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Materials-Directed Differentiation of Mesenchymal Stem Cells for Tissue Engineering and Regeneration

机译:用于组织工程和再生的间充质干细胞的材料定向分化

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摘要

Cell-based therapies are a promising alternative to grafts and organ transplantation for treating tissue loss or damage due to trauma, malfunction, or disease. Over the past two decades, mesenchymal stem cells (MSCs) have attracted much attention as a potential cell population for use in regenerative medicine. While the proliferative capacity and multilineage potential of MSCs provide an opportunity to generate clinically relevant numbers of transplantable cells, their use in tissue regenerative applications has met with relatively limited success to date apart from secreting paracrine-acting factors to modulate the defect microenvironment. Presently, there is significant effort to engineer the biophysical properties of biomaterials to direct MSC differentiation and further expand on the potential of MSCs in tissue engineering, regeneration, and repair. Biomaterials can dictate MSC differentiation by modulating features of the substrate including composition, mechanical properties, porosity, and topography. The purpose of this review is to highlight recent approaches for guiding MSC fate using biomaterials and provide a description of the underlying characteristics that promote differentiation toward a desired phenotype.
机译:基于细胞的疗法是用于治疗由于创伤,机能失调或疾病引起的组织丢失或损害的移植物和器官移植的有前途的替代方法。在过去的二十年中,间充质干细胞(MSCs)作为一种潜在的再生医学细胞而受到了广泛的关注。尽管MSC的增殖能力和多系潜力提供了产生临床上可移植细胞数量的机会,但迄今为止,它们在组织再生应用中的应用除分泌分泌旁分泌作用因子以调节缺损微环境外,取得的成功相对有限。当前,正在进行大量努力以工程化生物材料的生物物理特性以指导MSC分化,并进一步扩展MSC在组织工程,再生和修复中的潜力。生物材料可以通过调节基质的特征(包括组成,机械性能,孔隙率和形貌)来决定MSC的分化。这篇综述的目的是强调使用生物材料指导MSC命运的最新方法,并提供对促进向所需表型分化的潜在特征的描述。

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