State Key Laboratory of Trauma, Burn and Combined Injury, Department for Combat Casualty Care Training, Training Base for Army Health Care, Army Medical University, Chongqing, China.
Department of Orthopedics, XinQiao Hospital, Army Medical University, Chongqing, China.
High Alt Med Biol. 2022 Sep;23(3):240-248. doi: 10.1089/ham.2021.0120. Epub 2022 May 11.
Zhong, Xin, Zhao Ye, Xiaolin Zhou, Renqing Jiang, Yijun Jia, Wenqiong Du, Haoyang Yang, Lin Zhang, Bai Lu, and Zhaowen Zong. Time course of coagulo-fibrinolytic derangements during acclimatization to high altitude in rabbits and a preliminary study on the possible mechanisms. . 23:240-248, 2022. Conflicting data exist regarding changes in the coagulation system during acclimatization to high altitude (HA), which makes the prevention of thromboembolic events difficult. The present study aimed at observing the dynamic changes in the coagulo-fibrinolysis system during acclimatization to HA and at exploring the possible mechanisms. Twenty rabbits of both sexes were randomly divided into two groups, including group A rabbits (healthy plain controls) and group B rabbits (acutely exposed to HA). A traditional coagulation test, thromboelastography analysis, and full blood cell count were used to assess the coagulo-fibrinolytic changes at different time points. Plasma was collected to examine the levels of relevant biomarkers. Six hours and 1 day after acute exposure to HA, the coagulo-fibrinolytic system demonstrated a hypercoagulable state. Further, 3 days after exposure to HA, group B rabbits showed hypocoagulability, increased fibrinolysis, and lower clot firmness and 7 days after exposure to HA, delayed coagulation, decreased fibrinolysis, and increased clot firmness were observed. Subsequently, 14, 21, and 28 days after exposure to HA, we found increased clot firmness. Increased platelet counts and concentrations of fibrinogen and plasminogen activator inhibitor-1 contributed to this change. The coagulo-fibrinolytic derangements during acclimatization to HA in rabbits demonstrated a dynamic pattern.
钟鑫,赵晔,周小林,蒋仁清,贾逸君,杜文琼,杨昊阳,张琳,白露,宗兆文。在兔适应高原过程中凝血-纤溶系统紊乱的时程变化及可能机制的初步研究。 23:240-248, 2022. 关于适应高原过程中凝血系统的变化存在矛盾的数据,这使得预防血栓栓塞事件变得困难。本研究旨在观察适应高原过程中凝血-纤溶系统的动态变化,并探讨可能的机制。 20 只雌雄兔随机分为两组,包括 A 组兔(健康平原对照组)和 B 组兔(急性暴露于高原组)。采用传统凝血试验、血栓弹力图分析和全血细胞计数评估不同时间点凝血-纤溶变化。收集血浆检测相关生物标志物水平。 急性暴露于高原后 6 小时和 1 天,凝血-纤溶系统表现出高凝状态。进一步,暴露于高原后 3 天,B 组兔表现出低凝、纤溶增加、纤维蛋白原和纤溶酶原激活物抑制剂-1水平升高,暴露于高原后 7 天,凝血时间延长,纤溶减少,纤维蛋白原和纤溶酶原激活物抑制剂-1水平升高,随后,暴露于高原后 14、21 和 28 天,我们发现纤维蛋白原和纤溶酶原激活物抑制剂-1水平升高,凝血块硬度增加。血小板计数和纤维蛋白原和纤溶酶原激活物抑制剂-1浓度的增加导致了这种变化。 在兔适应高原过程中凝血-纤溶系统的紊乱表现出动态模式。