理

从牛跟腱中提取的Ⅰ型胶原蛋白制备的可渗透性胶原蛋白膜可用于单层或双层细胞培养。此胶原蛋白膜特别适用于研究在膜两侧培养的不同细胞间的分子相互作用,相互关系。膜的可渗透性允许氨基酸,蛋白质等小分子自由通过胶原蛋白膜,这对于细胞间的营养吸收,物质交换有重要作用。

◆优点特色


 两种不同细胞可在膜两侧生长,因此特别适合研究细胞或小分子相互间的作用。

 可渗透性膜非常适合细胞培养,也适合人工皮肤,人工胰腺等其它人工器官的培养。

产品编号

品名

规格

储存

KOU-MEN-01

Atelocollagen, Permeable membrane for50mmculture   dish

(33mm)Bovine   dermis   Sterile

5pcs/box

-20℃

 


 

Atelocollagen, Honeycomb sponge

◆原理

“蜂窝状”海绵的结构比较特殊,它的孔径大约 200-400μm,密集地向一个方向排列,因此细胞可以顺着小孔渗透增殖。这样的结构,有利于海绵内部的细胞吸收营养物质,排出生物代谢物质。细胞在空腔内增殖,并形成统一的细胞团。

优势:从牛跟腱中提取胶原蛋白制备“蜂窝状”海绵,可以用胶原酶降解此海绵。


 

胶原蛋白酸性溶液 I-PC、I-AC                              Atelocollagen/Native Collagen Acidic Solutions

胶原蛋白酸性溶液 I-PC、I-AC                              Atelocollagen/Native Collagen Acidic Solutions

Honeycomb sponge 的电镜图

 

产品编号

品名

规格

储存

KOU-CSH-10

Atelocollagen Honeycomb sponge Bovine dermis

Size: about 3X3X2 mm/sponge   total surface area:2000cm2/g  weight per volume:   12-13mg/ml sterile

100mg/btl

室温

胶原蛋白酸性溶液 I-PC、I-AC                              Atelocollagen/Native Collagen Acidic Solutions

AteloCell 细胞培养胶原.pdf

参考文献

◆I-PC3D培养

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Isolation of Bipotential Liver Progenitor Cells from Neonatal Mouse Liver.

TanimizuN.Methods Mol Biol. 2019;1905:9-17. PMID: 30536086


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FilGAP regulates distinct stages of epithelial tubulogenesis.Zuinen T, Tsutsumi K, OhtaY.BiochemBiophys Res Commun. 2019 Jun 30;514(3):742-749. PMID: 3107826

0

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Rod-Shaped Neural Units for Aligned 3D Neural Network Connection.Kato-Negishi M, Onoe H, Ito A, Takeuchi S.AdvHealthc Mater. 2017 Aug;6(15). PMID: 28429415


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Sustained inflammation after pericyte depletion induces irreversible blood-retina barrier breakdown.Ogura S, Kurata K, Hattori Y, Takase H, Ishiguro-Oonuma T, Hwang Y, Ahn S, Park I, Ikeda W, Kusuhara S, Fukushima Y, Nara H, Sakai H, Fujiwara T, Matsushita J, Ema M, Hirashima M, Minami T, Shibuya M, Takakura N, Kim P, Miyata T, Ogura Y, Uemura A.JCI Insight. 2017 Feb 9;2(3):e90905. PMID: 28194443


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Interstitial fluid flow-induced growth potential and hyaluronan synthesis of fibroblasts in a fibroblast populated stretched collagen gel culture.Saito N, Adachi H, Tanaka H, Nakata S, Kawada N, Oofusa K, Yoshizato K.BiochimBiophys Acta. 2017 Jun 28;1861(9):2261-2273. PMID: 28668298


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Progressive induction of hepatocyte progenitor cells in chronically injured liver.Tanimizu N, Ichinohe N, Yamamoto M, Akiyama H, Nishikawa Y, Mitaka T.Sci Rep. 2017 Jan 4;7:39990. PMID: 28051157


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Progranulin and granulin-like protein as novel VEGF-independent angiogenic factors derived from human mesothelioma cells.Eguchi R, Nakano T, Wakabayashi I.Oncogene. 2017 Feb 2;36(5):714-722. PMID: 27345409


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Wound healing delays in α-Klotho-deficient mice that have skin appearance similar to that in aged humans – Study of delayed wound healing mechanism.Yamauchi M, Hirohashi Y, Torigoe T, Matsumoto Y, Yamashita K, Kayama M, Sato N, Yotsuyanagi T.BiochemBiophys Res Commun. 2016 May 13;473(4):845-52. PMID: 27037022


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Co-expression of S100A14 and S100A16 correlates with a poor prognosis in human breast cancer and promotes cancer cell invasion.Tanaka M, Ichikawa-Tomikawa N, Shishito N, Nishiura K, Miura T, Hozumi A, Chiba H, Yoshida S, Ohtake T, Sugino T.BMC Cancer. 2015 Feb 13;15:53. PMID: 25884418


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Use of biomimetic microtissue spheroids and specific growth factor supplementation to improve tenocyte differentiation and adaptation to a collagen-based scaffold in vitro.Theiss F, Mirsaidi A, Mhanna R, Kümmerle J, Glanz S, Bahrenberg G, Tiaden AN, Richards PJ.Biomaterials. 2015 Nov;69:99-109. PMID: 26283157


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Recombinant human soluble thrombomodulin attenuates FK506-induced endothelial dysfunction through prevention of Akt inactivation.Eguchi R, Fujimori Y, Okada M, Tamaki H, Wakabayashi I, Ogawa H.Exp Cell Res. 2014 Apr 15;323(1):112-7. PMID: 24582967


14.

A human cancer xenograft model utilizing normal pancreatic duct epithelial cells conditionally transformed with defined oncogenes.Inagawa Y, Yamada K, Yugawa T, Ohno S, Hiraoka N, Esaki M, Shibata T, Aoki K, Saya H, Kiyono T.Carcinogenesis. 2014 Aug;35(8):1840-6. PMID: 24858378.


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Differential sensitivity of epithelial cells to extracellular matrix in polarity establishment.

Yonemura S.PLoS One. 2014 Nov 13;9(11):e112922. PMID: 25393292


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FK506 induces endothelial dysfunction through attenuation of Akt and ERK1/2 independently of calcineurin inhibition and the caspase pathway.Eguchi R, Kubo S, Ohta T, Kunimasa K, Okada M, Tamaki H, Kaji K, Wakabayashi I, Fujimori Y, Ogawa H.Cell Signal. 2013 Sep;25(9):1731-8. PMID: 23707520.


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Dynamics of Centrosome Translocation and Microtubule Organization in Neocortical Neurons during Distinct Modes of Polarization.Sakakibara A, Sato T, Ando R, Noguchi N, Masaoka M, Miyata T.Cereb Cortex. 2014 May;24(5):1301-1. PMID: 2330763

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Nymphaeol-A Isolated from Okinawan Propolis Suppresses Angiogenesis and Induces Caspase-Dependent Apoptosis via Inactivation of Survival Signals.Tsuchiya I, Hosoya T, Ushida M, Kunimasa K, Ohta T, Kumazawa S.Evid Based Complement Alternat Med. 2013;2013:826245. PMID: 23710238


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Construction of multi-functional extracellular matrix proteins that inhibits migration and tube formation of endothelial cells.Nakamura M, Mie M, Nakamura M, Kobatake E.Biotechnol Lett. 2012 Aug;34(8):1571-7. PMID: 22048848


20.

A selective inhibitor of the Rho kinase pathway, Y-27632, and its influence on wound healing in the corneal stroma.Yamamoto M, Quantock AJ, Young RD, Okumura N, Ueno M, Sakamoto Y, Kinoshita S, Koizumi N.Mol Vis. 2012;18:1727-39. PMID:2281562

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Features of wound healing shown by fibroblasts obtained from the superficial and deep dermis.Kaminishi-Tanikawa A, Kurita M, Okazaki M, Kawaguchi R, Ihara A, Niikura M, Takushima A, Harii K.J Plast Surg Hand Surg. 2011 Sep;45(4-5):219-25. PMID: 22150144


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Brazilian Propolis Suppresses Angiogenesis by Inducing Apoptosis in Tube-forming Endothelial Cells through Inactivation of Survival Signal ERK1/2.Kunimasa K, Ahn MR, Kobayashi T, Eguchi R, Kumazawa S, Fujimori Y, Nakano T, Nakayama T, Kaji K, Ohta T.Evid Based Complement Alternat Med. 2011;2011:870753.


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Dermal carbonyl modification is related to the yellowish color change of photo-aged Japanese facial skin.Ogura Y, Kuwahara T, Akiyama M, Tajima S, Hattori K, Okamoto K, Okawa S, Yamada Y, Tagami H, Takahashi M, Hirao T.J Dermatol Sci. 2011 Oct;64(1):45-52. PMID: 21798719


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Calpain is involved in cisplatin-induced endothelial injury in an in vitro three-dimensional blood vessel model.Eguchi R, Fujimori Y, Ohta T, Kunimasa K, Nakano T.Int J Oncol. 2010 Nov;37(5):1289-96. PMID: 20878076


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Effect of monosaccharides composing glycosaminoglycans on type 2 collagen accumulation in a three-dimensional culture of chondrocytes.Kagita E, Ikeda M, Wakitani S, Takagi M.J BiosciBioeng. 2010 Jan;109(1):51-4. PMID: 20129082


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Nobiletin, a citrus polymethoxyflavonoid, suppresses multiple angiogenesis-related endothelial cell functions and angiogenesis in vivo.Kunimasa K, Ikekita M, Sato M, Ohta T, Yamori Y, Ikeda M, Kuranuki S, Oikawa T.Cancer Sci. 2010 Nov;101(11):2462-9. PMID: 20670297


27.

Antiangiogenic effects of indole-3-carbinol and 3,3'-diindolylmethane are associated with their differential regulation of ERK1/2 and Akt in tube-forming HUVEC.Kunimasa K, Kobayashi T, Kaji K, Ohta T.

J Nutr. 2010 Jan;140(1):1-6. PMID: 19889811


28.

Correlation between antiangiogenic activity and antioxidant activity of various components from propolis.Ahn MR, Kunimasa K, Kumazawa S, Nakayama T, Kaji K, Uto Y, Hori H, Nagasawa H, Ohta T.Mol Nutr Food Res. 2009 May;53(5):643-51. PMID: 19065585


29.

Possible involvement of caspase-6 and -7 but not caspase-3 in the regulation of hypoxia-induced apoptosis in tube-forming endothelial cells.Eguchi R, Toné S, Suzuki A, Fujimori Y, Nakano T, Kaji K, Ohta T.Exp Cell Res. 2009 Jan 15;315(2):327-35. PMID: 19022247


30.

Interaction between PAR-3 and the aPKC-PAR-6 complex is indispensable for apical domain development of epithelial cells.Horikoshi Y, Suzuki A, Yamanaka T, Sasaki K, Mizuno K, Sawada H, Yonemura S, Ohno S.J Cell Sci. 2009 May 15;122(Pt 10):1595-606. PMID: 19401335


31.

Intracellular polarity protein PAR-1 regulates extracellular laminin assembly by regulating the dystroglycan complex.Masuda-Hirata M, Suzuki A, Amano Y, Yamashita K, Ide M, Yamanaka T, Sakai M, Imamura M, Ohno S.Genes Cells. 2009 Jul;14(7):835-50. PMID: 19549170


32.

Proteomic analysis of hypoxia-induced tube breakdown of an in vitro capillary model composed of HUVECs: potential role of p38-regulated reduction of HSP27.Eguchi R, Naitou H, Kunimasa K, Ayuzawa R, Fujimori Y, Ohashi N, Kaji K, Ohta T.Proteomics. 2008 Jul;8(14):2897-906. PMID: 18655027


33.

Differentiation of adipose-derived stromal vascular fraction culture cells into chondrocytes using the method of cell sorting with a mesenchymal stem cell marker.Ishimura D, Yamamoto N, Tajima K, Ohno A, Yamamoto Y, Washimi O, Yamada H.Tohoku J Exp Med. 2008 Oct;216(2):149-56.


34.

Low-intensity pulsed ultrasound activates the phosphatidylinositol 3 kinase/Akt pathway and stimulates the growth of chondrocytes in three-dimensional cultures: a basic science study.Takeuchi R, Ryo A, Komitsu N, Mikuni-Takagaki Y, Fukui A, Takagi Y, Shiraishi T, Morishita S, Yamazaki Y, Kumagai K, Aoki I, Saito T.Arthritis Res Ther. 2008;10(4):R77. PMID: 18616830


35.

