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Ischemic survival and constitutively active autophagy in self-beating atypically-shaped cardiomyocytes (ACMs): Characterization of a new subpopulation of heart cells

机译:自搏性非典型心肌细胞(ACM)中的缺血性存活和组成性主动自噬:心脏细胞新亚群的特征

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摘要

Atypically-shaped cardiomyocytes (ACMs) are a new subpopulation of spontaneously beating heart cells with a peculiar morphology identified within a culture of cardiac myocyte-depleted fraction (CMDF) cells obtained from adult mouse heart. ACMs originate from small cells in CMDF and grow in size and start beating within ~3 days culture without appreciable proliferation or express stem cell marker proteins, but stay in the heart until elderly stages. However, the characteristics of ACMs are largely unclear. The present study examined whether pre-exposure of CMDF cells to severe ischemia abolished the ability of ACMs to develop into beating cells. Of ACMs that underwent ischemia, ~50 % grew in size, changed the morphology, and started beating during the subsequent culture under normoxia. ACMs displayed constitutively active autophagy during the culture. The results suggest the possibility that the development of beating ACMs could occur in injured heart, even if the surviving cell population is small.
机译:非典型形状的心肌细胞(ACM)是自发性跳动的心脏细胞的一个新亚群,具有从成年小鼠心脏获得的心肌细胞贫化分数(CMDF)细胞培养物中鉴定的特殊形态。 ACM起源于CMDF中的小细胞,其大小不断增长,并在约3天的培养过程中跳动,没有明显的增殖或表达干细胞标记蛋白,但一直停留到心脏直至老年。但是,ACM的特性尚不清楚。本研究检查了CMDF细胞预先暴露于严重缺血是否能消除ACM发育为跳动细胞的能力。在经历缺血的ACM中,约50%的大小增大,改变了形态并在随后的常氧条件下培养期间开始跳动。 ACM在培养过程中表现出组成型主动自噬。结果表明,即使存活的细胞数量很少,跳动的ACM仍可能在受伤的心脏中发生。

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