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表面形态和机械应变幅度对间充质干细胞分化的联合作用,无需使用生化试剂。

Combined effects of surface morphology and mechanical straining magnitudes on the differentiation of mesenchymal stem cells without using biochemical reagents.

作者信息

Jang Ji-Yeon, Lee Shi Woo, Park So Hee, Shin Ji Won, Mun ChiWoong, Kim Su-Hyang, Kim Dong Hwa, Shin Jung-Woog

机构信息

R&D Center, Genewel Co., Ltd., Sangdaewon 1-dong, Jungwon-gu, Seongnam, Gyeonggi-do 462-724, Republic of Korea.

出版信息

J Biomed Biotechnol. 2011;2011:860652. doi: 10.1155/2011/860652. Epub 2011 Feb 21.

Abstract

Existing studies examining the control of mesenchymal stem cell (MSC) differentiation into desired cell types have used a variety of biochemical reagents such as growth factors despite possible side effects. Recently, the roles of biomimetic microphysical environments have drawn much attention in this field. We studied MSC differentiation and changes in gene expression in relation to osteoblast-like cell and smooth muscle-like cell type resulting from various microphysical environments, including differing magnitudes of tensile strain and substrate geometries for 8 days. In addition, we also investigated the residual effects of those selected microphysical environment factors on the differentiation by ceasing those factors for 3 days. The results of this study showed the effects of the strain magnitudes and surface geometries. However, the genes which are related to the same cell type showed different responses depending on the changes in strain magnitude and surface geometry. Also, different responses were observed three days after the straining was stopped. These data confirm that controlling microenvironments so that they mimic those in vivo contributes to the differentiation of MSCs into specific cell types. And duration of straining engagement was also found to play important roles along with surface geometry.

摘要

现有研究在探究间充质干细胞(MSC)向所需细胞类型分化的控制时,尽管可能存在副作用,但仍使用了多种生化试剂,如生长因子。最近,仿生微物理环境在该领域备受关注。我们研究了在8天内,各种微物理环境(包括不同大小的拉伸应变和底物几何形状)对MSC分化以及与成骨样细胞和平滑肌样细胞类型相关的基因表达变化的影响。此外,我们还通过停止这些因素3天来研究所选微物理环境因素对分化的残留影响。本研究结果显示了应变大小和表面几何形状的影响。然而,与相同细胞类型相关的基因根据应变大小和表面几何形状的变化表现出不同的反应。在停止拉伸3天后也观察到了不同的反应。这些数据证实,控制微环境使其模拟体内微环境有助于MSC分化为特定细胞类型。并且还发现拉伸持续时间与表面几何形状一样起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/464b/3043320/7269654ddbec/JBB2011-860652.001.jpg

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