Suppression of tumor-induced angiogenesis by Brazilian propolis: major component artepillin C inhibits in vitro tube formation and endothelial cell proliferation.Ahn MR, Kunimasa K, Ohta T, Kumazawa S, Kamihira M, Kaji K, Uto Y, Hori H, Nagasawa H, Nakayama T.Cancer Lett. 2007 Jul 18;252(2):235-43. PMID: 17343983


36.

Hypoxia induces apoptosis of HUVECs in an in vitro capillary model by activating proapoptotic signal p38 through suppression of ERK1/2.Eguchi R, Suzuki A, Miyakaze S, Kaji K, Ohta T.Cell Signal. 2007 Jun;19(6):1121-31. PMID: 17303382


37.

Hypoxia-induced apoptosis and tube breakdown are regulated by p38 MAPK but not by caspase cascade in an in vitro capillary model composed of human endothelial cells.Ohta T, Eguchi R, Suzuki A, Miyakaze S, Ayuzawa R, Kaji K.J Cell Physiol. 2007 Jun;211(3):673-81. PMID: 17373651


38.

Atelocollagen for culture of human nucleus pulposus cells forming nucleus pulposus-like tissue in vitro: influence on the proliferation and proteoglycan production of HNPSV-1 cells.Sakai D, Mochida J, Iwashina T, Watanabe T, Suyama K, Ando K, Hotta T.Biomaterials. 2006 Jan;27(3):346-53. PMID: 16102816


39.

Effects of low-level hard laser irradiation on mineralization in three-dimensional cultured rat bone marrow cells.Gomi Kazuhiro, Yashima Akihiro, Shirakawa Satoshi, Kanazashi Mikimoto, Sekine Akiko, Kobayashi Kazuyuki, Nagano Takatoshi, Matsui Koutarou, Yamaguchi Hiroyasu, Arai Takashi.J Oral Laser Applications. 2005;5:145-150.


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Differentiation of Human Bone Marrow Mesenchymal Stem Cells to Chondrocytes for Construction of Three-dimensional Cartilage Tissue.Matsuda C, Takagi M, Hattori T, Wakitani S, Yoshida T.Cytotechnology. 2005 Jan;47(1-3):11-7. PMID: 19003040


41.

Effect of chondroitin sulfate and hyaluronic acid on gene expression in a three-dimensional culture of chondrocytes.Nishimoto S, Takagi M, Wakitani S, Nihira T, Yoshida T.J BiosciBioeng. 2005 Jul;100(1):123-6. PMID: 16233863


42.

Activation of matrix metalloproteinase-2 causes peritoneal injury during peritoneal dialysis in rats.Hirahara I, Ogawa Y, Kusano E, Asano Y.Nephrol Dial Transplant. 2004 Jul;19(7):1732-41. PMID: 15128883


43.

Concept for organ engineering: a reconstruction method of rat liver for in vitro culture.Takezawa T, Inoue M, Aoki S, Sekiguchi M, Wada K, Anazawa H, Hanai N.Tissue Eng. 2000 Dec;6(6):641-50. PMID: 11103085


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Vitronectin or fibronectin is required for corneal fibroblast-seeded collagen gel contraction.Taliana L, Evans MD, Dimitrijevich SD, Steele JG.Invest Ophthalmol Vis Sci. 2000 Jan;41(1):103-9. PMID: 10634608


45.

Maintenance of embedded pig pancreatic pseudo-islets in a collagen gel matrix: study of the effect of hydrocortisone, a collagenase inhibitor, and nicotinamide on collagenolysis and the morphogenesis of pancreatic islet-cells in collagen gel matrix.Ohgawara H, Mochizuki N, Taira T, Nishijima S, Iwasaki N, Yui R, Hirata Y, Hayakawa T.In Vitro Cell Dev Biol. 1990 Apr;26(4):348-52. PMID: 2160924

◆I-PC共培养

1.

In vivo reprogramming of wound-resident cells generates skin epithelial tissue.Kurita M, Araoka T, Hishida T, O'Keefe DD, Takahashi Y, Sakamoto A, Sakurai M, Suzuki K, Wu J, Yamamoto M, Hernandez-Benitez R, Ocampo A, Reddy P, Shokhirev MN, Magistretti P, NúñezDelicado E, Eto H, Harii K, Izpisua Belmonte JC.Nature. 2018 Sep;561(7722):243-247. PMID: 30185909


2.

Influence of shear stress on phenotype and MMP production of smooth muscle cells in a co-culture model, Journal of Biorheology.Xiaobo Han, Naoya Sakamoto, Noriko Tomita, Hui Meng, Masaaki Sato, Makoto Ohta.J Biorheol (2017) 31(2):50-56.


3.

Fetal Therapy Model of Myelomeningocele with Three-Dimensional Skin Using Amniotic Fluid Cell-Derived Induced Pluripotent Stem Cells.Kajiwara K, Tanemoto T, Wada S, Karibe J, Ihara N, Ikemoto Y, Kawasaki T, Oishi Y, Samura O, Okamura K, Takada S, Akutsu H, Sago H, Okamoto A, Umezawa A.Stem Cell Reports. 2017 Jun 6;8(6):1701-1713. PMID: 28591652


4.

Regeneration of Vocal Fold Mucosa Using Tissue-Engineered Structures with Oral Mucosal Cells.Fukahori M, Chitose S, Sato K, Sueyoshi S, Kurita T, Umeno H, Monden Y, Yamakawa R.PLoS One. 2016 Jan 5;11(1):e0146151. PMID: 26730600


5.

Hepatocyte growth factor activator inhibitor type 1 maintains the assembly of keratin into desmosomes in keratinocytes by regulating protease-activated receptor 2-dependent p38 signaling.Kawaguchi M, Kanemaru A, Sawaguchi A, Yamamoto K, Baba T, Lin CY, Johnson MD, Fukushima T, Kataoka H.Am J Pathol. 2015 Jun;185(6):1610-23. PMID: 25842366


6.

Oncogenic Ras/ERK signaling activates CDCP1 to promote tumor invasion and metastasis.Uekita T, Fujii S, Miyazawa Y, Iwakawa R, Narisawa-Saito M, Nakashima K, Tsuta K, Tsuda H, Kiyono T, Yokota J, Sakai R.Mol Cancer Res. 2014 Oct;12(10):1449-59. PMID: 24939643


7.

Characterization of a liver organoid tissue composed of hepatocytes and fibroblasts in dense collagen fibrils.Tamai M, Adachi E, Tagawa YI.TissueEng Part A. 2013 Nov;19(21-22):2527-35. PMID: 23815236


8.

Enhancement of in vitro human tubulogenesis by endothelial cell-derived factors: implications for in vivo tubular regeneration after injury.Miya M, Maeshima A, Mishima K, Sakurai N, Ikeuchi H, Kuroiwa T, Hiromura K, Yokoo H, Nojima Y.Am J Physiol Renal Physiol. 2011 Aug;301(2):F387-95. PMID:21561997


9.

Development of an endothelial-smooth muscle cell coculture model using phenotype-controlled smooth muscle cells.Sakamoto N, Kiuchi T, Sato M.Ann Biomed Eng. 2011 Nov;39(11):2750-8. PMID: 21811870


10.

An in vitro multistep carcinogenesis model for human cervical cancer.Narisawa-Saito M, Yoshimatsu Y, Ohno S, Yugawa T, Egawa N, Fujita M, Hirohashi S, Kiyono T.Cancer Res. 2008 Jul 15;68(14):5699-705. PMID: 18632622


11.

Effect of fluid shear stress on migration of vascular smooth muscle cells in cocultured model.Sakamoto N, Ohashi T, Sato M.Ann Biomed Eng. 2006 Mar;34(3):408-15. PMID: 16482415


12.

Nitric Oxide Production and Smooth Muscle Cell Phenotype of Endothelial Cell-Smooth Muscle Cell Cocultured Model.Naoya SAKAMOTO, Masaki OI, Toshiro OHASHI and Masaaki SATO.Journal of Biomechanical Science and Engineering, Vol. 1, No. 1 (2006), pp.224-233.


13.

Effect of Shear Stress on Permeability of Vascular Endothelial Monolayer Cocultured with Smooth Muscle Cells.N Sakamoto, T Ohashi, M Sato.JSME international journal. Series C, Mechanical systems, machine elements and manufacturing. 47(4), 992-999, 2004-12-15.

I-PC培养器材包被

1.

TGF-β promotes fetal gene expression and cell migration velocity in a wound repair model of untransformed intestinal epithelial cells.Anzai S, Kawamoto A, Nagata S, Takahashi J, Kawai M, Kuno R, Kobayashi S, Watanabe S, Suzuki K, Shimizu H, Hiraguri Y, Takeoka S, Sugihara HY, Yui S, Oshima S, Watanabe M, Okamoto R.BiochemBiophys Res Commun. 2020 Jan 31. [Epub ahead of print] PMID: 32014254


2.

Mitochondrial Remodeling in Endothelial Cells under Cyclic Stretch is Independent of Drp1 Activation.Megumi Baba, Aya Shinmura, Shigeru Tada, Taku Amo and Akira Tsukamoto.Molecular & Cellular Biomechanics, Vol.16 No.1 2019 ,pp.1-12.


3.

Direct conversion of fibroblasts into urothelial cells that may be recruited to regenerating mucosa of injured urinary bladder.Inoue Y, Kishida T, Kotani SI, Akiyoshi M, Taga H, Seki M, Ukimura O, Mazda O.Sci Rep. 2019 Sep 25;9(1):13850. PMID: 31554870


4.

Optimal stimulation toward the dermal papilla lineage can be promoted by combined use of osteogenic and adipogenic inducers.Kazi T, Niibe I, Nishikawa A, Matsuzaki T.FEBS Open Bio. 2019 Nov 15. doi: 10.1002/2211-5463.12763. [Epub ahead of print]PMID: 31730301


5.

Assays for Modulators of Ryanodine Receptor (RyR)/Ca2+ Release Channel Activity for Drug Discovery for Skeletal Muscle and Heart Diseases.Murayama T, Kurebayashi N.CurrProtocPharmacol. 2019 Dec;87(1):e71. PMID: 31834676


6.

Cyclic Stretch Force Induces Periodontal Ligament Cells to Secrete Exosomes That Suppress IL-1β Production Through the Inhibition of the NF-κB Signaling Pathway in Macrophages.Wang Z, Maruyama K, Sakisaka Y, Suzuki S, Tada H, Suto M, Saito M, Yamada S, Nemoto E.Front Immunol. 2019 Jun 20;10:1310. PMID: 31281309


7.

Low-energy shock waves evoke intracellular Ca2+ increases independently of sonoporation.Takahashi T, Nakagawa K, Tada S, Tsukamoto A.Sci Rep. 2019 Mar 1;9(1):3218. PMID: 30824781


8.

Possible role of complement factor H in podocytes in clearing glomerular subendothelial immune complex deposits.Zoshima T, Hara S, Yamagishi M, Pastan I, Matsusaka T, Kawano M, Nagata M.Sci Rep. 2019 May 27;9(1):7857. PMID: 31133737


9.

Planar compression of extracellular substrates induces S phase arrest via ATM-independent CHK2 activation.Hayakawa K, Hirata H, Samsonov M, Sokabe M.BiochemBiophys Res Commun. 2018 Dec 2;506(4):983-989. PMID: 30404732


10.

Cyclic Stretch Negatively Regulates IL-1β Secretion Through the Inhibition of NLRP3 Inflammasome Activation by Attenuating the AMP Kinase Pathway.Maruyama K, Sakisaka Y, Suto M, Tada H, Nakamura T, Yamada S, Nemoto E.Front Physiol. 2018 Jun 28;9:802. PMID: 30002631


11.

"All-in-one" in vitro selection of collagen-binding vascular endothelial growth factor.Park SH, Uzawa T, Hattori F, Ogino S, Morimoto N, Tsuneda S, Ito Y.Biomaterials. 2018 Apr;161:270-278. PMID: 29425847


12.

Alkyne-Functionalized Cationic Polysiloxane Polymers Conjugated with Targeting Molecules by Click Reactions for DNA Delivery.Kihara, Yoshihiko; Maeda, Riho; Imaizumi, Azusa; Ichikawa, Tsukasa; Nemoto, Nobukatsu; Ishihara, Tsutomu; Hirano, Nobutaka; Haruki, Mitsuru.Journal of Nanoscience and Nanotechnology, Volume 17, Number 7, July 2017, pp. 5081-5089(9).


13.

Identification of laminin α5 short arm peptides active for endothelial cell attachment and tube formation.Kikkawa Y, Sugawara Y, Harashima N, Fujii S, Ikari K, Kumai J, Katagiri F, Hozumi K, Nomizu M.J Pept Sci. 2017 Jul;23(7-8):666-673. PMID: 28220599


14.

