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Cardiac-mimetic cell-culture system for direct cardiac reprogramming

机译:用于直接心脏重编程的模拟心肌细胞培养系统

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摘要

>Rationale: Cardiovascular diseases often cause substantial heart damage and even heart failure due to the limited regenerative capacity of adult cardiomyocytes. The direct cardiac reprogramming of fibroblasts could be a promising therapeutic option for these patients. Although exogenous transcriptional factors can induce direct cardiac reprogramming, the reprogramming efficiency is too low to be used clinically. Herein, we introduce a cardiac-mimetic cell-culture system that resembles the microenvironment in the heart and provides interactions with cardiomyocytes and electrical cues to the cultured fibroblasts for direct cardiac reprogramming.>Methods: Nano-thin and nano-porous membranes and heart like electric stimulus were used in the cardiac-mimetic cell-culture system. The human neonatal dermal fibroblasts containing cardiac transcription factors were plated on the membrane and cultured with the murine cardiomyocyte in the presence of the electric stimulus. The reprogramming efficiency was evaluated by qRT-PCR and immunocytochemistry.>Results: Nano-thin and nano-porous membranes in the culture system facilitated interactions between fibroblasts and cardiomyocytes in coculture. The cellular interactions and electric stimulation supplied by the culture system dramatically enhanced the cardiac reprogramming efficiency of cardiac-specific transcriptional factor-transfected fibroblasts.>Conclusion: The cardiac-mimetic culture system may serve as an effective tool for producing a feasible number of reprogrammed cardiomyocytes from fibroblasts.
机译:>原理> :由于成年心肌细胞的再生能力有限,心血管疾病通常会导致严重的心脏损害,甚至导致心力衰竭。成纤维细胞的直接心脏重编程可能是这些患者有希望的治疗选择。尽管外源转录因子可以诱导直接心脏重编程,但是重编程效率太低,无法在临床上使用。本文中,我们介绍了一种模仿心脏的细胞培养系统,该系统类似于心脏中的微环境,并提供与心肌细胞和电信号的相互作用给培养的成纤维细胞以直接进行心脏重编程。>方法:在模拟心脏的细胞培养系统中使用了多孔膜和类似心脏的电刺激。将含有心脏转录因子的人类新生儿真皮成纤维细胞铺在膜上,并在电刺激下与鼠心肌细胞一起培养。通过qRT-PCR和免疫细胞化学评估重编程效率。>结果:培养系统中的纳米薄膜和纳米多孔膜促进了共培养中成纤维细胞和心肌细胞之间的相互作用。培养系统提供的细胞相互作用和电刺激极大地增强了心脏特异性转录因子转染的成纤维细胞的心脏重编程效率。>结论:模拟心脏培养系统可作为生产细胞的有效工具来自成纤维细胞的可行数量的重编程心肌细胞。

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