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首页> 外文期刊>Journal of cellular biochemistry. >Increased SCF/c-kit by hypoxia promotes autophagy of human placental chorionic plate-derived mesenchymal stem cells via regulating the phosphorylation of mTOR
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Increased SCF/c-kit by hypoxia promotes autophagy of human placental chorionic plate-derived mesenchymal stem cells via regulating the phosphorylation of mTOR

机译:通过缺氧增加SCF / c-kit通过调节mTOR的磷酸化促进人胎盘绒毛膜板间充质干细胞的自噬

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摘要

Hypoxia triggers physiological and pathological cellular processes, including proliferation, differentiation, and death, in several cell types. Mesenchymal stem cells (MSCs) derived from various tissues have self-renewal activity and can differentiate towards multiple lineages. Recently, it has been reported that hypoxic conditions tip the balance between survival and death by hypoxia-induced autophagy, although the underlying mechanism is not clear. The objectives of this study are to compare the effect of hypoxia on the self-renewal of bone marrow-derived mesenchymal stem cells (BM-MSCs) and placental chorionic plate-derived mesenchymal stem cells (CP-MSCs) and to investigate the regulatory mechanisms of self-renewal in each MSC type during hypoxia. The expression of self-renewal markers (e.g., Oct4, Nanog, Sox2) was assessed in both cell lines. PI3K and stem cell factor (SCF) expression gradually increased in CP-MSCs but were markedly downregulated in BM-MSCs by hypoxia. The phosphorylation of ERK and mTOR was augmented by hypoxia in CP-MSCs compared to control. Also, the expression of LC3 II, a component of the autophagosome and the hoof-shaped autophagosome was detected more rapidly in CP-MSCs than in BM-MSCs under hypoxia. Hypoxia induced the expression of SCF in CP-MSCs and increased SCF/c-kit pathway promotes the self-renewal activities of CP-MSCs via an autocrine/paracrine mechanism that balances cell survival and cell death events by autophagy. These activities occur to a greater extent in CP-MSCs than in BM-MSCs through regulating the phosphorylation of mTOR. These findings will provide useful guidelines for better understanding the function of SCF/c-kit in the self-renewal and autophagy-regulated mechanisms that promote of MSC survival.
机译:缺氧会触发几种细胞类型的生理和病理细胞过程,包括增殖,分化和死亡。源自各种组织的间充质干细胞(MSC)具有自我更新的功能,可以分化为多种谱系。最近,据报道,低氧条件提示了由低氧诱导的自噬引起的生存与死亡之间的平衡,尽管其潜在机制尚不清楚。这项研究的目的是比较缺氧对骨髓源间充质干细胞(BM-MSCs)和胎盘绒毛膜间质干细胞(CP-MSCs)自我更新的影响缺氧期间每种MSC类型的自我更新能力。在两种细胞系中评估自我更新标记物(例如,Oct4,Nanog,Sox2)的表达。在CP-MSC中,PI3K和干细胞因子(SCF)的表达逐渐增加,但在BM-MSC中,缺氧显着下调了PI3K和干细胞因子的表达。与对照相比,CP-MSC中的缺氧增强了ERK和mTOR的磷酸化。同样,在缺氧条件下,CP-MSCs中的自噬体和蹄形自噬体LC3 II的表达要比BM-MSC更快。缺氧诱导CP-MSC中SCF的表达,增加的SCF / c-kit途径通过自分泌/旁分泌机制通过自噬平衡细胞存活和细胞死亡事件,从而促进CP-MSC的自我更新活性。通过调节mTOR的磷酸化,这些活性在CP-MSC中比在BM-MSC中发生的程度更大。这些发现将为更好地了解SCF / c-kit在促进MSC存活的自我更新和自噬调节机制中的功能提供有用的指导。

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