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Stem Cells toward the Future: The Space Challenge

机译:干细胞走向未来:太空挑战

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摘要

Astronauts experience weightlessness-induced bone loss due to an unbalanced process of bone remodeling that involves bone mesenchymal stem cells (bMSCs), as well as osteoblasts, osteocytes, and osteoclasts. The effects of microgravity on osteo-cells have been extensively studied, but it is only recently that consideration has been given to the role of bone MSCs. These live in adult bone marrow niches, are characterized by their self-renewal and multipotent differentiation capacities, and the published data indicate that they may lead to interesting returns in the biomedical/bioengineering fields. This review describes the published findings concerning bMSCs exposed to simulated/real microgravity, mainly concentrating on how mechanosignaling, mechanotransduction and oxygen influence their proliferation, senescence and differentiation. A comprehensive understanding of bMSC behavior in microgravity and their role in preventing bone loss will be essential for entering the future age of long-lasting, manned space exploration.
机译:由于涉及骨骼间充质干细胞(bMSCs)以及成骨细胞,成骨细胞和破骨细胞的不平衡的骨骼重塑过程,宇航员经历了失重引起的骨丢失。微重力对骨细胞的作用已被广泛研究,但是直到最近才考虑到骨MSC的作用。这些生活在成年骨髓壁ni中,以其自我更新和多能分化能力为特征,已发表的数据表明它们可能在生物医学/生物工程领域带来有趣的回报。这篇综述描述了关于暴露于模拟/真实微重力的bMSCs的发现,主要集中在机械信号传递,机械转导和氧气如何影响其增殖,衰老和分化。全面了解bMSC在微重力中的行为及其在预防骨质流失中的作用,对于进入未来长期的载人航天探索至关重要。

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