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首页> 外文期刊>Journal of biomedical materials research, Part A >Differential effects of substrate modulus on human vascular endothelial, smooth muscle, and fibroblastic cells.
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Differential effects of substrate modulus on human vascular endothelial, smooth muscle, and fibroblastic cells.

机译:底物模量对人血管内皮细胞,平滑肌和成纤维细胞的不同作用。

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Regenerative medicine approaches offer attractive alternatives to standard vascular reconstruction; however, the biomaterials to be used must have optimal biochemical and mechanical properties. To evaluate the effects of biomaterial properties on vascular cells, heparinized poly(ethylene glycol) (PEG)-based hydrogels of three different moduli, 13.7, 5.2, and 0.3 kPa, containing fibronectin and growth factor were utilized to support the growth of three human vascular cell types. The cell types exhibited differences in attachment, proliferation, and gene expression profiles associated with the hydrogel modulus. Human vascular smooth muscle cells demonstrated preferential attachment on the highest-modulus hydrogel, adventitial fibroblasts demonstrated preferential growth on the highest-modulus hydrogel, and human umbilical vein endothelial cells demonstrated preferential growth on the lowest-modulus hydrogel investigated. Our studies suggest that the growth of multiple vascular cell types can be supported by PEG hydrogels and that different populations can be controlled by altering the mechanical properties of biomaterials.
机译:再生医学方法为标准血管重建提供了有吸引力的替代方法。但是,要使用的生物材料必须具有最佳的生化和机械性能。为了评估生物材料特性对血管细胞的影响,利用肝素化的聚乙二醇(PEG)基水凝胶,其三种不同的模量(分别为13.7、5.2和0.3 kPa)包含纤连蛋白和生长因子,以支持三个人的生长血管细胞类型。细胞类型表现出与水凝胶模量相关的附着,增殖和基因表达谱的差异。人血管平滑肌细胞表现出优先附着在最高模量水凝胶上,外膜成纤维细胞表现出优先生长在最高模量水凝胶上,人脐静脉内皮细胞表现出优先生长在最低模量水凝胶上。我们的研究表明,PEG水凝胶可以支持多种血管细胞类型的生长,并且可以通过改变生物材料的机械性能来控制不同的种群。

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