The CXCR4-AT1 axis plays a vital role in glomerular injury via mediating the crosstalk between podocyte and mesangial cell

IF 5.9 2区 医学 Q1 MEDICAL LABORATORY TECHNOLOGY Translational Research Pub Date : 2023-09-09 DOI:10.1016/j.trsl.2023.09.005
Qinyu Wu , Shan Zhou , Dan Xu , Ping Meng , Qiurong Chen , Xiaoxu Wang , Xiaolong Li , Shuangqin Chen , Huiyun Ye , Wenting Ye , Yabing Xiong , Jiemei Li , Jinhua Miao , Weiwei Shen , Xu Lin , Fan Fan Hou , Youhua Liu , Yunfang Zhang , Lili Zhou
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Abstract

Glomeruli stand at the center of nephrons to accomplish filtration and albumin interception.

Podocytes and mesangial cells are the major constituents in the glomeruli. However, their interdependency in glomerular injury has rarely been reported. Herein, we investigated the role of C-X-C chemokine receptor type 4 (CXCR4) in mediating the crosstalk between podocytes and mesangial cells. We found CXCR4 and angiotensin II (AngII) increased primarily in injured podocytes. However, type-1 receptor of angiotensin II (AT1) and stromal cell-derived factor 1α (SDF-1α), a ligand of CXCR4, were evidently upregulated in mesangial cells following the progression of podocyte injury. Ectopic expression of CXCR4 in 5/6 nephrectomy mice increased the decline of renal function and glomerular injury, accelerated podocyte injury and mesangial cell activation, and initiated CXCR4-AT1 axis signals. Additionally, treatment with losartan, an AT1 blocker, interrupted the cycle of podocyte injury and mesangial matrix deposition triggered by CXCR4. Podocyte-specific ablation of CXCR4 gene blocked podocyte injury and mesangial cell activation. In vitro, CXCR4 overexpression induced oxidative stress and renin angiotensin system (RAS) activation in podocytes, and triggered the communication between podocytes and mesangial cells. In cultured mesangial cells, AngII treatment induced the expression of SDF-1α, which was secreted into the supernatant to further promote oxidative stress and cell injury in podocytes. Collectively, these results demonstrate that the CXCR4-AT1 axis plays a vital role in glomerular injury via mediating pathologic crosstalk between podocytes and mesangial cells. Our findings uncover a novel pathogenic mechanism by which the CXCR4-AT1 axis promotes glomerular injury.

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CXCR4-AT1轴通过介导足细胞和系膜细胞之间的串扰在肾小球损伤中起着至关重要的作用。
肾小球位于肾单位的中心,完成过滤和白蛋白截留。足细胞和系膜细胞是肾小球的主要成分。然而,它们在肾小球损伤中的相互依赖性很少被报道。在此,我们研究了C-X-C趋化因子受体4型(CXCR4)在介导足细胞和系膜细胞之间的串扰中的作用。我们发现CXCR4和血管紧张素II(AngII)主要在受损的足细胞中增加。然而,血管紧张素II的1型受体(AT1)和CXCR4的配体基质细胞衍生因子1α(SDF-1α)在足细胞损伤进展后的系膜细胞中明显上调。5/6肾切除术小鼠中CXCR4的异位表达增加了肾功能的下降和肾小球损伤,加速了足细胞损伤和系膜细胞的激活,并启动了CXCR4-AT1轴信号。此外,AT1阻断剂氯沙坦的治疗中断了CXCR4引发的足细胞损伤和系膜基质沉积的周期。足细胞特异性消融CXCR4基因阻断足细胞损伤和系膜细胞活化。在体外,CXCR4过表达诱导足细胞的氧化应激和肾素-血管紧张素系统(RAS)激活,并触发足细胞和系膜细胞之间的通讯。在培养的系膜细胞中,AngII处理诱导SDF-1α的表达,SDF-1α分泌到上清液中,以进一步促进足细胞的氧化应激和细胞损伤。总之,这些结果表明CXCR4-AT1轴通过介导足细胞和系膜细胞之间的病理串扰在肾小球损伤中起着至关重要的作用。我们的发现揭示了CXCR4-AT1轴促进肾小球损伤的一种新的致病机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Translational Research
Translational Research 医学-医学:内科
CiteScore
15.70
自引率
0.00%
发文量
195
审稿时长
14 days
期刊介绍: Translational Research (formerly The Journal of Laboratory and Clinical Medicine) delivers original investigations in the broad fields of laboratory, clinical, and public health research. Published monthly since 1915, it keeps readers up-to-date on significant biomedical research from all subspecialties of medicine.
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