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Physiological Plasticity of Neural-Crest-Derived Stem Cells in the Adult Mammalian Carotid Body

机译:成年哺乳动物颈动脉体中神经-衍生干细胞的生理可塑性

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摘要

Adult stem cell plasticity, or the ability of somatic stem cells to cross boundaries and differentiate into unrelated cell types, has been a matter of debate in the last decade. Neural-crest-derived stem cells (NCSCs) display a remarkable plasticity during development. Whether adult populations of NCSCs retain this plasticity is largely unknown. Herein, we describe that neural-crest-derived adult carotid body stem cells (CBSCs) are able to undergo endothelial differentiation in addition to their reported role in neurogenesis, contributing to both neurogenic and angiogenic processes taking place in the organ during acclimatization to hypoxia. Moreover, CBSC conversion into vascular cell types is hypoxia inducible factor (HIF) dependent and sensitive to hypoxia-released vascular cytokines such as erythropoietin. Our data highlight a remarkable physiological plasticity in an adult population of tissue-specific stem cells and could have impact on the use of these cells for cell therapy.
机译:在过去的十年中,成年干细胞的可塑性或体干细胞跨越边界并分化为无关细胞类型的能力一直是一个争论的问题。神经rest来源的干细胞(NCSC)在发育过程中显示出显着的可塑性。在很大程度上,NCSC的成年人口是否保持这种可塑性。在这里,我们描述了神经-衍生的成人颈动脉体干细胞(CBSCs)除了在神经发生中的作用外,还能够经历内皮分化,有助于适应缺氧的过程中器官中发生的神经发生和血管生成过程。此外,CBSC转换为血管细胞类型是缺氧诱导因子(HIF)依赖性的,并且对缺氧释放的血管细胞因子(例如促红细胞生成素)敏感。我们的数据突出显示了成年的组织特异性干细胞群体具有显着的生理可塑性,并且可能对这些细胞用于细胞治疗产生影响。

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