血小板
肾脏疾病
医学
血小板活化
尿素
内科学
内分泌学
药理学
肾
出血时间
血尿素氮
血小板疾病
肾功能
运输机
免疫学
限制
发病机制
肾切除术
病理生理学
信号转导
基因剔除小鼠
血小板因子4
血小板膜糖蛋白
体内
化学
癌症研究
作者
Zhiwei Qiu,Fei Xiong,Zhe Wang,Yingxin Zhao,Shuang Gao,Xin Zhang,Yu Chen,Zhiyan Liu,Ruofei Li,Linyu Cao,Lan Sun,Guangying Shao,Tianze Sun,Tao Jiang,Min Li,Jie Dong,Baoxue Yang,Yimin Cui,Qian Xiang
标识
DOI:10.1126/scitranslmed.aed4678
摘要
Platelet dysfunction drives bleeding complications in patients with advanced chronic kidney disease (CKD), worsening clinical outcomes. However, the underlying mechanisms remain unclear, limiting treatment options. In this study, we identified the expression of urea transporter B (SLC14A1/UT-B) in human and mouse platelets. By analyzing a clinical cohort of patients with CKD, we demonstrated that single-nucleotide polymorphisms in SLC14A1 were associated with bleeding events in CKD. Using a 5/6 nephrectomy (5/6 Nx) mouse model and blood samples from patients with advanced CKD, we found that SLC14A1/UT-B–mediated urea influx underlies platelet dysfunction in advanced CKD given that both genetic knockout of Slc14a1 or pharmacological inhibition of UT-B reversed mouse and human platelet dysfunction induced by urea or advanced CKD plasma. SLC14A1/UT-B–mediated urea influx induced protein carbamylation, which drove platelet dysfunction. By characterizing the carbamylation profiles of proteins in human and mouse platelets, we demonstrated that carbamylation disrupted cytoskeletal rearrangement, degranulation, and inside-out integrin αIIbβ3 signaling transduction during platelet activation, leading to impaired platelet aggregation, secretion, and spreading in advanced CKD. Furthermore, treatment of 5/6 Nx mice with the UT-B inhibitor PU-48 effectively preserved platelet function and improved hemostatic ability. These findings suggest that SLC14A1/UT-B promoted urea uptake in platelets and mediated bleeding in advanced CKD, highlighting its potential as a therapeutic target for managing bleeding complications in patients with advanced CKD.
科研通智能强力驱动
Strongly Powered by AbleSci AI