Authors
Si Sun, Weipu Mao, Lei Zhang, Zhong Lv, Xin Jin, Ming Chen, Xiangyu Zou, Guangyuan Zhang
Published in
FASEB journal : official publication of the Federation of American Societies for Experimental Biology. Volume 40. Issue 16. Pages e72182. Aug 31, 2026.
Abstract
It is known that lipopolysaccharides (LPS) could lead to kidney injury and may play a role in intracavitary lithotripsy surgeries such as percutaneous nephrolithotomy (PCNL). Remote ischemic preconditioning (RIPC) has been demonstrated to have protective effects against kidney injury caused by various factors; however, its role in LPS-induced kidney injury remains unclear and its mechanisms require further exploration. Previous studies have shown that extracellular vesicles (EVs) induced by hypoxia mediated the renal protective effects of RIPC. In this study, we established a kidney injury model in rats by ligating the left ureter and injecting LPS into the renal pelvis, along with simultaneous removal of the right kidney (U-L model); EVs were isolated from the plasma of rats subjected to RIPC or sham treatment and administered to U-L model rats. Separately, EVs obtained from healthy human volunteers were applied to LPS-treated human renal tubular epithelial cells (HK-2). Results indicated that RIPC-EVs(R) reduced kidney injury caused by U-L by inhibiting apoptosis, inflammation, and oxidative stress. In vitro, RIPC-EVs(H) alleviate LPS-induced HK-2 cell injury by attenuating apoptosis and inflammation. Moreover, we identified 37 significantly upregulated differential proteins in the EVs sourced from human plasma after RIPC through 4D label-free proteomics, including Tenascin-C (TNC). Mechanistic studies revealed that RIPC-EVs(H) activated β-catenin, inhibited the p53 and NF-κB signaling pathways, and alleviated kidney injury. Clinical trial data showed that RIPC reduced the expression of kidney injury biomarkers in patients undergoing PCNL for kidney stones. Overall, the present study suggested that RIPC could mitigate kidney injury induced by LPS, possibly through the protective role of Tenascin-C carried by EVs.
PMID:
42600059
Bibliographic data and abstract were imported from PubMed on 15 Aug 2026.
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