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胶原蛋白凝胶上 hMSC 的厚度感知指导干细胞命运。

Thickness sensing of hMSCs on collagen gel directs stem cell fate.

机构信息

Division of Materials Technology, Nanyang Technological University, School of Materials Science and Engineering, 50 Nanyang Avenue, Singapore 639798, Singapore.

出版信息

Biochem Biophys Res Commun. 2010 Oct 15;401(2):287-92. doi: 10.1016/j.bbrc.2010.09.052. Epub 2010 Sep 17.

Abstract

Mechanically compliant substrate provides crucial biomechanical cues for multipotent stem cells to regulate cellular fates such as differentiation, proliferation and maintenance of their phenotype. Effective modulus of which cells sense is not only determined by intrinsic mechanical properties of the substrate, but also the thickness of substrate. From our study, it was found that interference from underlying rigid support at hundreds of microns away could induce significant cellular response. Human mesenchymal stem cells (hMSCs) were cultured on compliant biological gel, collagen type I, of different thickness but identical ECM composition and local stiffness. The cells sensed the thin gel (130 μm) as having a higher effective modulus than the thick gel (1440 μm) and this was reflected in their changes in morphology, actin fibers structure, proliferation and tissue specific gene expression. Commitment into neuronal lineage was observed on the thin gel only. Conversely, the thick gel (1440 μm) was found to act like a substrate with lower effective modulus that inhibited actin fiber polymerization. Stem cells on the thick substrate did not express tissue specific genes and remained at their quiescent state. This study highlighted the need to consider not only the local modulus but also the thickness of biopolymer gel coating during modulation of cellular responses.

摘要

力学顺应性基底为多能干细胞提供了至关重要的生物力学线索,以调节细胞命运,如分化、增殖和维持其表型。细胞感知的有效模量不仅取决于基底的固有力学特性,还取决于基底的厚度。我们的研究发现,数百微米远的下层刚性支撑的干扰会引起显著的细胞反应。人骨髓间充质干细胞(hMSCs)在不同厚度但具有相同细胞外基质组成和局部刚度的顺应性生物凝胶(I 型胶原)上培养。细胞感知到薄凝胶(130μm)的有效模量比厚凝胶(1440μm)高,这反映在它们的形态变化、肌动蛋白纤维结构、增殖和组织特异性基因表达上。只有在薄凝胶上才能观察到向神经元谱系的分化。相反,厚凝胶(1440μm)被发现像具有较低有效模量的基底一样,抑制肌动蛋白纤维聚合。在厚基质上的干细胞不表达组织特异性基因,处于静止状态。这项研究强调了在调节细胞反应时,不仅需要考虑局部模量,还需要考虑生物聚合物凝胶涂层的厚度。

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