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首页> 外文期刊>Macromolecular Research >Enhancement of Cardiac Myoblast Responses onto Electrospun PLCL Fibrous Matrices Coated with Polydopamine for Gelatin Immobilization
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Enhancement of Cardiac Myoblast Responses onto Electrospun PLCL Fibrous Matrices Coated with Polydopamine for Gelatin Immobilization

机译:增强多巴胺涂层明胶固定的静电纺制PLCL纤维基质对心肌成肌反应的影响

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A variety of surface modification techniques have been proposed to improve the cell-biomaterial interactions. On the other hand, these processes may cleave long-chained polymers, and compromise their mechanical properties. In this study, dopamine was used as a bridge molecule to immobilize gelatin on the poly(L-lactide-co-ε-caprolactone) (PLCL) fibrous matrices, which may then be used as a cell delivery carrier. The PLCL fibrous matrices coated with polydopamine by dipping (D-PLCL) can subsequently immobilize gelatin (GD-PLCL). The D-PLCL matrices showed minimal changes in the mechanical properties with a tensile strain of 251.0±33.4% and 247.8±32.1% before and after the coating process, respectively. The cellular activities on the fibrous matrices increased in the order of PLCL
机译:已经提出了多种表面修饰技术来改善细胞-生物材料的相互作用。另一方面,这些过程可能会裂解长链聚合物,并损害其机械性能。在这项研究中,多巴胺被用作桥接分子,将明胶固定在聚(L-丙交酯-共-ε-己内酯)(PLCL)纤维基质上,然后可用作细胞递送载体。通过浸涂(D-PLCL)涂有聚多巴胺的PLCL纤维基质可以随后固定明胶(GD-PLCL)。在涂布之前和之后,D-PLCL基体的机械性能变化很小,拉伸应变分别为251.0±33.4%和247.8±32.1%。纤维基质上的细胞活性以PLCL

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