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Biomimetic Polymer-Based Engineered Scaffolds for Improved Stem Cell Function

机译:基于仿生聚合物的工程支架可改善干细胞功能。

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摘要

Scaffolds are considered promising materials for tissue engineering applications due to their unique physiochemical properties. The high porosity and adequate mechanical properties of the scaffolds facilitate greater cell adhesion, proliferation, and differentiation. Stem cells are frequently applied in tissue engineering applications due to their excellent potential. It has been noted that cell functions are profoundly affected by the nature of the extracellular matrix (ECM). Naturally derived ECM contains the bioactive motif that also influences the immune response of the organism. The properties of polymer scaffolds mean they can resemble the native ECM and can regulate cellular responses. Various techniques such as electrospinning and 3D printing, among others, are frequently used to fabricate polymer scaffolds, and their cellular responses are different with each technique. Furthermore, enhanced cell viability, as well as the differentiation ability of stem cells on the surface of scaffolds, opens a fascinating approach to the formation of ECM-like environments for tissue engineering applications.
机译:支架由于其独特的物理化学特性,被认为是用于组织工程应用的有前途的材料。支架的高孔隙率和足够的机械性能有助于更大的细胞粘附,增殖和分化。干细胞由于其极好的潜力而经常用于组织工程应用。已经注意到,细胞功能受到细胞外基质(ECM)的性质的深刻影响。天然来源的ECM包含具有生物活性的基序,也可影响生物体的免疫反应。聚合物支架的特性意味着它们可以类似于天然ECM,并可以调节细胞反应。除其他外,诸如静电纺丝和3D打印等各种技术经常用于制造聚合物支架,并且它们的细胞反应因每种技术而不同。此外,增强的细胞活力以及支架表面上干细胞的分化能力,为形成组织工程应用的ECM样环境开辟了一种引人入胜的方法。

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