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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Time-course of the electrophysiological maturation and integration of transplanted cardiomyocytes
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Time-course of the electrophysiological maturation and integration of transplanted cardiomyocytes

机译:移植心肌细胞电生理成熟和整合的时程

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Electrophysiological maturation and integration of transplanted cardiomyocytes are essential to enhance safety and efficiency of cell replacement therapy. Yet, little is known about these important processes. The aim of our study was to perform a detailed analysis of electrophysiological maturation and integration of transplanted cardiomyocytes. Fetal cardiomyocytes expressing enhanced green fluorescent protein were transplanted into cryoinjured mouse hearts. At 6, 9 and 12. days after transplantation, viable slices of recipient hearts were prepared and action potentials of transplanted and host cardiomyocytes within the slices were recorded by microelectrodes. In transplanted cells embedded in healthy host myocardium, action potential duration at 50% repolarization (APD50) decreased from 32.2 ± 3.3. ms at day 6 to 27.9 ± 2.6. ms at day 9 and 19.6 ± 1.6. ms at day 12. The latter value matched the APD50 of host cells (20.5 ± 3.2. ms, P = 0.78). Integration improved in the course of time: 26% of cells at day 6 and 53% at day 12 revealed no conduction blocks up to a stimulation frequency of 10. Hz. APD50 was inversely correlated to the quality of electrical integration. In transplanted cells embedded into the cryoinjury, which showed no electrical integration, APD50 was 49.2 ± 4.3. ms at day 12. Fetal cardiomyocytes transplanted into healthy myocardium integrate electrically and mature after transplantation, their action potential properties after 12. days are comparable to those of host cardiomyocytes. Quality of electrical integration improves over time, but conduction blocks still occur at day 12 after transplantation. The pace of maturation correlates with the quality of electrical integration. Transplanted cells embedded in cryoinjured tissue still possess immature electrophysiological properties after 12. days.
机译:移植心肌细胞的电生理成熟和整合对于增强细胞替代疗法的安全性和效率至关重要。然而,对于这些重要过程知之甚少。我们研究的目的是对移植的心肌细胞的电生理成熟和整合进行详细的分析。表达增强的绿色荧光蛋白的胎儿心肌细胞被移植到冷冻损伤的小鼠心脏中。在移植后第6、9和12天,制备活体的受体心脏切片,并通过微电极记录移植后的和宿主心肌细胞的动作电位。在植入健康宿主心肌的移植细胞中,复极化50%(APD50)时的动作电位持续时间从32.2±3.3降低。第6天的毫秒数为27.9±2.6。第9天的毫秒数和19.6±1.6。第12天的毫秒数。后者的值与宿主细胞的APD50相匹配(20.5±3.2。ms,P = 0.78)。随着时间的流逝,整合能力得到了改善:在第6天时,有26%的细胞在第12天时有53%的细胞显示在10 Hz的刺激频率下没有传导阻滞。 APD50与电气集成质量成反比。在没有显示出电学整合的,嵌入冷冻损伤的移植细胞中,APD50为49.2±4.3。在第12天的毫秒数。移植到健康心肌中的胎儿心肌细胞在移植后电整合并成熟,在12天后其动作电位特性与宿主心肌细胞相当。电集成的质量会随着时间的推移而提高,但在移植后第12天仍会出现传导阻滞。成熟的速度与电气集成的质量相关。冻伤组织中嵌入的移植细胞在12天后仍具有不成熟的电生理特性。

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