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首页> 外文期刊>Biomaterials Science >Cell density overrides the effect of substrate stiffness on human mesenchymal stem cells' morphology and proliferation
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Cell density overrides the effect of substrate stiffness on human mesenchymal stem cells' morphology and proliferation

机译:细胞密度覆盖基材刚度对人间充质干细胞形态和增殖的影响

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摘要

The effect of substrate stiffness on the cellular morphology, proliferation, and differentiation of human mesenchymal stem cells (hMSCs) has been extensively researched and well established. However, the majority of these studies are done with a low seeding density where cell to cell interactions do not play a significant role. While these conditions permit an analysis of cell-substratum interactions at the single cell level, such a model system fails to capture a critical aspect of the cellular micro-environment in vivo, i.e. the cell-cell interaction via matrix deformation (i.e., strain). To address this question, we seeded hMSCs on soft poly-acrylamide (PAA) gels, at a seeding density that permits cells to be mechanically interacting via the underlying substrate. We found that as the intercellular distance decreases with the increasing seeding density, cellular sensitivity towards the substrate rigidity becomes significantly diminished. With the increasing seeding density, the cell spread area increased on a soft substrate (500 Pa) but reduced on an even slightly stiffer substrate (2 kPa) as well as on glass making them indistinguishable at a high seeding density. Not only in terms of cell spread area but also at a high seeding density, cells formed mature focal adhesions and prominent stress fibres on a soft substrate similar to that of the cells being cultured on a stiff substrate. The decreased intercellular distance also influenced the proliferation rate of the cells: higher seeding density on the soft substrate showed cell cycle progression similar to that of the cells on glass substrates. In summary, this paper demonstrates how the effect of substrate rigidity on the cell morphology and fate is a function of inter-cellular distance when seeded on a soft substrate. Our AFM data suggest that such changes happen due to local strain stiffening of the soft PAA gel, an effect that has been rarely reported in the literature so far.
机译:广泛地研究了衬底刚度对人间充质干细胞(HMSCs)的细胞形态,增殖和分化的影响。然而,这些研究的大多数是用低播种密度进行的,其中细胞与细胞相互作用不起显着作用。虽然这些条件允许分析单个细胞水平的细胞 - 底层相互作用,但这种模型系统不能捕获体内细胞微环境的关键方面,即通过矩阵变形(即应变)的细胞单元相互作用。为了解决这个问题,我们在软聚 - 丙烯酰胺(PAA)凝胶上播种HMSCs,其播种密度允许细胞通过下面基板机械地相互作用。我们发现随着播种密度的增加随着播种密度的增加而降低,朝向基板刚性的细胞敏感性显着减少。随着播种密度的增加,电池扩散区域在软基板(500Pa)上增加,但在均匀略微更致密的基底(2kPa)以及玻璃上,使其在高播种密度下难以区分。不仅在细胞扩散区域而且在高播种密度方面,细胞在软衬底上形成了成熟的焦点和突出的应力纤维,类似于在硬质基板上培养的细胞的突出的应力纤维。细胞间距离的降低也影响细胞的增殖速率:软质衬底上的较高播种密度显示细胞周期的进展类似于玻璃基板上的细胞的进展。总之,本文演示了衬底刚度对细胞形态和命运的影响是如何在软基板上接种时沟槽间距离的函数。我们的AFM数据表明,这种变化发生了由于软PAA凝胶的局部应变加固,到目前为止在文献中很少报道的效果。

著录项

  • 来源
    《Biomaterials Science》 |2018年第5期|共11页
  • 作者单位

    Inst Stem Cell Biol &

    Regenerat Med Bangalore 560065 Karnataka India;

    Indian Inst Technol Dept Chem Engn Bombay 400076 Maharashtra India;

    Inst Stem Cell Biol &

    Regenerat Med Bangalore 560065 Karnataka India;

    Inst Stem Cell Biol &

    Regenerat Med Bangalore 560065 Karnataka India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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