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毫尺度基底曲率促进成肌细胞的自我组织和分化。

Milliscale Substrate Curvature Promotes Myoblast Self-Organization and Differentiation.

机构信息

Tissue Engineering Lab Biosciences Institute, Newcastle University, International Centre for Life, Newcastle upon Tyne, NE1 3BZ, UK.

Biosciences Institute, Newcastle University, International Centre for Life, Newcastle upon Tyne, NE1 3BZ, UK.

出版信息

Adv Biol (Weinh). 2021 Apr;5(4):e2000280. doi: 10.1002/adbi.202000280. Epub 2021 Feb 15.

Abstract

Biological tissues comprise complex structural environments known to influence cell behavior via multiple interdependent sensing and transduction mechanisms. Yet, and despite the predominantly nonplanar geometry of these environments, the impact of tissue-size (milliscale) curvature on cell behavior is largely overlooked or underestimated. This study explores how concave, hemicylinder-shaped surfaces 3-50 mm in diameter affect the migration, proliferation, orientation, and differentiation of C2C12 myoblasts. Notably, these milliscale cues significantly affect cell responses compared with planar substrates, with myoblasts grown on surfaces 7.5-15 mm in diameter showing prevalent migration and alignment parallel to the curvature axis. Moreover, surfaces within this curvature range promote myoblast differentiation and the formation of denser, more compact tissues comprising highly oriented multinucleated myotubes. Based on the similarity of effects, it is further proposed that myoblast susceptibility to substrate curvature depends on mechanotransduction signaling. This model thus supports the notion that cellular responses to substrate curvature and compliance share the same molecular pathways and that control of cell behavior can be achieved via modulation of either individual parameter or in combination. This correlation is relevant for elucidating how muscle tissue forms and heals, as well as for designing better biomaterials and more appropriate cell-surface interfaces.

摘要

生物组织包含复杂的结构环境,这些环境通过多种相互依存的感应和转导机制影响细胞行为。然而,尽管这些环境主要是非平面的几何形状,但组织大小(毫尺度)曲率对细胞行为的影响在很大程度上被忽视或低估。本研究探讨了直径为 3-50 毫米的凹形、半圆柱形状表面如何影响 C2C12 成肌细胞的迁移、增殖、取向和分化。值得注意的是,与平面基底相比,这些毫尺度线索显著影响细胞反应,直径为 7.5-15 毫米的表面上生长的成肌细胞表现出与曲率轴平行的普遍迁移和对齐。此外,在这个曲率范围内的表面促进成肌细胞分化,并形成由高度定向的多核肌管组成的更密集、更紧凑的组织。基于相似的效果,进一步提出成肌细胞对基底曲率的敏感性取决于机械转导信号。因此,该模型支持这样一种观点,即细胞对基底曲率和顺应性的反应共享相同的分子途径,并且可以通过调节单个参数或组合来控制细胞行为。这种相关性对于阐明肌肉组织的形成和愈合方式以及设计更好的生物材料和更合适的细胞表面界面具有重要意义。

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