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Human Pluripotent Stem Cell Mechanobiology: Manipulating the Biophysical Microenvironment for Regenerative Medicine and Tissue Engineering Applications

机译:人类多能干细胞力学生物学:操纵生物物理微环境的再生医学和组织工程应用

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摘要

A stem cell in its microenvironment is subjected to a myriad of soluble chemical cues and mechanical forces that act in concert to orchestrate cell fate. Intuitively, many of these soluble and biophysical factors have been the focus of intense study to successfully influence and direct cell differentiation in vitro. Human pluripotent stem cells (hPSCs) have been of considerable interest in these studies due to their great promise for regenerative medicine. Culturing and directing differentiation of hPSCs, however, is currently extremely labor-intensive and lacks the efficiency required to generate large populations of clinical-grade cells. Improved efficiency may come from efforts to understand how the cell biophysical signals can complement biochemical signals to regulate cell pluripotency and direct differentiation. In this concise review, we explore hPSC mechanobiology and how the hPSC biophysical microenvironment can be manipulated to maintain and differentiate hPSCs into functional cell types for regenerative medicine and tissue engineering applications.
机译:干细胞在其微环境中会受到各​​种各样的可溶性化学信号和机械力的共同作用,以协调细胞的命运。直觉上,这些可溶性和生物物理因素中的许多因素已成为深入研究的焦点,以成功地影响和指导体外细胞分化。人类多能干细胞(hPSC)由于对再生医学的巨大希望而在这些研究中引起了极大的兴趣。然而,hPSC的培养和指导分化目前是非常费力的,并且缺乏产生大量临床级细胞所需的效率。效率的提高可能来自于努力了解细胞生物物理信号如何补充生化信号以调节细胞多能性和直接分化。在这篇简明的综述中,我们探讨了hPSC的力学生物学以及hPSC的生物物理微环境如何被操纵以维持hPSC并将其分化为功能细胞类型,以用于再生医学和组织工程应用。

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