Nicotine enhances the malignant potential of human pancreatic cancer cells via activation of atypical protein kinase C.Hanaki T, Horikoshi Y, Nakaso K, Nakasone M, Kitagawa Y, Amisaki M, Arai Y, Tokuyasu N, Sakamoto T, Honjo S, Saito H, Ikeguchi M, Yamashita K, Ohno S, Matsura T.BiochimBiophys Acta. 2016 Nov;1860(11 Pt A):2404-15. PMID: 27424921


15.

Protease-resistant modified human β-hexosaminidase B ameliorates symptoms in GM2 gangliosidosis model.Kitakaze K, Mizutani Y, Sugiyama E, Tasaki C, Tsuji D, Maita N, Hirokawa T, Asanuma D, Kamiya M, Sato K, Setou M, Urano Y, Togawa T, Otaka A, Sakuraba H, Itoh K.J Clin Invest. 2016 May 2;126(5):1691-703. PMID: 27018595


16.

Combined replacement effects of human modified β-hexosaminidase B and GM2 activator protein on GM2 gangliosidoses fibroblasts.Keisuke Kitakaze, Chikako Tasaki, Youichi Tajima, Takatsugu Hirokawa, Daisuke Tsuji, Hitoshi Sakuraba, Kohji Itoh.Biochemistry and Biophysics Reports, Volume 7, September 2016, Pages 157-163.


17.

Engineered bone marrow-derived cell sheets restore structure and function of radiation-injured rat urinary bladders.Imamura T, Ogawa T, Minagawa T, Yokoyama H, Nakazawa M, Nishizawa O, Ishizuka O.Tissue Eng Part A. 2015 May;21(9-10):1600-10. PMID: 25669695


18.

Calcineurin B homologous protein 3 negatively regulates cardiomyocyte hypertrophy via inhibition of glycogen synthase kinase 3 phosphorylation.Kobayashi S, Nakamura TY, Wakabayashi S.J Mol Cell Cardiol. 2015 Jul;84:133-42. PMID: 25935310


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Bovine and porcine fibroblasts can be immortalized with intact karyotype by the expression of mutant cyclin dependent kinase 4, cyclin D, and telomerase.Donai K, Kiyono T, Eitsuka T, Guo Y, Kuroda K, Sone H, Isogai E, Fukuda T.J Biotechnol. 2014 Apr 20;176:50-7. PMID: 24589663


20.

Analysis of beat fluctuations and oxygen consumption in cardiomyocytes by scanning electrochemical microscopy.Hirano Y, Kodama M, Shibuya M, Maki Y, Komatsu Y.Anal Biochem. 2014 Feb 15;447:39-42. PMID: 24252541


21.

Establishment of cell lines derived from the genus Macaca through controlled expression of cell cycle regulators.Kuroda K, Kiyono T, Eitsuka T, Isogai H, Takahashi K, Donai K, Isogai E, Fukuda T.J Cell Biochem. 2015 Feb;116(2):205-11. PMID: 25187009


22.

Cyclic tensile force up-regulates BMP-2 expression through MAP kinase and COX-2/PGE2 signaling pathways in human periodontal ligament cells.Suzuki R, Nemoto E, Shimauchi H.Exp Cell Res. 2014 Apr 15;323(1):232-41. PMID: 24561081


23.

Probing the microenvironmental conditions for induction of superficial zone protein expression.Mhanna R, Oztürk E, Schlink P, Zenobi-Wong M.Osteoarthritis Cartilage. 2013 Dec;21(12):1924-32 PMID: 23978656


24.

Induction of albumin expression in HepG2 cells using immobilized simplified recombinant fibronectin protein.Nishida Y, Taniguchi A.In Vitro Cell Dev Biol Anim. 2013 Jun;49(6):400-7. ID: 23649815.


25.

Survival of primary human hepatocytes and death of induced pluripotent stem cells in media lacking glucose and arginine.Tomizawa M, Shinozaki F, Sugiyama T, Yamamoto S, Sueishi M, Yoshida T.PLoS One. 2013 Aug 14;8(8):e71897. PMID: 23967260


26.

The AP-1 complex regulates intracellular localization of insulin receptor substrate 1, which is required for insulin-like growth factor I-dependent cell proliferation.Yoneyama Y, Matsuo M, Take K, Kabuta T, Chida K, Hakuno F, Takahashi S.Mol Cell Biol. 2013 May;33(10):1991-2003. PMID: 23478262


27.

NIH3T3 cells overexpressing CD98 heavy chain resist early G1 arrest and apoptosis induced by serum starvation.Hara K, Ueda S, Ohno Y, Tanaka T, Yagi H, Okazaki S, Kawahara R, Masayuki T, Enomoto T, Hashimoto Y, Masuko K, Masuko T.Cancer Sci. 2012 Aug;103(8):1460-6. PMID:22497681


28.

N-propionyl-4-S-cysteaminylphenol induces apoptosis in B16F1 cells and mediates tumor-specific T-cell immune responses in a mouse melanoma model.Ishii-Osai Y, Yamashita T, Tamura Y, Sato N, Ito A, Honda H, Wakamatsu K, Ito S, Nakayama E, Okura M, Jimbow K.J Dermatol Sci. 2012 Jul;67(1):51-60. PMID:22622238


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Activation of macrophage-stimulating protein by human airway trypsin-like protease.Orikawa H, Kawaguchi M, Baba T, Yorita K, Sakoda S, Kataoka H.FEBS Lett. 2012 Feb 3;586(3):217-21. PMID:22245154


30.

Effects of Hypoxia-Inducible Factor-1α Chemical Stabilizer, CoCl(2) and Hypoxia on Gene Expression of CYP3As in Human Fetal Liver Cells.Suzuki E, Matsunaga T, Aonuma A, Sasaki T, Nagata K, Ohmori S.Drug MetabPharmacokinet. 2012;27(4):398-404. PMID: 22277676


31.

Lower expression of HNF4α and PGC1α might impair rifampicin-mediated CYP3A4 induction under conditions where PXR overexpressed in human fetal liver cells.Takezawa T, Matsunaga T, Aikawa K, Nakamura K, Ohmori S.Drug MetabPharmacokinet. 2012;27(4):430-8. PMID:22333269


32.

Cyclic stretch induces upregulation of endothelin-1 with keratinocytes in vitro: possible role in mechanical stress-induced hyperpigmentation.Kurita M, Okazaki M, Fujino T, Takushima A, Harii K.BiochemBiophys Res Commun. 2011 May 27;409(1):103-7. PMID: 21557930


33.

The TRPV4 channel is a novel regulator of intracellular Ca2+ in human esophageal epithelial cells.Ueda T, Shikano M, Kamiya T, Joh T, Ugawa S.Am J PhysiolGastrointest Liver Physiol. 2011 Jul;301(1):G138-47. PMID:21493730


34.

Expansion and characterization of adipose tissue-derived stromal cells cultured with low serum medium.Hattori H, Nogami Y, Tanaka T, Amano Y, Fukuda K, Kishimoto S, Kanatani Y, Nakamura S, Takase B, Ishihara M.J Biomed Mater Res B Appl Biomater. 2008 Oct;87(1):229-36. PMID: 18496860


35.

Nuclear deformation and expression change of cartilaginous genes during in vitro expansion of chondrocytes.Hoshiba T, Yamada T, Lu H, Kawazoe N, Tateishi T, Chen G.BiochemBiophys Res Commun. 2008 Oct 3;374(4):688-92. PMID: 18675249


36.

Visible light regulates neurite outgrowth of nerve cells.Higuchi A, Watanabe T, Noguchi Y, Chang Y, Chen WY, Matsuoka Y.Cytotechnology. 2007 Jul;54(3):181-8. PMID: 18832797


37.

Expression of CCN1 (CYR61) in developing, normal, and diseased human kidney.Sawai K, Mukoyama M, Mori K, Kasahara M, Koshikawa M, Yokoi H, Yoshioka T, Ogawa Y, Sugawara A, Nishiyama H, Yamada S, Kuwahara T, Saleem MA, Shiota K, Ogawa O, Miyazato M, Kangawa K, Nakao K.Am J Physiol Renal Physiol. 2007 Oct;293(4):F1363-72. PMID: 17699553


38.

Altered gene expression related to glomerulogenesis and podocyte structure in early diabetic nephropathy of db/db mice and its restoration by pioglitazone.Makino H, Miyamoto Y, Sawai K, Mori K, Mukoyama M, Nakao K, Yoshimasa Y, Suga S.Diabetes. 2006 Oct;55(10):2747-56. PMID: 17003339


39.

Regulation of neurite outgrowth by intermittent irradiation of visible light.Higuchi A, Watanabe T, Matsubara Y, Matsuoka Y, Hayashi S.J Phys Chem B. 2005 Jun 2;109(21):11033-6. PMID: 16852344


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Platelet-rich plasma provides nucleus for mineralization in cultures of partially differentiated periodontal ligament cells.Kawase T, Okuda K, Saito Y, Amizuka N, Suzuki H, Yoshie H.In Vitro Cell Dev Biol Anim. 2005 May-Jun;41(5-6):171-6. PMID: 16153151


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Visible light is able to regulate neurite outgrowth.Higuchi A, Kitamura H, Shishimine K, Konishi S, Yoon BO, Hara M.J Biomater Sci Polym Ed. 2003;14(12):1377-88. PMID: 14870941


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A simple electroporation method for the introduction of plasmids into cells cultured on coverslips for histochemical examination.TAKATA Kuniaki ; TAKAHASHI Yukiko ; MATSUZAKI Toshiyuki ; TAJIKA Yuki ; SUZUKI Takeshi ; AOKI Takeo ; HAGIWARA Haruo.Act Histochem Cytochem,2003; 36 (4):317-23.


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Synergistic effect of BMP-2 and ascorbate on the phenotypic expression of osteoblastic MC3T3-E1 cells.Torii Y, Hitomi K, Tsukagoshi N.Mol Cell Biochem. 1996 Dec 6;165(1):25-9. PMID: 8974078

I-PC支架制备/包被

1.

Effect of Cyclic Stretch on Tissue Maturation in Myoblast-Laden Hydrogel Fibers.Bansai S, Morikura T, Onoe H, Miyata S.Micromachines (Basel). 2019 Jun 15;10(6). pii: E399. PMID: 31208059


2.

Bone Marrow Cells Inhibit BMP-2-Induced Osteoblast Activity in the Marrow Environment.Nguyen HT, Ono M, Oida Y, Hara ES, Komori T, Akiyama K, Nguyen HTT, Aung KT, Pham HT, Tosa I, Takarada T, Matsuo K, Mizoguchi T, Oohashi T, Kuboki T.J Bone Miner Res. 2019 Feb;34(2):327-332. PMID: 30352125


3.

Establishment of perpendicular protrusion of type I collagen on TiO2 nanotube surface as a priming site of peri-implant connective fibers.Nojiri T, Chen CY, Kim DM, Da Silva J, Lee C, Maeno M, McClelland AA, Tse B, Ishikawa-Nagai S, Hatakeyama W, Kondo H, Nagai M.J Nanobiotechnology. 2019 Mar 1;17(1):34. PMID: 30823919


4.

Microdimpled surface atelocollagen maintains primary human hepatocytes in culture and may promote their functionality compared with collagen coat culture.Sato T, Semura K, Fujimoto I.Int J Mol Med. 2019 Sep;44(3):960-972. PMID: 31257473


5.

Three-dimensional bone formation including vascular networks derived from dental pulp stem cells in vitro.Watanabe M, Ohyama A, Ishikawa H, Tanaka A.Hum Cell. 2019 Apr;32(2):114-124. PMID: 30523537


6.

Anisotropic Multi-channel Collagen Gel (MCCG) Guides the Growth Direction of the Neurite-like Processes of PC12 Cells.Koh I, Furusawa K, Haga H.Sci Rep. 2018 Sep 17;8(1):13901. PMID: 30224813


7.

Effects of Three-Dimensional Culture of Mouse Calvaria-Derived Osteoblastic Cells in a Collagen Gel with a Multichannel Structure on the Morphogenesis Behaviors of Engineered Bone TissuesSaki Yahata, Kazuya Furusawa, Kei Nagao, Masahiro Nakajima, and Toshio Fukuda.ACS Biomater. Sci. Eng., 2017, 3 (12), pp 3414–3424.


8.

Bone and Gingival Connective Tissue Responses towards Nanosecond-Pulsed Laser-Treated Titanium ImplantsYugo Fukayo, Tsuyoshi Amemiya, KazutoshiNakaoka, Masayoshi Mizutani, Jun Komotori, Yoshiki Hamada, Tohru HayakawaJournal of Hard Tissue Biology Vol. 25 (2016) No. 2 p. 181-194.


9.

Systemically replicated organic and inorganic bony microenvironment for new bone formation generated by a 3D printing technology. Wan-Gun La, Jinah Jang, Byoung Soo Kim, Min Suk Lee, Dong-Woo Cho and Hee Seok YangRSC Adv., 2016,6, 11546-11553


10.

