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Thermogelling 3D Systems towards Stem Cell-Based Tissue Regeneration Therapies

机译:面向干细胞的组织再生疗法的热胶3D系统

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摘要

Stem cell culturing and differentiation is a very important research direction for tissue engineering. Thermogels are well suited for encapsulating cells because of their non-biotoxic nature and mild sol-gel transition as temperature increases. In particular, thermogels provide a 3D growth environment for stem cell growth, which is more similar to the extracellular matrix than flat substrates, so thermogels as a medium can overcome many of the cell abnormalities caused by 2D cell growth. In this review, we summarize the applications of thermogels in cell and stem cell culture in recent years. We also elaborate on the methods to induce stem cell differentiation by using thermogel-based 3D scaffolds. In particular, thermogels, encapsulating specific differentiation-inducing factor and having specific structures and moduli, can induce the differentiation into the desired tissue cells. Three dimensional thermogel scaffolds that control the growth and differentiation of cells will undoubtedly have a bright future in regenerative medicine.
机译:干细胞的培养和分化是组织工程研究的重要方向。热凝胶非常适合封装细胞,因为它们具有无生物毒性的性质,并且随着温度的升高,溶胶-凝胶会发生温和的转变。特别是,热凝胶为干细胞生长提供了3D生长环境,与平坦的基质相比,它与细胞外基质更相似,因此热凝胶作为一种介质可以克服2D细胞生长引起的许多细胞异常。在这篇综述中,我们总结了近年来热凝胶在细胞和干细胞培养中的应用。我们还阐述了通过使用基于热凝胶的3D支架诱导干细胞分化的方法。特别地,封装特定的分化诱导因子并具有特定的结构和模量的热凝胶可以诱导分化成所需的组织细胞。控制细胞生长和分化的三维热凝胶支架无疑将在再生医学中拥有光明的前景。

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