4.7 Article

C-X-C Chemokine Receptor Type 4 Plays a Crucial Role in Mediating Oxidative Stress-Induced Podocyte Injury

期刊

ANTIOXIDANTS & REDOX SIGNALING
卷 27, 期 6, 页码 345-362

出版社

MARY ANN LIEBERT, INC
DOI: 10.1089/ars.2016.6758

关键词

CXCR4; oxidative stress; podocyte injury

资金

  1. National Natural Science Foundation of China [81370014, 81521003, 81570620]
  2. Guangdong Science Foundation [2014A030312014]
  3. Guangzhou Projects [201504010001]
  4. Foundation for Distinguished Young Talents in Higher Education of Guangdong, China [LYM10043]
  5. Foundation for the Author of Excellent Doctoral Dissertation of Guangdong, China [sybzzxm201223]

向作者/读者索取更多资源

Aims: Oxidative stress plays a role in mediating podocyte injury and proteinuria. However, the underlying mechanism remains poorly understood. In this study, we investigated the potential role of C-X-C chemokine receptor type 4 (CXCR4), the receptor for stromal cell-derived factor 1 alpha (SDF-1 alpha), in mediating oxidative stress-induced podocyte injury. Results: In mouse model of adriamycin nephropathy (ADR), CXCR4 expression was significantly induced in podocytes as early as 3 days. This was accompanied by an increased upregulation of oxidative stress in podocyte, as demonstrated by malondialdehyde assay, nitrotyrosine staining and secretion of 8-hydroxy-2'-deoxyguanosine in urine, and induction of NOX2 and NOX4, major subunits of NADPH oxidase. CXCR4 was also induced in human kidney biopsies with proteinuric kidney diseases and colocalized with advanced oxidation protein products (AOPPs), an established oxidative stress trigger. Using cultured podocytes and mouse model, we found that AOPPs induced significant loss of podocyte marker Wilms tumor 1 (WT1), nephrin, and podocalyxin, accompanied by upregulation of desmin both in vitro and in vivo. Furthermore, AOPPs worsened proteinuria and aggravated glomerulosclerosis in ADR. These effects were associated with marked activation of SDF-1 alpha/CXCR4 axis in podocytes. Administration of AMD3100, a specific inhibitor of CXCR4, reduced proteinuria and ameliorated podocyte dysfunction and renal fibrosis triggered by AOPPs in mice. In glomerular miniorgan culture, AOPPs also induced CXCR4 expression and downregulated nephrin and WT1. Innovation and Conclusion: These results suggest that chemokine receptor CXCR4 plays a crucial role in mediating oxidative stress-induced podocyte injury, proteinuria, and renal fibrosis. CXCR4 could be a new target for mitigating podocyte injury, proteinuria, and glomerular sclerosis in proteinuric chronic kidney disease.

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