Application of Multichannel Collagen Gels in Construction of Epithelial Lumen-like Engineered Tissues.Furusawa K, Mizutani T, Machino H, Yahata S, Fukui A, Sasaki N.ACS Biomater. Sci. Eng., 2015, 1 (7), pp 539–548.


11.

Expansion of mouse hematopoietic progenitor cells in three-dimensional cocultures on frozen-thawed stromal cell layers formed within porous scaffolds.Miyoshi H, Morita M, Ohshima N, Sato C.Exp Hematol. 2015 Feb;43(2):115-24. PMID: 25461256


12.

Tissue Response of Surface-Modified Three-Dimensional Titanium Fiber Structure.Amemiya T, Fukayo Y, Nakaoka K, Hamada Y.J Hard Tissue Biol. 23(2), 137-148, 2014-04


13.

The use of gene activated matrix to mediate effective SMAD2 gene silencing against hypertrophic scar.Yin L, Zhao X, Ji S, He C, Wang G, Tang C, Gu S, Yin C.Biomaterials. 2014 Mar;35(8):2488-98. PMID: 24388384


14.

Multiscale analysis of changes in an anisotropic collagen gel structure by culturing osteoblasts.Hanazaki Y, Masumoto J, Sato S, Furusawa K, Fukui A, Sasaki N.ACS Appl Mater Interfaces. 2013 Jul 10;5(13):5937-46. PMID: 23806015


15.

Three-dimensional culture of mouse bone marrow cells on stroma formed within a porous scaffold: influence of scaffold shape and cryopreservation of the stromal layer on expansion of haematopoietic progenitor cells.Miyoshi H, Ohshima N, Sato C.J Tissue Eng Regen Med. 2013 Jan;7(1):32-8. PMID: 22081538


16.

Cartilage tissue engineering with controllable shape using a poly(lactic-co-glycolic acid)/collagen hybrid scaffold.Wenda Dai, Zhenjun Yao, Jian Dong, Naoki Kawazoe, Chi Zhang, Guoping Chen. J BioactCompat Poly. May 2013 vol. 28 no. 3 247-257.


17.

Studies on the formation mechanism and the structure of the anisotropic collagen gel prepared by dialysis-induced anisotropic gelation.Furusawa K, Sato S, Masumoto J, Hanazaki Y, Maki Y, Dobashi T, Yamamoto T, Fukui A, Sasaki N.Biomacromolecules. 2012 Jan 9;13(1):29-39. PMID: 22107030


18.

Development of biodegradable scaffolds based on magnetically guided assembly of magnetic sugar particles.Hu C, Uchida T, Tercero C, Ikeda S, Ooe K, Fukuda T, Arai F, Negoro M, Kwon G.J Biotechnol. 2012 May 31;159(1-2):90-8. PMID:22361001


19.

Application of collagen hydrogel/sponge scaffold facilitates periodontal wound healing in class II furcation defects in beagle dogs.Kosen Y, Miyaji H, Kato A, Sugaya T, Kawanami M.J Periodontal Res. 2012 Oct;47(5):626-34. PMID:22443229


20.

Spatial immobilization of bone morphogenetic protein-4 in a collagen-PLGA hybrid scaffold for enhanced osteoinductivity.Lu H, Kawazoe N, Kitajima T, Myoken Y, Tomita M, Umezawa A, Chen G, Ito Y.Biomaterials. 2012 Sep;33(26):6140-6. PMID:22698726


21.

Micropatterned angiogenesis induced by poly(d,l-lactic-co-glycolic acid) mesh-structured scaffolds.Hwan H Oh, Hongxu Lu, Naoki Kawazoe, Guoping Chen. J BioactCompat Pol. March 2012 vol. 27 no. 2 97-106.


22.

Three-dimensional culture of mouse bone marrow cells within a porous polymer scaffold: effects of oxygen concentration and stromal layer on expansion of haematopoietic progenitor cells.Miyoshi H, Murao M, Ohshima N, Tun T.J Tissue Eng Regen Med. 2011 Feb;5(2):112-8. PMID:20653040


23.

Ectopic Bone Induction by BMP-loaded Collagen Scaffold and Bone Marrow Stromal Cell Sheet.Kana INOUE, Hirofumi MIYAJI, Tsutomu SUGAYA and Masamitsu KAWANAMI. J Oral Tissue Eng. Vol. 8 (2010) , No. 1 pp.19-29.


24.

A cell leakproof PLGA-collagen hybrid scaffold for cartilage tissue engineering.Kawazoe N, Inoue C, Tateishi T, Chen G.Biotechnol Prog. 2010 May-Jun;26(3):819-26. PMID: 20039440


25.

Efficacy of Tooth Extraction Wound Protection Made of Atelocollagen Sponge (TRE-641): A Pilot Study in DogsMakoto Hirota), Nobuyuki Mizuki), Shinjiro Aoki), Susumu Omura), Kei Watanuki), Tomomichi Ozawa), Toshinori Iwai), Yoshiro Matsui) and Iwai Tohnai. Journal of Hard Tissue Biology Vol. 18 (2009) , No. 2 pp.89-94.


26.

Three-dimensional Cultures of Rat Pancreatic RIN-5F Cells in Porous PLGA-collagen Hybrid Scaffolds.Naoki Kawazoe, Xiaoting Lin, Tetsuya Tateishi, and Guoping Chen.J BioactCompat Pol. January 2009 24: 25-42.


27.

Stimulating effects of fibroblast growth factors on hepatic function of fetal liver cells synergistically with oncostatin M in three-dimensional culture.Minagawa K, Koyama T, Miyoshi H.J BiosciBioeng. 2009 Mar;107(3):307-11. PMID: 19269598


28.

Recombinant human bone morphogenetic protein-2/atelocollagen composite as a new material for ossicular reconstruction.Takeuchi A, Tsujigiwa H, Murakami J, Kawasaki A, Takeda Y, Fukushima K, Rodriguez AP, Nagatsuka H, Yamada M, Nishizaki K.J Biomed Mater Res A. 2009 Apr;89(1):36-45. PMID: 18404714


29.

Multiwalled carbon nanotube coating on titanium.Terada M, Abe S, Akasaka T, Uo M, Kitagawa Y, Watari F.Biomed Mater Eng. 2009;19(1):45-52. PMID: 19458445


30.

Development of biodegradable scaffolds based on patient-specific arterial configuration.Uchida T, Ikeda S, Oura H, Tada M, Nakano T, Fukuda T, Matsuda T, Negoro M, Arai F.J Biotechnol. 2008 Jan 20;133(2):213-8. PMID: 17868940


31.

Evaluation of diaphragmatic hernia repair using PLGA mesh-collagen sponge hybrid scaffold: an experimental study in a rat model.Urita Y, Komuro H, Chen G, Shinya M, Saihara R, Kaneko M.Pediatr Surg Int. 2008 Sep;24(9):1041-5. PMID: 18668247


32.

Establishment of Nanofiber Preparation Technique by Electrospinning.Y Yamashita, F Ko, H Miyake, A HigashiyamaSen'IGakkaishi. 2008 Vol. 64 No. 1 P 24-28.


33.

In situ tissue regeneration using a novel tissue-engineered, small-caliber vascular graft without cell seeding.Yokota T, Ichikawa H, Matsumiya G, Kuratani T, Sakaguchi T, Iwai S, Shirakawa Y, Torikai K, Saito A, Uchimura E, Kawaguchi N, Matsuura N, Sawa Y.J Thorac Cardiovasc Surg. 2008 Oct;136(4):900-7. PMID: 18954628


34.

Effects of oncostatin M on secretion of vascular endothelial growth factor and reconstruction of liver-like structure by fetal liver cells in monolayer and three-dimensional cultures.Ehashi T, Koyama T, Ookawa K, Ohshima N, Miyoshi H.Biomed Mater Res A. 2007 Jul;82(1):73-9. PMID: 17269136


35.

Acceleration of bone formation with BMP2 in frame-reinforced carbonate apatite-collagen sponge scaffolds.Hirata I, Nomura Y, Ito M, Shimazu A, Okazaki M.J Artif Organs. 2007;10(4):212-7. PMID: 18071850


36.

Ultrastructural study on the specific binding of genetically engineered epidermal growth factor to type I collagen fibrils.Kato K, Sato H, Iwata H.Bioconjug Chem. 2007 Nov-Dec;18(6):2137-43. PMID: 17894450


37.

Osteochondral tissue engineering using a PLGA–collagen hybrid mesh.Guoping Chen, Junzo Tanaka, Tetsuya Tateishi.Materials Science and Engineering: C, Volume 26, Issue 1, January 2006, Pages 124-129.


38.

Polymer Scaffolds for Tissue Engineering.G. P. Chen, M. Tanaka, T. Tateishi.Advances in Science and Technology, Vol. 49, pp. 136-141, Oct. 2006.


39.

Preparation of a biphasic scaffold for osteochondral tissue engineering.Guoping Chen, Takashi Sato, Junzo Tanaka, Tetsuya Tateishi.Materials Science and Engineering: C, Volume 26, Issue 1, January 2006, Pages 118-123.


40.

Three-dimensional culture of porcine fetal liver cells for a bioartificial liver.Ehashi T, Ohshima N, Miyoshi H.J Biomed Mater Res A. 2006 Apr;77(1):90-6. PMID: 16355413


41.

Osteoblast Behavior at the Surface of CO3Ap-Collagen Sponges.M. Okazaki, Y. Tieliewuhan, I. Hirata.Key Engineering Materials, Vols. 309-311, pp. 989-992, May. 2006.


42.

Albumin and urea production by hepatocytes cultured on polyurethane foaming membranes coated with extracellular matrix.Akon Higuchi, Masuhiro Satoh, Kenichi Kobayashi, Chong Su Cho, Toshihiro Akaike, Tae Moon Tak, Satsuki Egashira, Yuki Matsuoka, Shizue Hayashi Natori.Journal of Membrane Science, Volume 280, Issues 1–2, 1 September 2006, Pages 983-989.


43.

Detailed consideration of physicochemical properties of CO3apatites as biomaterials in relation to carbonate content using ICP, X-ray diffraction, FT-IR, SEM, and HR-TEM.Yokota R, Hayashi H, Hirata I, Miake Y, Yanagisawa T, Okazaki M.Dent Mater J. 2006 Sep;25(3):597-603. PMID: 17076333


44.

Culturing of skin fibroblasts in a thin PLGA-collagen hybrid mesh.Chen G, Sato T, Ohgushi H, Ushida T, Tateishi T, Tanaka J.Biomaterials. 2005 May;26(15):2559-66. PMID: 15585258


45.

Albumin and urea production by hepatocytes cultured on extracellular matrix proteins-conjugated poly(vinyl alcohol) membranes.Higuchi A, Kurihara M, Kobayashi K, Cho CS, Akaike T, Hara M.J Biomater Sci Polym Ed. 2005;16(7):847-60. PMID: 16128292


46.

Temperature-dependent cell detachment on Pluronic gels.Higuchi A, Yamamoto T, Sugiyama K, Hayashi S, Tak TM, Nakagawa T.Biomacromolecules. 2005 Mar-Apr;6(2):691-6. PMID: 15762631


47.

SEM observation of collagen fibrils secreted from the body surface of osteoblasts on a CO3apatite-collagen sponge.Hirata I, Nomura Y, Tabata H, Miake Y, Yanagisawa T, Okazaki M.Dent Mater J. 2005 Sep;24(3):460-4. PMID: 16279740


48.

Effects of biomaterials on cell adhesion of human periodontal ligament fibroblasts and fibronectin adsorption.Y. Iwamatsu-Kobayashi, D. Nishihara, M. Hirata, K. Kindaichi, M. Komatsu.International Congress Series, Volume 1284, September 2005, Pages 334-335.


49.

Cell adhesion of bone marrow cells, chondrocytes, ligament cells and synovial cells on a PLGA–collagen hybrid mesh.Guoping Chen, Dechang Liu, Norio Maruyama, Hajime Ohgushi, Junzo Tanaka, Tetsuya Tateishi.Materials Science and Engineering: C. Volume 24, Issues 6–8, 1 December 2004, Pages 867–873.


50.

Application of PLGA-collagen hybrid mesh for three-dimensional culture of canine anterior cruciate ligament cells.Guoping Chen, Takashi Sato, MasatakaSakane, Hajime Ohgushi, Takashi Ushida, Junzo Tanaka, Tetsuya Tateishi.Materials Science and Engineering: C. Volume 24, Issues 6–8, 1 December 2004, Pages 861–866.


51.

Regeneration of cartilage tissue by combination of canine chondrocyte and a hybrid mesh scaffold.Guoping Chen, Takashi Sato, Takashi Ushida, Rei Hirochika, NaoyukiOchiai, Tetsuya Tateishi.Materials Science and Engineering: C. Volume 24, Issue 3, 1 April 2004, Pages 373–378.


