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Extracellular vesicles derived from cardiosphere-derived cells as a potential antishock therapeutic

胞外囊泡 凝血病 医学 药理学 流式细胞术 细胞外 组织因子 微泡 微泡 干细胞 化学 细胞生物学 细胞外小泡 免疫学 生物 内科学 凝结 生物化学 小RNA 基因
作者
Tiffani C. Chance,Xiaowu Wu,Jeffrey D. Keesee,Josue Garcia-Marcano,Christi Salgado,Bin Liu,Jennifer Johnson Moseley,Kiel Peck,Luis R.-Borlado,Nadia A. Atai,Stephen J. Gould,Linda Marbán,P. Andrew,Christopher R. Rathbone,James A. Bynum
出处
期刊:The journal of trauma and acute care surgery [Lippincott Williams & Wilkins]
卷期号:91 (2S): S81-S88 被引量:3
标识
DOI:10.1097/ta.0000000000003218
摘要

BACKGROUND Extracellular vesicles (EVs) isolated from cardiosphere-derived cells (CDC-EVs) are coming to light as a unique cell-free therapeutic. Because of their novelty, however, there still exist prominent gaps in knowledge regarding their therapeutic potential. Herein the therapeutic potential of CDC-EVs in a rat model of acute traumatic coagulopathy induced by multiple injuries and hemorrhagic shock is outlined. METHODS Extracellular vesicle surface expression of procoagulant molecules (tissue factor and phosphatidylserine) was evaluated by flow cytometry. Extracellular vesicle thrombogenicity was tested using calibrated thrombogram, and clotting parameters were assessed using a flow-based adhesion model simulating blood flow over a collagen-expressing surface. The therapeutic efficacy of EVs was then determined in a rat model of acute traumatic coagulopathy induced by multiple injuries and hemorrhagic shock. RESULTS Extracellular vesicles isolated from cardiosphere-derived cells are not functionally procoagulant and do not interfere with platelet function. In a rat model of multiple injuries and hemorrhagic shock, early administration of EVs significantly reduced the elevation of lactate and creatinine and did not significantly enhance coagulopathy in rats with acute traumatic coagulopathy. CONCLUSION The results of this study are of great relevance to the development of EV products for use in combat casualty care, as our studies show that CDC-EVs have the potential to be an antishock therapeutic if administered early. These results demonstrate that research using CDC-EVs in trauma care needs to be considered and expanded beyond their reported cardioprotective benefits.
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