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Uncontrolled Hemorrhagic Shock Modeled via Liver Laceration in Mice with Real Time Hemodynamic Monitoring

机译:通过实时血流动力学监测通过小鼠肝裂伤模型控制失血性休克

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摘要

Uncontrolled hemorrhage is an important cause of preventable deaths among trauma patients. We have developed a murine model of uncontrolled hemorrhage via a liver laceration that results in consistent blood loss, hemodynamic alterations, and survival.Mice undergo a standardized resection of the left-middle lobe of the liver. They are allowed to bleed without mechanical intervention. Hemostatic agents can be administered as pre-treatment or rescue therapy depending on the interest of the investigator. During the time of hemorrhage, real-time hemodynamic monitoring via a left femoral arterial line is performed. Mice are then sacrificed, blood loss is quantified, blood is collected for further analysis, and organs are harvested for analysis of injury. Experimental design is described to allow for simultaneous testing of multiple animals.Liver hemorrhage as a model of uncontrolled hemorrhage exists in the literature, primarily in rat and porcine models. Some of these models utilize hemodynamic monitoring or quantify blood loss but lack consistency. The present model incorporates quantification of blood loss, real-time hemodynamic monitoring in a murine model that offers the advantage of using transgenic lines and a high-throughput mechanism to further investigate the pathophysiologic mechanisms in uncontrolled hemorrhage.
机译:失控的出血是创伤患者中可预防的死亡的重要原因。我们开发了一种小鼠模型,该模型通过肝脏撕裂伤失控出血,可导致持续的失血量,血液动力学改变和生存期。小鼠接受了肝脏左中叶的标准化切除。无需机械干预即可放血。止血剂可以根据研究者的兴趣作为预处理或抢救疗法进行给药。在出血期间,通过左股动脉管路进行实时血流动力学监测。然后处死小鼠,定量失血,收集血液用于进一步分析,收集器官用于损伤分析。描述了实验设计以允许同时测试多只动物。肝出血是失控出血的模型,在文献中主要存在于大鼠和猪模型中。其中一些模型利用血液动力学监测或量化失血量,但缺乏一致性。本模型在小鼠模型中结合了失血的量化,实时血液动力学监测,提供了使用转基因品系和高通量机制进一步研究不受控制的出血的病理生理机制的优势。

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