Department of Medical Biochemistry.
J Am Soc Nephrol. 2013 Oct;24(10):1599-616. doi: 10.1681/ASN.2013010030. Epub 2013 Jul 5.
CKD progresses with fibrosis and erythropoietin (Epo)-dependent anemia, leading to increased cardiovascular complications, but the mechanisms linking Epo-dependent anemia and fibrosis remain unclear. Here, we show that the cellular phenotype of renal Epo-producing cells (REPs) alternates between a physiologic Epo-producing state and a pathologic fibrogenic state in response to microenvironmental signals. In a novel mouse model, unilateral ureteral obstruction-induced inflammatory milieu activated NFκB and Smad signaling pathways in REPs, rapidly repressed the Epo-producing potential of REPs, and led to myofibroblast transformation of these cells. Moreover, we developed a unique Cre-based cell-fate tracing method that marked current and/or previous Epo-producing cells and revealed that the majority of myofibroblasts are derived from REPs. Genetic induction of NFκB activity selectively in REPs resulted in myofibroblastic transformation, indicating that NFκB signaling elicits a phenotypic switch. Reversing the unilateral ureteral obstruction-induced inflammatory microenvironment restored the Epo-producing potential and the physiologic phenotype of REPs. This phenotypic reversion was accelerated by anti-inflammatory therapy. These findings demonstrate that REPs possess cellular plasticity, and suggest that the phenotypic transition of REPs to myofibroblasts, modulated by inflammatory molecules, underlies the connection between anemia and renal fibrosis in CKD.
CKD 会进展为纤维化和促红细胞生成素(Epo)依赖性贫血,从而导致心血管并发症增加,但将 Epo 依赖性贫血与纤维化联系起来的机制仍不清楚。在这里,我们表明,肾脏 Epo 产生细胞(REP)的细胞表型会根据微环境信号在生理 Epo 产生状态和病理纤维化状态之间交替。在一种新的小鼠模型中,单侧输尿管梗阻诱导的炎症环境激活了 REP 中的 NFκB 和 Smad 信号通路,迅速抑制了 REP 的 Epo 产生潜能,并导致这些细胞向肌成纤维细胞转化。此外,我们开发了一种独特的基于 Cre 的细胞命运追踪方法,标记当前和/或以前的 Epo 产生细胞,并揭示了大多数肌成纤维细胞来源于 REP。NFκB 活性在 REP 中的遗传诱导选择性地导致肌成纤维细胞转化,表明 NFκB 信号引发了表型转换。逆转单侧输尿管梗阻诱导的炎症微环境恢复了 REP 的 Epo 产生潜能和生理表型。抗炎治疗加速了这种表型逆转。这些发现表明 REP 具有细胞可塑性,并表明由炎症分子调节的 REP 向肌成纤维细胞的表型转变是 CKD 中贫血和肾纤维化之间联系的基础。