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Electrospun Scaffolds and Induced Pluripotent Stem Cell-Derived Cardiomyocytes for Cardiac Tissue Engineering Applications

机译:Electromun支架和诱导多能干细胞衍生心脏组织工程应用的心肌细胞

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摘要

Tissue engineering (TE) combines cells, scaffolds, and growth factors to assemble functional tissues for repair or replacement of tissues and organs. Cardiac TE is focused on developing cardiac cells, tissues, and structures—most notably the heart. This review presents the requirements, challenges, and research surrounding electrospun scaffolds and induced pluripotent stem cell (iPSC)-derived cardiomyocytes (CMs) towards applications to TE hearts. Electrospinning is an attractive fabrication method for cardiac TE scaffolds because it produces fibers that demonstrate the optimal potential for mimicking the complex structure of the cardiac extracellular matrix (ECM). iPSCs theoretically offer the capacity to generate limitless numbers of CMs for use in TE hearts, however these iPSC-CMs are electrophysiologically, morphologically, mechanically, and metabolically immature compared to adult CMs. This presents a functional limitation to their use in cardiac TE, and research aiming to address this limitation is presented in this review.
机译:组织工程(TE)将细胞,支架和生长因子组合以组装功能组织以修复或更换组织和器官。心脏TE专注于开发心脏细胞,组织和结构 - 最符合的是心脏。本综述介绍了静电纺支架的要求,挑战和研究,以及诱导多能干细胞(IPSC)的心肌细胞(CMS)对TE Hearts的应用。静电纺丝是一种用于心脏TE支架的有吸引力的制造方法,因为它产生了表现出模拟心脏细胞外基质(ECM)复杂结构的最佳电位的纤维。 IPSCS理论上提供了在TE心中产生无限数量的CMS的能力,然而,与成年CMS相比,这些IPSC-CMS电生理学,形态学,机械,机械和代谢地不成熟。这提出了对其在心脏TE中使用的功能限制,并在本次审查中介绍了旨在解决此限制的研究。

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