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Micro- and nano-patterned conductive graphene-PEG hybrid scaffolds for cardiac tissue engineering

机译:用于心脏组织工程的微米和纳米图案导电石墨烯-PEG混合支架

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摘要

A lack of electrical conductivity and structural organization in currently available biomaterial scaffolds limits their utility for generating physiologically representative models of functional cardiac tissue. Here we report on the development of scalable, graphene-functionalized topographies with anisotropic electrical conductivity for engineering the structural and functional phenotypes of macroscopic cardiac tissue constructs. Guided by anisotropic electroconductive and topographic cues, the tissue constructs displayed structural property enhancement in myofibrils and sarcomeres, and exhibited significant increases in the expression of cell-cell coupling and calcium handling proteins, as well as in action potential duration and peak calcium release.
机译:当前可用的生物材料支架中缺乏电导率和结构组织限制了它们用于产生功能性心脏组织的生理学代表性模型的效用。在这里,我们报告了具有各向异性电导率的可扩展石墨烯功能化形貌的发展,用于设计宏观心脏组织构造的结构和功能表型。在各向异性的导电和地形线索的指导下,组织构建体在肌原纤维和肉瘤中显示出结构特性的增强,并且在细胞间偶联和钙处理蛋白的表达以及动作电位持续时间和钙释放峰值方面均显着增加。

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