52.

Characterization of CO3Ap-collagen sponges using X-ray high-resolution microtomography.Itoh M, Shimazu A, Hirata I, Yoshida Y, Shintani H, Okazaki M.Biomaterials. 2004 Jun;25(13):2577-83. PMID: 14751743


53.

Osteoblast proliferation behavior and bone formation on and in CO3apatite-collagen sponges with a porous hydroxyapatite frame.Tieliewuhan Y, Hirata I, Sasaki A, Minagi H, Okazaki M.Dent Mater J. 2004 Sep;23(3):258-64. PMID: 15510851


54.

Custom-shaping system for bone regeneration by seeding marrow stromal cells onto a web-like biodegradable hybrid sheet.Tsuchiya K, Mori T, Chen G, Ushida T, Tateishi T, Matsuno T, Sakamoto M, Umezawa A.Cell Tissue Res. 2004 May;316(2):141-53. PMID: 14999559


55.

Bone augmentation using rhGDF-5-collagen composite.Kuniyasu H, Hirose Y, Ochi M, Yajima A, Sakaguchi K, Murata M, Pohl J.Clin Oral Implants Res. 2003 Aug;14(4):490-9. PMID: 12869012

I-PC凝胶上方培养、其他

1.

In Vitro and In Vivo Comparison of Different Types of Rabbit Mesenchymal Stem Cells for Cartilage Repair.Khalilifar MA, BaghabanEslaminejad MR, Ghasemzadeh M, Hosseini S, Baharvand H.Cell J. 2019 Jul;21(2):150-160. PMID: 30825288

.

2.

Temperature dependence of synchronized beating of cultured neonatal rat heart-cell networks with increasing age measured by multi-electrode arrays.Uchida T, Kitora R, Gohara K (2018). Trends Med 18, Volume 18(4): 1-10.


3.

Spontaneous acquisition of infinite proliferative capacity by a rabbit corneal endothelial cell line with maintenance of phenotypic and physiological characteristics.Kageyama T, Hayashi R, Hara S, Yoshikawa K, Ishikawa Y, Yamato M, Nishida K.J Tissue Eng Regen Med. 2017 Apr;11(4):1057-1064. PMID: 25758102


4.

Electrochemical Sensing of Casein Based on the Interaction between Its Phosphate Groups and a Ruthenium(III) Complex.Inaba I1, Kuramitz H, Sugawara K.Anal Sci. 2016;32(8):853-9. PMID: 27506711


5.

Biochemical Mechanism of Titanium Fixation into Living Bone: Acid Soluble Phosphoproteins in Bone Binds with Titanium and Induced Endochondral Ossification in vivo.Yoshinori KUBOKI, Kimitoshi YAGAMI, Michiko TERADA-NAKAISHI, Toshitake FURUSAWA, Yasuko NAKAOKI, Masaaki KURASAKI.J. Oral Tissue Engin. 2017;15(2):109-118.


6.

Time of flight-secondary ion mass spectrometry analysis of protein adsorption on a polyvinylidene difluoride surface modified by ion irradiation.Okuji S, Kitazawa H, Takeda Y.Colloids Surf B Biointerfaces. 2016 Dec 1;148:249-254. PMID: 27616065


7.

Surface Modification of PMMA to Improve Adhesion to Corneal Substitutes in a Synthetic Core-Skirt Keratoprosthesis.Riau AK1,2, Mondal D2, Yam GH2, Setiawan M2, Liedberg B1,3, Venkatraman SS1, Mehta JS1,2,4,5.ACS Appl Mater Interfaces. 2015 Oct 7;7(39):21690-702. PMID: 26389670


8.

Synergistic effect of ascorbic acid and collagen addition on the increase in type 2 collagen accumulation in cartilage-like MSC sheet.Sato Y, Mera H, Takahashi D, Majima T, Iwasaki N, Wakitani S, Takagi M.Cytotechnology. 2017 Jun;69(3):405-416. PMID: 26572654


9.

Comparison of different cationized proteins as biomaterials for nanoparticle-based ocular gene delivery.Zorzi GK, Párraga JE, Seijo B, Sanchez A.Colloids Surf B Biointerfaces. 2015 Aug 12;135:533-541. PMID: 26298086


10.

Protective Effects of Soluble Collagen during Ultraviolet-A Crosslinking on Enzyme-Mediated Corneal Ectatic Models.Wang X, Huang Y, Jastaneiah S, Majumdar S, Kang JU, Yiu SC, Stark W, Elisseeff JH.PLoS One. 2015 Sep 1;10(9):e0136999. PMID: 26325407


11.

Construction of an electrode modified with gallium(III) for voltammetric detection of ovalbumin.Sugawara K, Okusawa M, Takano Y, Kadoya T.Anal Sci. 2014;30(6):649-55. PMID: 24919669


12.

The promotion of angiogenesis by growth factors integrated with ECM proteins through coiled-coil structures.Assal Y, Mie M, Kobatake E.Biomaterials. 2013 Apr;34(13):3315-23. PMID: 23388150


13.

Hollow Fiber Module Applied for Effective Proliferation and Harvest of Cultured Chondrocytes.Y. Mori, M. Watanabe, S. Nakagawa, Y. Asawa, S. Nishizawa, K. Okubo, H. Saijo, S. Nagata, Y. Fujihara, T. Takato and K. Hoshi,Materials Sciences and Applications, Vol. 4 No. 8A, 2013, pp. 62-67.


14.

Effects of hyaluronan oligosaccharides on apoptosis ofhuman gingival fibroblasts.Tanne, Y. ,Tanimoto, K. , Okuma, S. , Kunimatsu, R. , Hirose, N. , Mitsuyoshi, T. and Tanne, K.Open Journal of Stomatology (2013), 3, 19-24.


15.

The optimization of porous polymeric scaffolds for chondrocyte/atelocollagen based tissue-engineered cartilage.Tanaka Y, Yamaoka H, Nishizawa S, Nagata S, Ogasawara T, Asawa Y, Fujihara Y, Takato T, Hoshi K.Biomaterials. 2010 Jun;31(16):4506-16. PMID: 20206380


16.

The application of atelocollagen gel in combination with porous scaffolds for cartilage tissue engineering and its suitable conditions.Yamaoka H, Tanaka Y, Nishizawa S, Asawa Y, Takato T, Hoshi K.J Biomed Mater Res A. 2010 Apr;93(1):123-32. PMID: 19536835


17.

Gastric submucosa as the safer and repeatable site for hepatocyte transplantation.Kakihara N, Takeshita K, Naka S, Ishibashi H.Transplant Proc. 2009 Jan-Feb;41(1):425-8. PMID: 19249571


18.

Experimental evaluation of a new antithrombogenic stent using ion beam surface modification.Sugita Y, Suzuki Y, Someya K, Ogawa A, Furuhata H, Miyoshi S, Motomura T, Miyamoto H, Igo S, Nosé Y.Artif Organs. 2009 Jun;33(6):456-63. PMID: 19473141


19.

Construction of multi-functional extracellular matrix proteins that promote tube formation of endothelial cells.Nakamura M, Mie M, Mihara H, Nakamura M, Kobatake E.Biomaterials. 2008 Jul;29(20):2977-86. PMID: 18423582


20.

Effect of interleukins response to ECM-induced acquisition of drug resistance in MCF-7 cells.Ohbayashi M, Yasuda M, Kawakami I, Kohyama N, Kobayashi Y, Yamamoto T.Exp Oncol. 2008 Dec;30(4):276-82. PMID: 19112424


21.

Feasibility of using a human nucleus pulposus cell line as a cell source in cell transplantation therapy for intervertebral disc degeneration.Iwashina T, Mochida J, Sakai D, Yamamoto Y, Miyazaki T, Ando K, Hotta T.Spine (Phila Pa 1976). 2006 May 15;31(11):1177-86. PMID: 16688029


22.

Effect of DNA structure on the formation of collagen-DNA complex.Kaya M, Toyama Y, Kubota K, Nodasaka Y, Ochiai M, Nomizu M, Nishi N.Int J Biol Macromol. 2005 Mar;35(1-2):39-46. PMID: 15769514


23.

Differentiation of mesenchymal stem cells transplanted to a rabbit degenerative disc model: potential and limitations for stem cell therapy in disc regeneration.Sakai D, Mochida J, Iwashina T, Watanabe T, Nakai T, Ando K, Hotta T.Spine (Phila Pa 1976). 2005 Nov 1;30(21):2379-87. PMID: 16261113


24.

Novel bone graft model using bead-cell sheets composed of tricalcium phosphate beads and bone marrow cells.ShunsukeMiyauchi, Katsuko S. Furukawa, Yoshikazu Umezu, Yasuyuki Ozeki, Takashi Ushida, Tetsuya Tateishi.Materials Science and Engineering: C. Volume 24, Issues 6–8, 1 December 2004, Pages 875–879.


25.

Effect of poly DL-lactic-co-glycolic acid mesh on a three-dimensional culture of chondrocytes.Takagi M, Fukui Y, Wakitani S, Yoshida T.J BiosciBioeng. 2004;98(6):477-81. PMID: 16233739


26.

Effects of basic fibroblast growth factor on the repair of large osteochondral defects of articular cartilage in rabbits: dose-response effects and long-term outcomes.Tanaka H, Mizokami H, Shiigi E, Murata H, Ogasa H, Mine T, Kawai S.Tissue Eng. 2004 Mar-Apr;10(3-4):633-41. PMID: 15165479


27.

Bioartificial liver support system using porcine hepatocytes entrapped in a three-dimensional hollow fiber module with collagen gel: An evaluation in the swine acute liver failure model.Naka S, Takeshita K, Yamamoto T, Tani T, Kodama M.Artif Organs. 1999 Sep;23(9):822-8. PMID: 10491029


28.

Effects of collagen matrix on proliferation and differentiation of vascular smooth muscle cells in vitro.Sakata N, Kawamura K, Takebayashi S.Exp Mol Pathol. 1990 Apr;52(2):179-91. PMID: 2332035


29.

In vitro maturation of collagen fibrils modulates spreading, DNA synthesis, and collagenolysis of epidermal cells and fibroblasts.Nishikawa A, Taira T, Yoshizato K.Exp Cell Res. 1987 Jul;171(1):164-77. PMID: 3040448

I-AC三维培养(3D培养)

1.

Two-photon microscopic observation of cell-production dynamics in the developing mammalian neocortex in utero.Kawasoe R, Shinoda T, Hattori Y, Nakagawa M, Pham TQ, Tanaka Y, Sagou K, Saito K, Katsuki S, Kotani T, Sano A, Fujimori T, Miyata T.Dev Growth Differ. 2020 Feb;62(2):118-128. PMID: 31943159


2.

Rapid Photoinduced Single Cell Detachment from Gold Nanoparticle-Embedded Collagen Gels with Low Denaturation Temperature.Kojima C, Nishio M, Nakajima Y, Kawano T, Takatsuka K, Matsumoto A.Polymers (Basel). 2020 Jan 15;12(1). PMID: 31952267


3.

Hydrostatic pressure promotes endothelial tube formation through aquaporin 1 and Ras-ERK signaling.Yoshino D, Funamoto K, Sato K, Kenry, Sato M, Lim CT.Commun Biol. 2020 Apr 2;3(1):152. PMID: 32242084


4.

Torula yeast (Candida utilis)‐derived glucosylceramide contributes to dermal elasticity in vitro.Fukunaga, S, Wada, S, Yamashita, M, et al.J Food Biochem. 2019;e12847.


5.

Nω -(Carboxymethyl)arginine Is One of the Dominant Advanced Glycation End Products in Glycated Collagens and Mouse Tissues.Kinoshita S, Mera K, Ichikawa H, Shimasaki S, Nagai M, Taga Y, Iijima K, Hattori S, Fujiwara Y, Shirakawa JI, Nagai R.Oxid Med Cell Longev. 2019 Sep 10;2019:9073451. PMID: 31583049


6.

Effect of Mechanical Compression on Invasion Process of Malignant Melanoma Using In Vitro Three-Dimensional Cell Culture Device.Morikura T, Miyata S.Micromachines (Basel). 2019 Sep 30;10(10). PMID: 31575066


7.

Effect of cell culture density on dental pulp-derived mesenchymal stem cells with reference to osteogenic differentiation.Noda S, Kawashima N, Yamamoto M, Hashimoto K, Nara K, Sekiya I, Okiji T.Sci Rep. 2019 Apr 1;9(1):5430. PMID: 30931957


8.

Utility of the Teslar Facial Massager for Skin Elasticity and the Mechanism of its Effects. Kazuhisa Maeda, Sakura Koizumi, Taiga Sano, Ayano Yoshimura, HarukaKiriyama and Seina Mimura.Cosmetics 2018, 5(3), 49.


9.

