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Human Keratinocytes have two interconvertible modes of proliferation

机译:人角质形成细胞具有两种相互转换的增殖模式

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摘要

Single stem cells, including those in human epidermis, have a remarkable ability to reconstitute tissues in vitro, but the cellular mechanisms that enable this are ill-defined. Here we used live imaging to track the outcome of thousands of divisions in clonal cultures of primary human epidermal keratinocytes. Two modes of proliferation were seen. In 'balanced' mode, similar proportions of proliferating and differentiating cells were generated, achieving the 'population asymmetry' that sustains epidermal homeostasis in vivo. In 'expanding' mode, an excess of cycling cells was produced, generating large expanding colonies. Cells in expanding mode switched their behaviour to balanced mode once local confluence was attained. However, when a confluent area was wounded in a scratch assay, cells near the scratch switched back to expanding mode until the defect was closed. We conclude that the ability of a single epidermal stem cell to reconstitute an epithelium is explained by two interconvertible modes of proliferation regulated by confluence.
机译:单干细胞,包括人表皮中的干细胞,具有在体外重组组织的显着能力,但是使这种干细胞形成的细胞机制尚不清楚。在这里,我们使用实时成像来追踪人类原始表皮角质形成细胞克隆培养中数千个分裂的结果。看到了两种增殖模式。在“平衡”模式下,产生了相似比例的增殖和分化细胞,从而实现了在体内维持表皮稳态的“种群不对称”。在“扩展”模式下,产生了过量的循环细胞,从而产生了大的扩展菌落。一旦达到局部汇合,处于扩展模式的单元格便将其行为切换为平衡模式。但是,当在划痕试验中汇合区域受伤时,划痕附近的细胞会切换回扩展模式,直到缺陷闭合为止。我们得出的结论是,单个表皮干细胞重构上皮的能力是由汇合调节的两种相互可转换的增殖模式解释的。

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