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Urothelial cell senescence is not linked with telomere shortening

机译:尿检细胞衰老与端粒缩短无关

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Abstract The success of regenerative medicine relies in part on the quality of the cells implanted. Cell cultures from cells isolated from bladder washes have been successfully established, but molecular changes and cell characteristics have not been explored in detail. In this work, we analysed the role of telomere shortening in relation to the regenerative potential and senescence of cells isolated from bladder washes and expanded in culture. We also analysed whether bladder washes would be a potential source for attaining stem cells or promoting stem cell proliferation by using two different substrates to support their growth: a feeder layer of growth‐arrested murine fibroblasts J2 3T3 cells and a xeno‐free human recombinant laminin‐coated surface. We found no association between telomere shortening and senescence in urothelial cells in vitro. Urothelial cells had a stable telomere length and expressed mesenchymal stem cells markers but failed to differentiate into bone or adipocytes. Feeder layer showed an advantage to laminin‐coated surfaces in respect to proliferative capacity with the expense of risking that feeder layer cells could persist in later passages. This emphasizes the importance of using carefully controlled culture conditions and molecular quality controls before autotransplantation in future clinical settings. In conclusion, urothelial cells isolated by bladder washes show regenerative potential that need further understanding. Senescence in vitro might be due to cellular stress, and if so, further improvements in culture conditions may lead to longer cell life and higher proliferative capacity.
机译:摘要再生医学的成功部分依赖于植入细胞的质量。已经成功地建立了从膀胱洗涤中分离的细胞中的细胞培养物,但未详细探讨了分子变化和细胞特征。在这项工作中,我们分析了端粒缩短与从膀胱洗涤和培养中膨胀的细胞的再生潜力和衰老的作用。我们还分析了膀胱洗涤剂是否是用于达到干细胞的潜在来源,或者通过使用两种不同的基材来支持它们的生长:生长捕获的小鼠成纤维细胞J2 3T3细胞和异种人重组层蛋白的饲养层涂层表面。我们发现在体外尿路上皮细胞中的端粒缩短和衰老之间没有关联。尿检细胞具有稳定的端粒长度,表达间充质干细胞标记物,但未能分化为骨或脂肪细胞。饲养层对层粘连蛋白涂覆的表面具有关于增殖能力的优点,其牺牲了饲养层细胞可能在以后的通道中持续存在。这强调了在未来临床环境中使用仔细控制的培养条件和分子质量控制的重要性。总之,膀胱分离的尿路上皮细胞洗涤显示需要进一步了解的再生潜力。体外衰老可能是由于细胞应激,如果是,培养条件的进一步改善可能导致细胞寿命更长,增殖能力更高。

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