Downregulation of ERG and FLI1 expression in endothelial cells triggers endothelial-to-mesenchymal transition.Nagai N, Ohguchi H, Nakaki R, Matsumura Y, Kanki Y, Sakai J, Aburatani H, Minami T.PLoS Genet. 2018 Nov 30;14(11):e1007826. PMID: 30500808


10.

Role of extrinsic mechanical force in the development of the RA-I tactile mechanoreceptor.Pham TQ, Kawaue T, Hoshi T, Tanaka Y, Miyata T, Sano A.Sci Rep. 2018 Jul 23;8(1):11085. PMID: 30038295


11.

Elasticity-based boosting of neuroepithelial nucleokinesis via indirect energy transfer from mother to daughter.Shinoda T, Nagasaka A, Inoue Y, Higuchi R, Minami Y, Kato K, Suzuki M, Kondo T, Kawaue T, Saito K, Ueno N, Fukazawa Y, Nagayama M, Miura T, Adachi T, Miyata T.PLoS Biol. 2018 Apr 20;16(4):e2004426. PMID: 29677184


12.

Differentiating cells mechanically limit the interkinetic nuclear migration of progenitor cells to secure apical cytogenesis.Watanabe Y, Kawaue T, Miyata T.Development. 2018 Jul 17;145(14). PMID: 29945866


13.

Both triazolyl ester of ketorolac (15K) and YM155 inhibit the embryonic angiogenesis in ovo (fertilized eggs) via their common PAK1-survivin/VEGF signaling pathway.Ahn MR, Bae JY, Jeong DH, Takahashi H, Uto Y, Maruta H.Drug DiscovTher. 2017;11(6):300-306. PMID: 29332887


14.

Dysregulated Collagen Homeostasis by Matrix Stiffening and TGF-β1 in Fibroblasts from Idiopathic Pulmonary Fibrosis Patients: Role of FAK/Akt.Giménez A, Duch P, Puig M, Gabasa M, Xaubet A, Alcaraz J.

Int J Mol Sci. 2017 Nov 16;18(11). PMID: 29144435


15.

Defined three-dimensional microenvironments boost induction of pluripotency.Caiazzo M, Okawa Y, Ranga A, Piersigilli A, Tabata Y, Lutolf MP.Nat Mater. 2016 Mar;15(3):344-52. PMID: 26752655


16.

ECM microenvironment unlocks brown adipogenic potential of adult human bone marrow-derived MSCs.Lee MH, Goralczyk AG, Kriszt R, Ang XM, Badowski C, Li Y, Summers SA, Toh SA, Yassin MS, Shabbir A, Sheppard A, Raghunath M.Sci Rep. 2016 Feb 17;6:21173. PMID: 26883894


17.

Dynamics of Tissue-Induced Alignment of Fibrous Extracellular Matrix.Piotrowski-Daspit AS, Nerger BA, Wolf AE, Sundaresan S, Nelson CM.Biophys J. 2017 Aug 8;113(3):702-713. PMID: 28793224


18.

Increased AGE-RAGE ratio in idiopathic pulmonary fibrosis.Machahua C, Montes-Worboys A, Llatjos R, Escobar I, Dorca J, Molina-Molina M, Vicens-Zygmunt V.Respir Res. 2016 Nov 5;17(1):144.PMID: 27816054


19.

Differences in the Mechanical Properties of the Developing Cerebral Cortical Proliferative Zone between Mice and Ferrets at both the Tissue and Single-Cell Levels.Nagasaka A, Shinoda T, Kawaue T, Suzuki M, Nagayama K, Matsumoto T, Ueno N, Kawaguchi A and Miyata T.(2016) Front. Cell Dev. Biol. 4:139.


20.

Interstitial fluid pressure regulates collective invasion in engineered human breast tumors via Snail, vimentin, and E-cadherin.Piotrowski-Daspit AS, Tien J, Nelson CM.Integr Biol (Camb). 2016 Mar 14;8(3):319-31. PMID: 26853861


21.

Mammary Branching Morphogenesis Requires Reciprocal Signaling by Heparanase and MMP-14.Gomes AM, Bhat R, Correia AL, Mott JD, Ilan N, Vlodavsky I, Pavão MS, Bissell M.J Cell Biochem. 2015 Aug;116(8):1668-79. PMID: 25735873


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Cancer cell migration on elongate protrusions of fibroblasts in collagen matrix.Miyazaki K, Oyanagi J, Hoshino D, Togo S, Kumagai H, Miyagi Y.Sci Rep. 2019 Jan 22;9(1):292. PMID: 30670761


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Transfection of T-Box Transcription Factor BRACHYURY and SOX2 Synergistically Promote Self-Renewal and Invasive Phenotype in Oral Cancer Cells.Akimoto N, Nakamura K, Hijioka H, Kume K, Matsumura Y, Sugiura T.Int J Mol Sci. 2018 Nov 16;19(11). PMID: 30453543


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Type IV collagen aggregates promote keratinocyte proliferation and formation of epidermal layer in human skin equivalents.Matsuura-Hachiya Y, Arai KY, Muraguchi T, Sasaki T, Nishiyama T. Exp Dermatol. 2018 May;27(5):443-448. PMID: 28266764


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I-AC培养器材包被

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CCL2 secreted from cancer-associated mesothelial cells promotes peritoneal metastasis of ovarian cancer cells through the P38-MAPK pathway.Yasui H1,2, Kajiyama H3, Tamauchi S1, Suzuki S1, Peng Y1, Yoshikawa N1, Sugiyama M1, Nakamura K1, Kikkawa F1.Clin Exp Metastasis. 2020 Feb;37(1):145-158. PMID: 31541326


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Scleraxis is a transcriptional activator that regulates the expression of Tenomodulin, a marker of mature tenocytes and ligamentocytes.Shukunami C, Takimoto A, Nishizaki Y, Yoshimoto Y, Tanaka S, Miura S, Watanabe H, Sakuma T, Yamamoto T, Kondoh G, Hiraki Y.Sci Rep. 2018 Feb 16;8(1):3155. PMID: 29453333


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The novel G-quadruplex-containing long non-coding RNA GSEC antagonizes DHX36 and modulates colon cancer cell migration.Matsumura K, Kawasaki Y, Miyamoto M, Kamoshida Y, Nakamura J, Negishi L, Suda S, Akiyama T.Oncogene. 2017 Mar 2;36(9):1191-1199. PMID: 27797375


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Methanol and Butanol Extracts of Paeonia lutea Leaves Repress Metastasis of Squamous Cell Carcinoma.Mukudai Y, Zhang M, Shiogama S, Kondo S, Ito C, Motohashi H, Kato K, Fujii M, Shintani S, Shigemori H, Yazawa K, Shirota T.Evid Based Complement Alternat Med. 2016;2016:6087213. PMID: 2729346

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Atmospheric scanning electron microscope observes cells and tissues in open medium through silicon nitride film.Nishiyama H, Suga M, Ogura T, Maruyama Y, Koizumi M, Mio K, Kitamura S, Sato C.J Struct Biol. 2010 Nov;172(2):191-202. PMID: 20723603


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Construction of multifunctional proteins for tissue engineering: epidermal growth factor with collagen binding and cell adhesive activities.HannachiImen E, Nakamura M, Mie M, Kobatake E.J Biotechnol. 2009 Jan 1;139(1):19-25. PMID: 18984018


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A collagen-coated surface enables quantitative evaluation of morphological behaviors of rabbit chondrocytes relating to cell differentiation in an early culture phase.Ali BaradarKhoshfetrata, Masahiro Kino-okaa, KatsuraSugawarab and Masahito TayaBiochemical Engineering Journal Volume 45, Issue 1, 1 June 2009, Pages 60-68


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ATP Release from Cultured Endothelial Cells and Intercellular Calcium Signaling during Shear Stress Exposure.Kudo Susumu, Hosoe Kaoru, Hosobuchi Makoto, Kawasaki Naoto, Tanishita KazuoJournal of Biomechanical Science and Engineering 4(2), 274-285, 2009.


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Human mammary progenitor cell fate decisions are products of interactions with combinatorial microenvironments.LaBarge MA, Nelson CM, Villadsen R, Fridriksdottir A, Ruth JR, Stampfer MR, Petersen OW, Bissell MJ.Integr Biol (Camb). 2009 Jan;1(1):70-9. PMID: 20023793


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Cell fibers promote proliferation of co-cultured cells on a dish.Shima A, Itou A, Takeuchi S.Sci Rep. 2020 Jan 14;10(1):288. PMID: 31937888


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Microfiber-shaped building-block tissues with endothelial networks for constructing macroscopic tissue assembly.Kurashina Y, Sato R, Onoe H.APL Bioeng. 2019 Nov 13;3(4):046101. PMID: 31737859


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A novel micro-grooved collagen substrate for inducing vascular smooth muscle differentiation through cell tissue arrangement and nucleus remodeling.Nagayama K, Uchida K, Sato A.J Mech Behav Biomed Mater. 2019 Feb;90:295-305. PMID: 30396043


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Microfluidic vascular-bed devices for vascularized 3D tissue engineering: tissue engineering on a chip.Takehara H, Sakaguchi K, Sekine H, Okano T, Shimizu T.Biomed Microdevices. 2019 Dec 20;22(1):9. PMID: 31863202


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Temporal Observation of Adipocyte Microfiber Using Anchoring Device.Yokomizo A, Morimoto Y, Nishimura K, Takeuchi S.Micromachines (Basel). 2019 May 29;10(6). PMID: 31146491


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VEGF delivery by smart polymeric PNIPAM nanoparticles affects both osteogenic and angiogenic capacities of human bone marrow stem cells.Adibfar A, Amoabediny G, BaghabanEslaminejad M, Mohamadi J, Bagheri F, ZandiehDoulabi B.Mater Sci Eng C Mater Biol Appl. 2018 Dec 1;93:790-799. PMID: 30274113


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An allogeneic 'off the shelf' therapeutic strategy for peripheral nerve tissue engineering using clinical grade human neural stem cells.O'Rourke C, Day AGE, Murray-Dunning C, Thanabalasundaram L, Cowan J, Stevanato L, Grace N, Cameron G, Drake RAL, Sinden J, Phillips JB.Sci Rep. 2018 Feb 13;8(1):2951. PMID: 29440680


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The Effect of Hypothermic and Cryogenic Preservation on Engineered Neural Tissue.Day AGE, Bhangra KS, Murray-Dunning C, Stevanato L, Phillips J.Tissue Eng Part C Methods. 2017 Oct;23(10):575-582. PMID: 28877649


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Compartmentalized Spherical Collagen Microparticles for Anisotropic Cell Culture Microenvironments.Yoshida S, Takinoue M, Onoe H.Adv Healthc Mater. 2017 Apr;6(8). PMID: 28322015


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An electrically resistive sheet of glial cells for amplifying signals of neuronal extracellular recordings.Matsumura R, Yamamoto H, Niwano M, Hirano-Iwata A.Appl Phys Lett. 2016 Jan 11;108(2):023701.PMID: 27703279


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Regeneration of corneal epithelium utilizing a collagen vitrigel membrane in rabbit models for corneal stromal wound and limbal stem cell deficiency.Chae JJ, Ambrose WM, Espinoza FA, Mulreany DG, Ng S, Takezawa T, Trexler MM, Schein OD, Chuck RS, Elisseeff JH.


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Neural stem/progenitor cell-laden microfibers promote transplant survival in a mouse transected spinal cord injury model.Sugai K, Nishimura S, Kato-Negishi M, Onoe H, Iwanaga S, Toyama Y, Matsumoto M, Takeuchi S, Okano H, Nakamura M.J Neurosci Res. 2015 Dec;93(12):1826-38. PMID: 26301451


26.

Activation of Yes-Associated Protein in Low-Grade Meningiomas Is Regulated by Merlin, Cell Density, and Extracellular Matrix Stiffness.Tanahashi K, Natsume A, Ohka F, Motomura K, Alim A, Tanaka I, Senga T, Harada I, Fukuyama R, Sumiyoshi N, Sekido Y, Wakabayashi T.J Neuropathol Exp Neurol. 2015 Jul;74(7):704-9. PMID: 26049897


27.

Application of a collagen-based membrane and chondroitin sulfate-based hydrogel adhesive for the potential repair of severe ocular surface injuries.Chae JJ, Mulreany DG, Guo Q, Lu Q, Choi JS, Strehin I, Espinoza FA, Schein O, Trexler MM, Bower KS, Elisseeff JH.Mil Med. 2014 Jun;179(6):686-94. PMID: 24902138


28.

Design and construction of an equibiaxial cell stretching system that is improved for biochemical analysis.Ursekar CP, Teo SK, Hirata H, Harada I, Chiam KH, Sawada Y.PLoS One. 2014 Mar 13;9(3):e90665. PMID: 24626190


29.

