首页> 美国卫生研究院文献>American Journal of Physiology - Renal Physiology >Programming Normal Renal Development and Modeling Disease Pathogenesis: SDF-1 activates papillary label-retaining cells during kidney repair from injury
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Programming Normal Renal Development and Modeling Disease Pathogenesis: SDF-1 activates papillary label-retaining cells during kidney repair from injury

机译:正常肾脏发育的编程和疾病发病机理的建模:SDF-1在肾脏损伤修复过程中激活乳头状标记保留细胞

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摘要

The adult kidney contains a population of low-cycling cells that resides in the papilla. These cells retain for long periods S-phase markers given as a short pulse early in life; i.e., they are label-retaining cells (LRC). In previous studies in adult rat and mice, we found that shortly after acute kidney injury many of the quiescent papillary LRC started proliferating (Oliver JA, Klinakis A, Cheema FH, Friedlander J, Sampogna RV, Martens TP, Liu C, Efstratiadis A, Al-Awqati Q. J Am Soc Nephrol 20: 2315–2327, 2009; Oliver JA, Maarouf O, Cheema FH, Martens TP, Al-Awqati Q. J Clin Invest 114: 795–804, 2004) and, with cell-tracking experiments, we found upward migration of some papillary cells including LRC (Oliver JA, Klinakis A, Cheema FH, Friedlander J, Sampogna RV, Martens TP, Liu C, Efstratiadis A, Al-Awqati Q. J Am Soc Nephrol 20: 2315–2327, 2009). To identify molecular cues involved in the activation (i.e., proliferation and/or migration) of the papillary LRC that follows injury, we isolated these cells from the H2B-GFP mice and found that they migrated and proliferated in response to the cytokine stromal cell-derived factor-1 (SDF-1). Moreover, in a papillary organ culture assay, the cell growth out of the upper papilla was dependent on the interaction of SDF-1 with its receptor Cxcr4. Interestingly, location of these two proteins in the kidney revealed a complementary location, with SDF-1 being preferentially expressed in the medulla and Cxcr4 more abundant in the papilla. Blockade of Cxcr4 in vivo prevented mobilization of papillary LRC after transient kidney ischemic injury and worsened its functional consequences. The data indicate that the SDF-1/Cxcr4 axis is a critical regulator of papillary LRC activation following transient kidney injury and during organ repair.
机译:成年肾脏含有一群位于乳头状细胞中的低循环细胞。这些细胞在生命早期会以短脉冲形式长期保留S期标记。即它们是标记保留细胞(LRC)。在先前对成年大鼠和小鼠进行的研究中,我们发现急性肾损伤后不久,许多静止的乳头状LRC开始增殖(Oliver JA,Klinakis A,Cheema FH,Friedlander J,Sampogna RV,Martens TP,Liu C,Efstratiadis A, Al-Awqati Q. J Am Soc Nephrol 20:2315-2327,2009; Oliver JA,Maarouf O,Cheema FH,Martens TP,Al-Awqati Q. J Clin Invest 114:795-804,2004),以及跟踪实验,我们发现一些乳头状细胞向上迁移,包括LRC(Oliver JA,Klinakis A,Cheema FH,Friedlander J,Sampogna RV,Martens TP,Liu C,Efstratiadis A,Al-Awqati Q. J Am Soc Nephrol 20:2315 – 2327,2009)。为了确定损伤后乳头LRC的活化(即增殖和/或迁移)所涉及的分子线索,我们从H2B-GFP小鼠中分离了这些细胞,并发现它们响应细胞因子基质细胞迁移并增殖。衍生因子1(SDF-1)。此外,在乳头器官培养试验中,上乳头细胞的生长取决于SDF-1及其受体Cxcr4的相互作用。有趣的是,这两种蛋白在肾脏中的位置显示出互补的位置,其中SDF-1在髓质中优先表达,而Cxcr4在乳头中更丰富。体内Cxcr4的阻断阻止了短暂性肾脏缺血性损伤后乳头状LRC的动员,并恶化了其功能性后果。数据表明,SDF-1 / Cxcr4轴是短暂肾损伤后和器官修复过程中乳头LRC激活的关键调节剂。

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