雌激素
冲程(发动机)
医学
转铁蛋白
缺血性中风
缺铁
内科学
内分泌学
缺血
贫血
机械工程
工程类
作者
Xiaopeng Tang,Mingqian Fang,Ruomei Cheng,Zhiye Zhang,Yuming Wang,Chuanbin Shen,Yajun Han,Qiumin Lu,Yingrong Du,Yingying Liu,Zhaohui Sun,Li Zhu,James Mwangi,Min Xue,Chengbo Long,Ren Lai
出处
期刊:Circulation Research
[Ovid Technologies (Wolters Kluwer)]
日期:2020-08-14
卷期号:127 (5): 651-663
被引量:71
标识
DOI:10.1161/circresaha.119.316453
摘要
Epidemiological studies have identified an associate between iron deficiency (ID) and the use of oral contraceptives (CC) and ischemic stroke (IS). To date, however, the underlying mechanism remains poorly understood. Both ID and CC have been demonstrated to upregulate the level and iron-binding ability of Tf (transferrin), with our recent study showing that this upregulation can induce hypercoagulability by potentiating FXIIa/thrombin and blocking antithrombin-coagulation proteases interactions.To investigate whether Tf mediates IS associated with ID or CC and the underlying mechanisms.Tf levels were assayed in the plasma of IS patients with a history of ID anemia, ID anemia patients, venous thromboembolism patients using CC, and ID mice, and in the cerebrospinal fluid of some IS patients. Effects of ID and estrogen administration on Tf expression and coagulability and the underlying mechanisms were studied in vivo and in vitro. High levels of Tf and Tf-thrombin/FXIIa complexes were found in patients and ID mice. Both ID and estrogen upregulated Tf through hypoxia and estrogen response elements located in the Tf gene enhancer and promoter regions, respectively. In addition, ID, administration of exogenous Tf or estrogen, and Tf overexpression promoted platelet-based thrombin generation and hypercoagulability and thus aggravated IS. In contrast, anti-Tf antibodies, Tf knockdown, and peptide inhibitors of Tf-thrombin/FXIIa interaction exerted anti-IS effects in vivo.Our findings revealed that certain factors (ie, ID and CC) upregulating Tf are risk factors of thromboembolic diseases decipher a previously unrecognized mechanistic association among ID, CC, and IS and provide a novel strategy for the development of anti-IS medicine by interfering with Tf-thrombin/FXIIa interactions.
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