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The Role of Stiffness in Cell Reprogramming: A Potential Role for Biomaterials in Inducing Tissue Regeneration

机译:刚度在细胞重编程中的作用:生物材料在诱导组织再生中的潜在作用

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摘要

The mechanotransduction is the process by which cells sense mechanical stimuli such as elasticity, viscosity, and nanotopography of extracellular matrix and translate them into biochemical signals. The mechanotransduction regulates several aspects of the cell behavior, including migration, proliferation, and differentiation in a time-dependent manner. Several reports have indicated that cell behavior and fate are not transmitted by a single signal, but rather by an intricate network of many signals operating on different length and timescales that determine cell fate. Since cell biology and biomaterial technology are fundamentals in cell-based regenerative therapies, comprehending the interaction between cells and biomaterials may allow the design of new biomaterials for clinical therapeutic applications in tissue regeneration. In this work, we present the most relevant mechanism by which the biomechanical properties of extracellular matrix (ECM) influence cell reprogramming, with particular attention on the new technologies and materials engineering, in which are taken into account not only the biochemical and biophysical signals patterns but also the factor time.
机译:机械转导是细胞感知机械刺激(例如弹性,粘度和细胞外基质的纳米形貌)并将其转化为生化信号的过程。机械转导以时间依赖性方式调节细胞行为的多个方面,包括迁移,增殖和分化。几份报告表明,细胞行为和命运不是通过单个信号传递的,而是通过在确定细胞命运的不同长度和时间尺度上运行的许多信号的复杂网络传输的。由于细胞生物学和生物材料技术是基于细胞的再生疗法的基础,因此理解细胞与生物材料之间的相互作用可能允许设计用于组织再生的临床治疗应用的新生物材料。在这项工作中,我们提出了细胞外基质(ECM)的生物力学特性影响细胞重编程的最相关机制,特别关注了新技术和材料工程,其中不仅考虑了生物化学和生物物理信号模式而且还有时间因素。

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