Anticoagulation targeting membrane-bound anionic phospholipids improves outcomes of traumatic brain injury in mice

Author:

Dong Xinlong12,Liu Wei3,Shen Yu2,Houck Katie2,Yang Mengchen1,Zhou Yuan1,Zhao Zilong1,Wu Xiaoping4,Blevins Teri5,Koehne Amanda L.5,Wun Tze-Chein6ORCID,Fu Xiaoyun27,Li Min3,Zhang Jianning1,Dong Jing-fei27ORCID

Affiliation:

1. Department of Neurosurgery, Tianjin Medical University General Hospital, Tianjin, China;

2. Bloodworks Research Institute, Seattle, WA;

3. Institute of Pathology, School of Medical Sciences and Gansu Provincial Key Laboratory of Preclinical Study for New Drug Development, Lanzhou University, Lanzhou, China;

4. Department of Pathology, University of Washington School of Medicine, Seattle, WA;

5. Department of Comparative Medicine, Fred Hutch Cancer Center, Seattle, WA;

6. EVAS Therapeutics, LLC, Ballwin, MO; and

7. Division of Hematology, Department of Medicine, University of Washington, School of Medicine, Seattle, WA

Abstract

Abstract Severe traumatic brain injury (TBI) often causes an acute systemic hypercoagulable state that rapidly develops into consumptive coagulopathy. We have recently demonstrated that TBI-induced coagulopathy (TBI-IC) is initiated and disseminated by brain-derived extracellular vesicles (BDEVs) and propagated by extracellular vesicles (EVs) from endothelial cells and platelets. Here, we present results from a study designed to test the hypothesis that anticoagulation targeting anionic phospholipid-expressing EVs prevents TBI-IC and improves the outcomes of mice subjected to severe TBI. We evaluated the effects of a fusion protein (ANV-6L15) for improving the outcomes of TBI in mouse models combined with in vitro experiments. ANV-6L15 combines the phosphatidylserine (PS)-binding annexin V (ANV) with a peptide anticoagulant modified to preferentially target extrinsic coagulation. We found that ANV-6L15 reduced intracranial hematoma by 70.2%, improved neurological function, and reduced death by 56.8% in mice subjected to fluid percussion injury at 1.9 atm. It protected the TBI mice by preventing vascular leakage, tissue edema, and the TBI-induced hypercoagulable state. We further showed that the extrinsic tenase complex was formed on the surfaces of circulating EVs, with the highest level found on BDEVs. The phospholipidomic analysis detected the highest levels of PS on BDEVs, as compared with EVs from endothelial cells and platelets (79.1, 15.2, and 3.5 nM/mg of protein, respectively). These findings demonstrate that TBI-IC results from a trauma-induced hypercoagulable state and may be treated by anticoagulation targeting on the anionic phospholipid-expressing membrane of EVs from the brain and other cells.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

Reference50 articles.

1. Increased mortality associated with the early coagulopathy of trauma in combat casualties;Niles;J Trauma.,2008

2. The acute coagulopathy of trauma shock: clinical relevance;Frith;Surgeon.,2010

3. Drivers of acute coagulopathy after severe trauma: a multivariate analysis of 1987 patients;Wafaisade;Emerg Med J.,2010

4. Coagulopathy in trauma patients: what are the main influence factors?;Maani;Curr Opin Anaesthesiol.,2009

5. Pathophysiology of early trauma-induced coagulopathy: emerging evidence for hemodilution and coagulation factor depletion;Shaz;J Trauma.,2011

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