Epithelial dedifferentiation and myofibroblast activation are critical drivers of chronic kidney disease (CKD) progression. Elevated levels of IGFBP6 have been linked to decreased renal function in CKD patients, but its precise role and underlying mechanisms remain unclear. In this study, we observed significantly increased IGFBP6 expression in the kidney tissues of both renal fibrosis patients and animal models. Global or tubule-specific IGFBP6 knockout attenuated renal cellular senescence and fibrosis development in mice. In vitro, IGFBP6 deficiency preserved epithelial cell phenotype and inhibited fibroblast activation. Additionally, anti-IGFBP6 treatment demonstrated promising therapeutic effects in alleviating renal cellular senescence and fibrosis. Mechanistically, IGFBP6, acting as an adaptor protein, could bind to thrombospondin 1 (THBS1) and prevent its ubiquitination-mediated degradation, thereby activating the THBS1-CD47 cellular pathway in epithelial cells, which contributed to renal cellular senescence and fibrosis. Notably, both genetic and neutralizing antibody-mediated inhibition of IGFBP6 alleviated renal cellular senescence and fibrosis, suggesting that the IGFBP6/THBS1/CD47 axis represents a potential therapeutic target for chronic kidney injury.
Keywords: CD47; IGFBP6; THBS1; cellular senescence; renal fibrosis.
© 2026 The Author(s). Advanced Science published by Wiley‐VCH GmbH.