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Protective effect and localization by optical imaging of human renal CD133+ progenitor cells in an acute kidney injury model

机译:光学成像对人肾CD133 +祖细胞在急性肾损伤模型中的保护作用和定位

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摘要

Recent approaches of regenerative medicine can offer a therapeutic option for patients undergoing acute kidney injury. In particular, mesenchymal stem cells were shown to ameliorate renal function and recovery after acute damage. We here evaluated the protective effect and localization of CD133+ renal progenitors from the human inner medulla in a model of glycerol‐induced acute tubular damage and we compared the results with those obtained with bone marrow‐derived mesenchymal stem cells. We found that CD133+ progenitor cells promoted the recovery of renal function, preventing tubular cell necrosis and stimulating resident cell proliferation and survival, similar to mesenchymal stem cells. In addition, by optical imaging analysis, CD133+ progenitor cells accumulated within the renal tissue, and a reduced entrapment in lung, spleen, and liver was observed. Mesenchymal stem cells were detectable at similar levels in the renal tissue, but a higher signal was present in extrarenal organs. Both cell types produced several cytokines/growth factors, suggesting that a combination of different mediators is involved in their biological action. These results indicate that human CD133+ progenitor cells are renotropic and able to improve renal regeneration in acute kidney injury.
机译:再生医学的最新方法可以为遭受急性肾损伤的患者提供治疗选择。特别是,间充质干细胞在急性损伤后可改善肾脏功能和恢复功能。我们在此评估了甘油诱导的急性肾小管损伤模型中人内延髓的CD133 + 肾祖细胞的保护作用和定位,并将结果与​​骨髓间充质干获得的结果进行了比较细胞。我们发现,CD133 + 祖细胞类似于间充质干细胞,可促进肾功能的恢复,防止肾小管细胞坏死并刺激常驻细胞增殖和存活。此外,通过光学成像分析,CD133 + 祖细胞在肾脏组织中积累,并观察到肺,脾和肝中的包埋减少。在肾组织中可以检测到相似水平的间充质干细胞,但在肾外器官中存在更高的信号。两种细胞类型均产生几种细胞因子/生长因子,表明不同介质的组合参与其生物学作用。这些结果表明,人CD133 + 祖细胞具有促肾性,能够改善急性肾损伤中的肾脏再生。

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