Proteomics and human microchips identify Thrombospondin-1 as a potential biomarker for calciphylaxis stem cell therapy
Jiaying Hu, Shijiu Lu, Lianju Qin, Yaoting Sun, Xiaoxue Ye, Qinyi Lin, Jing Zhang, Ming Zeng, Jingjing Wu, Kang Liu, Jingfeng Zhu, Ling Zhang, Feng Chen, Zaozao Chen, Shihui Xu, Zhangzhi Xue, Yongwu
Journal:iScience
IF:4.5
DOI:10.1016/j.isci.2026.116388
PMID:42382992
Published:2026-06-19
research field:血管生物学蛋白质组学再生医学肾脏病学干细胞治疗分子医学生物标志物发现
Abstract
Calciphylaxis (calcific uremic arteriolopathy, CUA) is a rare, fatal disorder primarily affecting chronic kidney disease patients, characterized by microvascular calcification, thrombosis, and skin necrosis. In a discovery cohort (3 CUA, 10 uremic), plasma proteomics identified Thrombospondin-1 (THBS1) as the top upregulated hub in CUA, significantly reduced after human amnion-derived mesenchymal stem cell (hAMSC) therapy, alongside latent TGF-β binding protein 1, both linked to coagulation and wound healing. In vitro proteomics indicated that THBS1/TGF-β1 blockade impaired CUA serum-induced endothelial adhesion and coagulation. ELISA in combined discovery and validation cohorts (8 CUA, 20 uremic) confirmed this reduction post-treatment (6 patients), independent of systemic inflammation. Multiplex immunofluorescence revealed THBS1 and CD47 co-localized with CD31 and integrin β3 in injured microvessels. A human microvascular chip showed that THBS1 inhibition or hAMSC-conditioned medium alleviates injury. These findings implicate THBS1 as a key factor and potential biomarker in calciphylaxis, suggesting hAMSC therapy as a promising mechanism-based approach.
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