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Mesenchymal stem cell 3D encapsulation technologies for biomimetic microenvironment in tissue regeneration

机译:用于组织再生仿生微环境的间充质干细胞3D封装技术

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摘要

Mesenchymal stem cell (MSC) encapsulation technique has long been emerged in tissue engineering as it plays an important role in implantation of stem cells to regenerate a damaged tissue. MSC encapsulation provides a mimic of a three-dimensional (3D) in vivo environment to maintain cell viability and to induce the stem cell differentiation which regulates MSC fate into multi-lineages. Moreover, the 3D matrix surrounding MSCs protects them from the human innate immune system and allows the diffusion of biomolecules such as oxygen, cytokines, and growth factors. Therefore, many technologies are being developed to create MSC encapsulation platforms with diverse materials, shapes, and sizes. The conditions of the platform are determined by the targeted tissue and translation method. This review introduces several details of MSC encapsulation technologies such as micromolding, electrostatic droplet extrusion, microfluidics, and bioprinting and their application for tissue regeneration. Lastly, some of the challenges and future direction of MSC encapsulation technologies as a cell therapy-based tissue regeneration method will be discussed.
机译:间充质干细胞(MSC)封装技术早已在组织工程中出现,因为它在植入干细胞以再生受损组织中起着重要作用。 MSC封装提供了三维(3D)体内环境的模拟物,以维持细胞活力并诱导干细胞分化,从而将MSC的命运调节为多系。此外,MSC周围的3D矩阵可保护它们免受人类先天免疫系统的侵害,并允许生物分子(例如氧气,细胞因子和生长因子)扩散。因此,正在开发许多技术来创建具有不同材料,形状和尺寸的MSC封装平台。平台的条件取决于目标组织和翻译方法。这篇综述介绍了MSC封装技术的一些细节,例如微成型,静电液滴挤出,微流控和生物印刷,以及它们在组织再生中的应用。最后,将讨论作为基于细胞疗法的组织再生方法的MSC封装技术的挑战和未来方向。

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