Banded structures in collagen vitrigels for corneal injury repair.Xia Z, Calderón-Colón X, McCally R, Maranchi J, Rong L, Hsiao B, Elisseeff J, Trexler M.Acta Biomater. 2014 Aug;10(8):3615-9. PMID: 24859294


30.

Vitrified collagen-based conjunctival equivalent for ocular surface reconstruction.Zhou H, Lu Q, Guo Q, Chae J, Fan X, Elisseeff JH, Grant MP.Biomaterials. 2014 Aug;35(26):7398-406. PMID: 24933512


31.

Modulation of keratocyte phenotype by collagen fibril nanoarchitecture in membranes for corneal repair.Guo Q, Phillip JM, Majumdar S, Wu PH, Chen J, Calderón-Colón X, Schein O, Smith BJ, Trexler MM, Wirtz D, Elisseeff JH.Biomaterials. 2013 Dec;34(37):9365-72. PMID: 24041426


32.

Substrate stiffness regulates temporary NF-κB activation via actomyosin contractions.Ishihara S, Yasuda M, Harada I, Mizutani T, Kawabata K, Haga H.Exp Cell Res. 2013 Nov 15;319(19):2916-27. PMID: 24113574


33.

Metre-long cell-laden microfibres exhibit tissue morphologies and functions. Onoe H, Okitsu T, Itou A, Kato-Negishi M, Gojo R, Kiriya D, Sato K, Miura S, Iwanaga S, Kuribayashi-Shigetomi K, Matsunaga YT, Shimoyama Y, Takeuchi S. Nat Mater. 2013 Jun;12(6):584-90. PMID: 23542870


34.

Regenerative process of tracheal epithelium using a collagen vitrigel sponge scaffold.Tani A, Tada Y, Takezawa T, Wada I, Imaizumi M, Nomoto Y, Nomoto M, Omori K.Laryngoscope. 2013 Jun;123(6):1469-73. PMID: 23625522


35.

Cellular response to substrate rigidity is governed by either stress or strain.Yip AK, Iwasaki K, Ursekar C, Machiyama H, Saxena M, Chen H, Harada I, Chiam KH, Sawada Y.Biophys J. 2013 Jan 8;104(1):19-29. PMID: 23332055


36.

Structure and properties of collagen vitrigel membranes for ocular repair and regeneration applications.Calderón-Colón X, Xia Z, Breidenich JL, Mulreany DG, Guo Q, Uy OM, Tiffany JE, Freund DE, McCally RL, Schein OD, Elisseeff JH, Trexler MM.Biomaterials. 2012 Nov;33(33):8286-95. PMID: 22920579


37.

Local mechanical stimulation of mardin-darby canine kidney cell sheets on temperature-responsive hydrogel.Harada I, Yanagisawa S, Iwasaki K, Cho CS, Akaike T.Int J Mol Sci. 2012;13(1):1095-108. PMID:22312306


38.

Hybrid scaffolds composed of hyaluronic acid and collagen for cartilage regeneration.Hyun Jung Kim, KabKeun Kim, Il Kyu Park, Baek Sun Choi, Jae Ho Kim and Moon Suk Kim. Tissue Engineering and Regenerative Medicine. Volume 9, Number 2 (2012), 57-62.


39.

Fabrication of a heterostructural fibrillated collagen matrix for the regeneration of soft tissue function.Kwangwoo Nam, Yuuki Sakai, Yoshihide Hashimoto, Tsuyoshi Kimura and Akio Kishida. Soft Matter, 2012, 8, 472-480.


40.

Matrix compliance and RhoA direct the differentiation of mammary progenitor cells.Lui C, Lee K, Nelson CM.Biomech Model Mechanobiol. 2012 Nov;11(8):1241-9. PMID: 22161021


41.

Regulation of growth factors-associated cell migration by C-phycocyanin scaffold in dermal wound healing.Madhyastha H, Madhyastha R, Nakajima Y, Omura S, Maruyama M.Clin Exp Pharmacol Physiol. 2012 Jan;39(1):13-9. PMID:21995435


42.

Heterofunctional nanosheet controlling cell adhesion properties by collagen coating.Niwa D, Fujie T, Lang T, Goda N, Takeoka S.J Biomater Appl. 2012 Aug;27(2):131-41. PMID: 21343215


43..

Thermal denaturation of type I collagen vitrified gels.Zhiyong Xia, Xiomara Calderon-Colona, Morgana Trexlera, Jennifer Elisseeffb, QiongyuGuob. ThermochimicaActaVolume 527, 10 January 2012, Pages 172–179.


44.

Engineering a collagen matrix that replicates the biological properties of native extracellular matrix.

Nam K, Sakai Y, Funamoto S, Kimura T, Kishida A.J Biomater Sci Polym Ed. 2011;22(15):1963-82. PMID: 20961498


45.

A nano-fibrous assembly of collagen–hyaluronic acid for controlling cell-adhesive properties.ToshinoriFujie, ShoFurutate, Daisuke Niwaa and Shinji Takeoka. Soft Matter, 2010,6, 4672-4676


46.

Preparation of a collagen/polymer hybrid gel designed for tissue membranes. Part I: controlling the polymer-collagen cross-linking process using an ethanol/water co-solvent.Nam K, Kimura T, Funamoto S, Kishida A.Acta Biomater. 2010 Feb;6(2):403-8. PMID: 19531383


47.

Preparation of a collagen/polymer hybrid gel for tissue membranes. Part II: in vitro and in vivo biological properties of the collagen gels.Nam K, Kimura T, Funamoto S, Kishida A.Acta Biomater. 2010 Feb;6(2):409-17. PMID: 19539060


48.

Micro 3D Culture System using Hyaluronan-Collagen Capsule for Skeletal Muscle-Derived Stem Cells.Tono-Okada K, Okada Y, Masuda Y, Akio Hoshi, Akira Akatsuka, Akira Teramoto, Koji Abe and Tetsuro Tamaki.Open Tissue Eng Regen Med J, 2010, 3, 18-27.


49.

Construction and Biofunction of 3-Dimensional Self-assembly Collagen Nanostructure on PLLA Substrate.Shouhong Xu, Aiping Liu, Xiaoxiao Lin, Honglai Liu and MasakastuYonese. Chin J Chem. 2010 28: 1565–1574.


50.

Cryopreservation in situ of cell monolayers on collagen vitrigel membrane culture substrata: ready-to-use preparation of primary hepatocytes and ES cells.Miyamoto Y, Enosawa S, Takeuchi T, Takezawa T.Cell Transplant. 2009;18(5):619-26. PMID: 19775524


51.

Reconstruction of three-dimensional human skin model composed of dendritic cells, keratinocytes and fibroblasts utilizing a handy scaffold of collagen vitrigel membrane.Uchino T, Takezawa T, Ikarashi Y.Toxicol In Vitro. 2009 Mar;23(2):333-7. PMID: 19121381


52.

Bone regeneration using collagen type I vitrigel with bone morphogenetic protein-2.Zhao J, Shinkai M, Takezawa T, Ohba S, Chung UI, Nagamune T. J BiosciBioeng. 2009 Mar;107(3):318-23. PMID: 19269600


53.

The osteogenic differentiation of adipose tissue-derived precursor cells in a 3D scaffold/matrix environment.Leong DT, Nah WK, Gupta A, Hutmacher DW, Woodruff MA.Curr Drug Discov Technol. 2008 Dec;5(4):319-27. PMID: 19075612


54.

Physical and biological properties of collagen-phospholipid polymer hybrid gels.Nam K, Kimura T, Kishida A.Biomaterials. 2007 Jul;28(20):3153-62. PMID: 17391753


55.

Preparation and characterization of cross-linked collagen-phospholipid polymer hybrid gels.Nam K, Kimura T, Kishida A.Biomaterials. 2007 Jan;28(1):1-8. PMID: 16959313


56.

Reconstruction of a hard connective tissue utilizing a pressed silk sheet and type-I collagen as the scaffold for fibroblasts.Takezawa T, Ozaki K, Takabayashi C.Tissue Eng. 2007 Jun;13(6):1357-66. PMID: 17518702


57.

Collagen vitrigel membrane useful for paracrine assays in vitro and drug delivery systems in vivo.Takezawa T, Takeuchi T, Nitani A, Takayama Y, Kino-Oka M, Taya M, Enosawa S.J Biotechnol. 2007 Aug 1;131(1):76-83. PMID: 17624459


58.

Chondrogenic differentiation of bovine bone marrow mesenchymal stem cells (MSCs) in different hydrogels: influence of collagen type II extracellular matrix on MSC chondrogenesis.Bosnakovski D, Mizuno M, Kim G, Takagi S, Okumura M, Fujinaga T.BiotechnolBioeng. 2006 Apr 20;93(6):1152-63. PMID: 16470881


59.

Electrochemical properties of 316L stainless steel with culturing L929 fibroblasts.Hiromoto S, Hanawa T.J R Soc Interface. 2006 Aug 22;3(9):495-505. PMID: 16849246


60.

Fabrication of a new tubular fibrous PLCL scaffold for vascular tissue engineering.Kim SH, Kwon JH, Chung MS, Chung E, Jung Y, Kim SH, Kim YH.J Biomater Sci Polym Ed. 2006;17(12):1359-74. PMID: 17260508


61.

In vitro assays for adhesion and migration of osteoblastic cells (Saos-2) on titanium surfaces.Li CY, Gao SY, Terashita T, Shimokawa T, Kawahara H, Matsuda S, Kobayashi N.Cell Tissue Res. 2006 Jun;324(3):369-75. PMID: 16450122


62.

Novel tissue-engineered biodegradable material for reconstruction of vascular wall.Iwai S, Sawa Y, Taketani S, Torikai K, Hirakawa K, Matsuda H.Ann Thorac Surg. 2005 Nov;80(5):1821-7. PMID: 16242461


63.

Co-electrospun nanofiber fabrics of poly(L-lactide-co-epsilon-caprolactone) with type I collagen or heparin.Kwon IK, Matsuda T.Biomacromolecules. 2005 Jul-Aug;6(4):2096-105. PMID: 16004450


64.

In vitro and in vivo study of He+ ion irradiated collagen for development of small diameter stent graft material.Y. Suzuki, M. Iwaki, N. Takahashi, T. Yotoriyama, K. Kurotobi, H. Ujiie, T. Hori.Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, Volume 232, Issues 1–4, May 2005, Pages 353-357.


65.

The changes of cell adhesion to collagen-coated Al2O3 by ion bombardment.Y. Yokoyama, T. Tsukamoto, T. Kobayashi, M. Iwaki.Surface and Coatings Technology, Volume 196, Issues 1–3, 22 June 2005, Pages 298-302.


66.

Collagen vitrigel: a novel scaffold that can facilitate a three-dimensional culture for reconstructing organoids.Takezawa T, Ozaki K, Nitani A, Takabayashi C, Shimo-Oka T. Cell Transplant. 2004;13(4):463-73. PMID: 15468688

I-AC凝胶上培养、其他

1.

Mouse skin fibroblasts with mesenchymal stem cell marker p75 neurotrophin receptor proliferate in response to prolyl-hydroxyproline.Tomoko T. Asai, Kazunobu Yoshikawa, Kazuhiro Sawada, KazunaFukamizu, Yoh-ichi Koyama, Yasutaka Shigemura, Shiro Jimi, Kenji Sato.Journal of Functional Foods, Volume 66, 2020.


2.

Discovery of Ti-Binding Abilities of Phosphorylated-Chitin and -Collagen.Yoshinori Kuboki, Seiichi Tokura, KimitoshiYagami, ToshitakeFurusawa, Kouichi Morimoto, Qin Song, Souhei (Xiaobing) Iku, Masaaki Kurasaki.Journal of Hard Tissue Biology, 2020 29(1):45-48.


3.

Food-Derived Collagen Peptides, Prolyl-Hydroxyproline (Pro-Hyp), and Hydroxyprolyl-Glycine (Hyp-Gly) Enhance Growth of Primary Cultured Mouse Skin Fibroblast Using Fetal Bovine Serum Free from Hydroxyprolyl Peptide.Asai TT, Oikawa F, Yoshikawa K, Inoue N, Sato K.Int J Mol Sci. 2019 Dec 28;21(1). PMID: 31905705


4.

Development of a collagen-like peptide polymer via end-to-end disulfide cross-linking and its application as a biomaterial.Ichise SF, Takeuchi S, Aoki S, Kuroda KC, Nose H, Masuda R, Koide T.Acta Biomater. 2019 Aug;94:361-371. PMID: 31200119


5.

Analysis of Ultraviolet Radiation Wavelengths Causing Hardening and Reduced Elasticity of Collagen Gels In Vitro.Kazuhisa Maeda.Cosmetics 2018, 5(1), 14.


6.

Three-dimensional printed microfluidic modules for design changeable coaxial microfluidic devices.Yuya Morimoto, Mahiro Kiyosawa, Shoji Takeuchi.Sensors and Actuators B: Chemical, Volume 274, 2018, Pages 491-500.


