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近端小管细胞中谷胱甘肽过氧化物酶4(GPX4)表达的变化突出了铁死亡在IgA肾病中的作用。

GPX4 expression changes in proximal tubule cells highlight the role of ferroptosis in IgAN.

作者信息

Qing Jianbo, Zhang Lijuan, Fan Ru, Zhi Huiwen, Li Changqun, Li Yaheng, Wu Junnan, Han Chongyang, Li Yafeng

机构信息

Department of Nephrology, Shanxi Provincial People's Hospital (Fifth Hospital), Shanxi Medical University, Taiyuan, 030001, China.

Department of Nephrology, Sir Run Run Shaw Hospital, Zhejiang University School of Medicine, Hangzhou, 310000, China.

出版信息

Sci Rep. 2025 Jan 31;15(1):3886. doi: 10.1038/s41598-025-87228-9.

Abstract

As an important mechanism of renal injury, oxidative stress (OS) is inseparable from the occurrence of renal fibrosis and the rapid progression of renal failure. However, the contribution of OS to IgA nephropathy (IgAN), the primary driver of chronic kidney disease remains uncertain. To investigate the effects of OS in IgAN, and identify the mechanisms of cell and tissue injury and protection, single-cell RNA sequencing (scRNA-seq) data and microarray data of IgAN were collected and analyzed. Through gene set variation analysis (GSVA), we identified significant alterations in the activity of multiple OS pathways within the proximal tubule cells (PTCs) of IgAN patients. Subsequent enrichment analysis revealed that the differentially expressed genes associated with OS in PTCs were primarily linked to the process of ferroptosis. Therefore, regulators of ferroptosis were collected to define the ferroptosis activity of PTCs in IgAN, and we found that the activity of suppressing ferroptosis was significantly enhanced. Moreover, being the central controller of ferroptosis, the expression of GPX4 in the PTCs of IgAN is extremely significant, which has been further verified by immunohistochemistry in kidney tissues of IgAN patients. Additionally, the GSVA of microarray data of IgAN indicated that the activity of driving ferroptosis and suppressing ferroptosis in tubulointerstitium were markedly decreased, however, the inhibition of ferroptosis in the tubulointerstitium of IgAN is relatively stronger. These findings demonstrate that ferroptosis inhibition may be a potential mechanism to alleviate OS injury in IgAN, and GPX4 could not only function as a specific marker for PTCs in IgAN but also represent a potential therapeutic target to halt the progression of the disease.

摘要

作为肾损伤的重要机制,氧化应激(OS)与肾纤维化的发生及肾衰竭的快速进展密切相关。然而,OS在慢性肾脏病的主要驱动因素——IgA肾病(IgAN)中的作用仍不明确。为了研究OS在IgAN中的作用,并确定细胞和组织损伤及保护的机制,我们收集并分析了IgAN的单细胞RNA测序(scRNA-seq)数据和微阵列数据。通过基因集变异分析(GSVA),我们发现IgAN患者近端小管细胞(PTCs)内多个OS通路的活性发生了显著改变。随后的富集分析表明,PTCs中与OS相关的差异表达基因主要与铁死亡过程有关。因此,我们收集了铁死亡调节因子来定义IgAN中PTCs的铁死亡活性,发现抑制铁死亡的活性显著增强。此外,作为铁死亡的核心调控因子,GPX4在IgAN患者PTCs中的表达极为显著,这在IgAN患者肾组织的免疫组化中得到了进一步验证。此外,IgAN微阵列数据的GSVA表明,肾小管间质中驱动铁死亡和抑制铁死亡的活性均显著降低,然而,IgAN肾小管间质中对铁死亡的抑制作用相对更强。这些发现表明,抑制铁死亡可能是减轻IgAN中OS损伤的潜在机制,GPX4不仅可以作为IgAN中PTCs的特异性标志物,还可能是阻止疾病进展的潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6516/11785777/a984243ea3d9/41598_2025_87228_Fig1_HTML.jpg

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