基因敲除
急性肾损伤
肾
下调和上调
DNA损伤
癌症研究
细胞生物学
基因剔除小鼠
功能(生物学)
胞外囊泡
医学
DNA修复
肾功能
细胞损伤
化学
肾脏疾病
突变
细胞外小泡
DNA
细胞损伤
细胞凋亡
细胞生长
生物
病理
损失函数
细胞
细胞外
程序性细胞死亡
机制(生物学)
肾活检
活检
基因
HEK 293细胞
作者
Wei Jiang,Tao‐Tao Tang,Wei‐Jie Ni,Jin-Xuan Wei,Liang-Yun-Zi Jiang,Qing Yin,Y Zhang,Zuo‐Lin Li,Yi Wen,Xinlu Wang,Jiajia Shen,Xiao‐Jun Ouyang,Ming‐Zhu Zheng,Jian Xu,Xiaofei An,Lin-Li Lv,B Liu,Bin Wang
摘要
Acute kidney injury (AKI) occurs in the patients undergoing anti-programmed cell death protein 1-ligand 1 (PD-L1) therapy, indicating that PD-L1 may play a critical role in maintaining renal homeostasis. However, the precise role and mechanism of PD-L1 in AKI remains largely elusive. In this study, we found that PD-L1 was primarily expressed in proximal tubules and significantly upregulated in both murine models of AKI and renal biopsy samples from AKI patients. Genetic specific deletion of PD-L1 in mouse tubular epithelial cells (TECs) exacerbated renal injury in ischemia-reperfusion injury-induced AKI. Mechanistically, PD-L1 was found to interact with BRCA1 and increase BRCA1 expression to safeguard TECs against DNA damage, thereby promoting cellular proliferation and suppressing apoptosis. To translate these findings into a potential therapeutic strategy, we developed a CGA-functionalized extracellular vesicle delivery system for targeted delivery of PD-L1 to injured TECs. This system efficiently restored PD-L1 expression and alleviated DNA damage of TECs in both TEC-specific PD-L1 knockdown and T-cell knockout AKI mouse models. Collectively, these findings uncover a novel function of PD-L1 in promoting adaptive TEC repair through BRCA1 interaction, independent of its canonical immunomodulatory function of T cells, and suggest that PD-L1 supplementation may represent a promising therapeutic strategy for AKI.
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