7.

Amino Carbonylation of Epidermal Basement Membrane Inhibits Epidermal Cell Function and Is Suppressed by Methylparaben.HarukaMorimoto ,Lihao Gu , Haifeng Zeng and Kazuhisa Maeda.Cosmetics 2017, 4(4), 38.


8.

Vascularized Tissue-Engineered Model for Studying Drug Resistance in Neuroblastoma.Villasante A, Sakaguchi K, Kim J, Cheung NK, Nakayama M, Parsa H, Okano T, Shimizu T, Vunjak-Novakovic G.Theranostics 2017; 7(17):4099-4117.


9.

Ultrastructural analysis of the decellularized cornea after interlamellar keratoplasty and microkeratome-assisted anterior lamellar keratoplasty in a rabbit model.Hashimoto Y, Hattori S, Sasaki S, Honda T, Kimura T, Funamoto S, Kobayashi H, Kishida A.Sci Rep. 2016 Jun 13;6:27734. PMID: 27291975


10.

Thermal denaturation behavior of collagen fibrils in wet and dry environment.Suwa Y, Nam K, Ozeki K, Kimura T, Kishida A, Masuzawa T.J Biomed Mater Res B Appl Biomater. 2016 Apr;104(3):538-45 PMID: 25952296


11.

Synergistic rate boosting of collagen fibrillogenesis in heterogeneous mixtures of crowding agents.Dewavrin JY, Abdurrahiem M, Blocki A, Musib M, Piazza F, Raghunath M.J Phys Chem B. 2015 Mar 26;119(12):4350-8. PMID: 25730613.


12.

Cellular characterization of thrombocytes in Xenopus laevis with specific monoclonal antibodies.Tanizaki Y, Ishida-Iwata T, Obuchi-Shimoji M, Kato T.Exp Hematol. 2015 Feb;43(2):125-36. PMID: 25448492


13.

Tuning the architecture of three-dimensional collagen hydrogels by physiological macromolecular crowding.Dewavrin JY, Hamzavi N, Shim VP, Raghunath M.Acta Biomater. 2014 Oct;10(10):4351-9. PMID: 24932771


14.

Migration of breast cancer cells into reconstituted type I collagen gels assessed via a combination of frozen sectioning and azan staining.Fukuda K, Kamoshida Y, Kurokawa T, Yoshida M, Fujita-Yamaguchi Y, Nakata M.Biosci Trends. 2014 Aug;8(4):212-6. PMID: 25224627


15.

Overexpression of integrin αv facilitates proliferation and invasion of oral squamous cell carcinoma cells via MEK/ERK signaling pathway that is activated by interaction of integrin αvβ8 with type Ⅰ collagen.Hayashido Y, Kitano H, Sakaue T, Fujii T, Suematsu M, Sakurai S, Okamoto T.Int J Oncol. 2014 Nov;45(5):1875-82. PMID: 25190218


16.

Relationships between molecular mobility, fibrillogenesis of collagen molecules, and the inflammatory response: An experimental study in vitro and in vivo.Nam K, Seo JH, Kimura T, Yui N, Kishida A.J Colloid Interface Sci. 2014 Jul 1;433C:16-25. PMID: 25112908


17.

In vitro engineering of vascularized tissue surrogates.Sakaguchi K, Shimizu T, Horaguchi S, Sekine H, Yamato M, Umezu M, Okano T.Sci Rep. 2013 Feb 19;3:1316. PMID: 23419835


18.

High-throughput turbidimetric screening for heparin-neutralizing agents and low-molecular-weight heparin mimetics.Sekiya A, Oishi S, Fujii N, Koide T.Chem Pharm Bull (Tokyo). 2012;60(3):371-6. PMID:22382418


19.

Rapid formation of size-controlled three dimensional hetero-cell aggregates using micro-rotation flow for spheroid study.Ota H, Kodama T, Miki N.Biomicrofluidics. 2011 Sep;5(3):34105-3410515. PMID: 22662035


20.

Invasion of carcinoma cells into reconstituted type I collagen gels: visual real-time analysis by time-lapse microscopy.Sakai K, Kurokawa T, Furui Y, Kuronuma Y, Sekiguchi M, Ando J, Inagaki Y, Tang W, Nakata M, Fujita-Yamaguchi Y.Biosci Trends. 2011;5(1):10-6. PMID: 21422595


21.

TGF-β regulates isoform switching of FGF receptors and epithelial-mesenchymal transition.Shirakihara T, Horiguchi K, Miyazawa K, Ehata S, Shibata T, Morita I, Miyazono K, Saitoh M.EMBO J. 2011 Feb 16;30(4):783-95. PMID: 21224849


22.

Essential modification of the Sircol Collagen Assay for the accurate quantification of collagen content in complex protein solutions.Lareu RR, Zeugolis DI, Abu-Rub M, Pandit A, Raghunath M.Acta Biomater. 2010 Aug;6(8):3146-51. PMID: 20144751


23.

Immortalization of normal human gingival keratinocytes and cytological and cytogenetic characterization of the cells.Kubo C, Tsutsui TW, Tamura Y, Kumakura S, Tsutsui T.Odontology. 2009 Jan;97(1):18-31. PMID: 19184294


24.

Effect of Prolyl-hydroxyproline (Pro-Hyp), a food-derived collagen peptide in human blood, on growth of fibroblasts from mouse skin.Shigemura Y, Iwai K, Morimatsu F, Iwamoto T, Mori T, Oda C, Taira T, Park EY, Nakamura Y, Sato K.J Agric Food Chem. 2009 Jan 28;57(2):444-9. PMID: 19128041


25.

Self-assembly nano-structure of type I collagen adsorbed on Gemini surfactant LB monolayers.Xu S, Liu A, Chen Q, Lv M, Yonese M, Liu H.Colloids Surf B Biointerfaces. 2009 Apr 1;70(1):124-31. PMID: 19157808


26.

Auto-organized nano-structure of collagen on Gemini surfactant monolayer.Lv M, Chen Q, Yonese M, Xu S, Liu H.Colloids Surf B Biointerfaces. 2008 Feb 15;61(2):282-9. PMID: 17933500


27.

Controlling coupling reaction of EDC and NHS for preparation of collagen gels using ethanol/water co-solvents.Nam K, Kimura T, Kishida A.MacromolBiosci. 2008 Jan 9;8(1):32-7. PMID: 18023082


28.

Network structure of collagen layers absorbed on LB film.Chen Q, Xu S, Li R, Liang X, Liu H.J Colloid Interface Sci. 2007 Dec 1;316(1):1-9. PMID: 17727873


29.

Transplantation of engineered bone tissue using a rotary three-dimensional culture system.Hidaka M, Su GN, Chen JK, Mukaisho K, Hattori T, Yamamoto G.In Vitro Cell Dev Biol Anim. 2007 Feb;43(2):49-58. PMID: 17570019


30.

Differentiation of tracheal basal cells to ciliated cells and tissue reconstruction on the synthesized basement membrane substratum in vitro.Hosokawa T, Betsuyaku T, Nishimura M, Furuyama A, Katagiri K, Mochitate K.Connect Tissue Res. 2007;48(1):9-18. PMID: 17364662


31.

Intracellular events in retinal glial cells exposed to ICG and BBG.Kawahara S, Hata Y, Miura M, Kita T, Sengoku A, Nakao S, Mochizuki Y, Enaida H, Ueno A, Hafezi-Moghadam A, Ishibashi T.Invest Ophthalmol Vis Sci. 2007 Oct;48(10):4426-32. PMID: 17898261


32.

Collagen matrix deposition is dramatically enhanced in vitro when crowded with charged macromolecules: the biological relevance of the excluded volume effect.Lareu RR, Subramhanya KH, Peng Y, Benny P, Chen C, Wang Z, Rajagopalan R, Raghunath M.FEBS Lett. 2007 Jun 12;581(14):2709-14. PMID: 17531987


33.

Targeted mutation of serine 697 in the Ret tyrosine kinase causes migration defect of enteric neural crest cells.Asai N, Fukuda T, Wu Z, Enomoto A, Pachnis V, Takahashi M, Costantini F.Development. 2006 Nov;133(22):4507-16. PMID: 17050626


34.

The effect of natural extracellular matrix deposited on synthetic polymers on cultured primary hepatocytes.Hoshiba T, Cho CS, Murakawa A, Okahata Y, Akaike T.Biomaterials. 2006 Sep;27(26):4519-28. PMID: 16697038


35.

Initial bFGF Distribution Affects the Depth of Three-dimensional Microvessel Networks in Vitro.Akinori UEDA, Ryo SUDO, Mariko IKEDA, Susumu KUDO and Kazuo TANISHITA.Journal of Biomechanical Science and Engineering, Vol. 1, No. 1 (2006), pp.136-146.


36.

Hepatocyte growth factor inhibits the formation of the basement membrane of alveolar epithelial cells in vitro.Furuyama A1, Mochitate K.Am J Physiol Lung Cell Mol Physiol. 2004 May;286(5):L939-46. PMID: 14672920


37.

The combination of SOX5, SOX6, and SOX9 (the SOX trio) provides signals sufficient for induction of permanent cartilage.Ikeda T, Kamekura S, Mabuchi A, Kou I, Seki S, Takato T, Nakamura K, Kawaguchi H, Ikegawa S, Chung UI.Arthritis Rheum. 2004 Nov;50(11):3561-73. PMID: 15529345


38.

Inhibitory effects of 9-(4-thio-beta-D-ribo-pentofuranosyl)guanine on tumor growth and angiogenesis.Miura S, Yamada K, Kano F, Yoshimura Y.Biol Pharm Bull. 2004 Apr;27(4):520-3. PMID: 15056858


39.

Stimulation of in vitro angiogenesis by nitric oxide through the induction of transcription factor ETS-1.Shimizu S, Kageyama M, Yasuda M, Sasaki D, Naito S, Yamamoto T, Kiuchi Y.Int J Biochem Cell Biol. 2004 Jan;36(1):114-22. PMID: 14592537


40.

Immunohistochemical Identification of HSP47 and Type I Procollagen-expressing Cells in Mongolian Gerbil Salivary Glands: Correlation with Age-related Fibrotic Changes.Harumi Tomisaki, JojiSekine, TsugioInokuchi, Shin-ichi Izumi, Kunio Takano.Oral Medicine & Pathology. 9(4), 141-148, 2004.


41.

Effect on endothelial cell gene expression of shear stress, oxygen concentration, and low-density lipoprotein as studied by a novel flow cell culture system.Warabi E, Wada Y, Kajiwara H, Kobayashi M, Koshiba N, Hisada T, Shibata M, Ando J, Tsuchiya M, Kodama T, Noguchi N.Free Radic Biol Med. 2004 Sep 1;37(5):682-94. PMID: 15288125


42.

The involvement of integrin alphavbeta3 in polymorphonuclear leukocyte-induced angiogenesis in bovine aortic endothelial cells.Yasuda M, Ohbayashi M, Ohhinata K, Yamamoto T.Life Sci. 2004 Jun 11;75(4):421-34. PMID: 15147829


43.

Intralumenal tissue-engineered therapeutic stent using endothelial progenitor cell-inoculated hybrid tissue and in vitro performance.Shirota T, Yasui H, Matsuda T.Tissue Eng. 2003 Jun;9(3):473-85. PMID: 12857415


44.

Newly designed compliant hierarchic hybrid vascular graft wrapped with microprocessed elastomeric film–II: Morphogenesis and compliance change upon implantation.He H, Matsuda T.Cell Transplant. 2002;11(1):75-87. PMID: 12095223


45.

Effect of dexamethasone on invasion of human squamous cell carcinoma cells into collagen gel.Hayashido Y, Shirasuna K, Sugiura T, Nakashima M, Matsuya T.Cancer Lett. 1996 Nov 12;108(1):81-6. PMID: 8950213


46.

Serum-free medium conditions for steroidogenesis of bovine follicular thecal cells cultured on collagen gel matrix.Ikeda H.In Vitro Cell Dev Biol. 1990 Feb;26(2):193-200. PMID: 2312503

产品编号 产品名称 产品规格 产品等级
KOU-IPC-30 Atelocollagen, Bovine dermis, 3mg/mL 
去端肽胶原,牛皮来源,3 mg/mL
50ml/btl
KOU-IPC-50 Atelocollagen Bovine dermis 5mg/ml pH3.0 Steril 
去端肽胶原,牛皮来源,5 mg/mL
50ml/btl
KOU-IAC-30 Native collagen Bovine dermis 3mg/ml pH3.0 Steril 
天然胶原,牛皮来源,3 mg/mL
50ml/btl
KOU-IAC-50 Native collagen Bovine dermis 5mg/ml pH3.0 Steril 
天然胶原,牛皮来源,5 mg/mL
50ml/btl