Angiotensin II exacerbates intracerebral hemorrhage in mice via heparin-like antithrombin activation and coagulation dysfunction

Hypertension has paradoxical prothrombotic-hemorrhagic predisposition toward cerebral infarction and intracerebral hemorrhage (ICH), but the mechanism remains poorly understood. We observed Angiotensin II (Ang II) inhibited coagulation by activating antithrombin through heparin-like acceleration of antithrombin-thrombin interaction. Ang II allosterically modulates the 386-397 loop of antithrombin to enhance thrombin inhibition. In vivo, single injection of Ang II inhibited coagulation, alleviating thrombosis and aggravating ICH. Conversely, anti-Ang II monoclonal antibody promoted coagulation, aggravating thrombus formation and alleviating ICH. Notably, the blockage or deficiency of Ang II receptor had no significant effect on the alleviated thrombus formation or aggravated hemorrhage elicited by Ang II, suggesting the phenotypes were independent of Ang II receptor. In hypertensive mice, anti-Ang II monoclonal antibody significantly promoted coagulation and ameliorated ICH. These results identify Ang II as a key coagulation regulator with heparin-like function, suggesting that targeting Ang II-coagulation pathway could be a novel strategy to mitigate cerebral bleeding. Here, the authors show that angiotensin II acts as a key coagulation regulator with heparin-like antithrombin activation function in mediating hemorrhage. Targeting the angiotensin II coagulation pathway could be a novel strategy to mitigate cerebral bleeding events.

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Journal
Nature Communications
Published
2026-09-14
DOI
https://doi.org/10.1038/s41467-026-77481-5
Primary Topic
Intracerebral and Subarachnoid Hemorrhage Research
Type
article
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article

Angiotensin II exacerbates intracerebral hemorrhage in mice via heparin-like antithrombin activation and coagulation dysfunction

Chuanfeng Liu, Meng-Meng Wang, Ren Lai, Wang Gan et al.
Nature Communications
Intracerebral and Subarachnoid Hemorrhage Research
article

Angiotensin II exacerbates intracerebral hemorrhage in mice via heparin-like antithrombin activation and coagulation dysfunction

Chuanfeng Liu, Meng-Meng Wang, Ren Lai, Wang Gan, Qikai Yin, Xiaopeng Tang, Heyu Ni, Min Xue, Shaoying Wang, YuanJie Yin, Musan Yan, Wenshuo Li, Shiping Lin
article en

Abstract

Hypertension has paradoxical prothrombotic-hemorrhagic predisposition toward cerebral infarction and intracerebral hemorrhage (ICH), but the mechanism remains poorly understood. We observed Angiotensin II (Ang II) inhibited coagulation by activating antithrombin through heparin-like acceleration of antithrombin-thrombin interaction. Ang II allosterically modulates the 386-397 loop of antithrombin to enhance thrombin inhibition. In vivo, single injection of Ang II inhibited coagulation, alleviating thrombosis and aggravating ICH. Conversely, anti-Ang II monoclonal antibody promoted coagulation, aggravating thrombus formation and alleviating ICH. Notably, the blockage or deficiency of Ang II receptor had no significant effect on the alleviated thrombus formation or aggravated hemorrhage elicited by Ang II, suggesting the phenotypes were independent of Ang II receptor. In hypertensive mice, anti-Ang II monoclonal antibody significantly promoted coagulation and ameliorated ICH. These results identify Ang II as a key coagulation regulator with heparin-like function, suggesting that targeting Ang II-coagulation pathway could be a novel strategy to mitigate cerebral bleeding. Here, the authors show that angiotensin II acts as a key coagulation regulator with heparin-like antithrombin activation function in mediating hemorrhage. Targeting the angiotensin II coagulation pathway could be a novel strategy to mitigate cerebral bleeding events.

Nature Communications
Qingdao University (CN), St. Michael's Hospital (CA), Kunming Institute of Zoology (CN), University of Toronto (CA), Chinese Academy of Sciences (CN), Affiliated Hospital of Qingdao University (CN), Chengdu Institute of Biology (CN), Qingdao Municipal Center for Disease Control and Prevention (CN), Canadian Blood Services (CA)
Good health and well-being
Openalex Percentile: Top 11%
Intracerebral and Subarachnoid Hemorrhage Research
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