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人羊膜干细胞在免疫缺陷型急性肾小管坏死小鼠模型中的保护作用。

Protective effect of human amniotic fluid stem cells in an immunodeficient mouse model of acute tubular necrosis.

机构信息

Developmental Biology and Regenerative Medicine Program, Saban Research Institute, Childrens Hospital Los Angeles, Los Angeles, California, United States of America.

出版信息

PLoS One. 2010 Feb 24;5(2):e9357. doi: 10.1371/journal.pone.0009357.

Abstract

Acute Tubular Necrosis (ATN) causes severe damage to the kidney epithelial tubular cells and is often associated with severe renal dysfunction. Stem-cell based therapies may provide alternative approaches to treating of ATN. We have previously shown that clonal c-kit(pos) stem cells, derived from human amniotic fluid (hAFSC) can be induced to a renal fate in an ex-vivo system. Herein, we show for the first time the successful therapeutic application of hAFSC in a mouse model with glycerol-induced rhabdomyolysis and ATN. When injected into the damaged kidney, luciferase-labeled hAFSC can be tracked using bioluminescence. Moreover, we show that hAFSC provide a protective effect, ameliorating ATN in the acute injury phase as reflected by decreased creatinine and BUN blood levels and by a decrease in the number of damaged tubules and apoptosis therein, as well as by promoting proliferation of tubular epithelial cells. We show significant immunomodulatory effects of hAFSC, over the course of ATN. We therefore speculate that AFSC could represent a novel source of stem cells that may function to modulate the kidney immune milieu in renal failure caused by ATN.

摘要

急性肾小管坏死 (ATN) 可导致严重的肾脏上皮管状细胞损伤,常伴有严重的肾功能障碍。基于干细胞的治疗方法可能为 ATN 的治疗提供替代方法。我们之前已经表明,源自人羊水 (hAFSC) 的克隆 c-kit(pos) 干细胞可以在体外系统中被诱导为肾脏命运。在此,我们首次在甘油诱导的横纹肌溶解和 ATN 的小鼠模型中成功地应用了 hAFSC 的治疗。当注射到受损的肾脏中时,可通过生物发光追踪荧光素酶标记的 hAFSC。此外,我们表明 hAFSC 提供了一种保护作用,通过降低肌酐和 BUN 血液水平以及减少受损肾小管的数量和其中的细胞凋亡,以及促进肾小管上皮细胞的增殖,改善急性损伤期的 ATN。我们在 ATN 过程中显示出 hAFSC 的显著免疫调节作用。因此,我们推测 AFSC 可能代表一种新的干细胞来源,可在由 ATN 引起的肾衰竭中调节肾脏免疫环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f855/2827539/362ff68caf4d/pone.0009357.g001.jpg

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