高原缺氧环境大鼠深静脉血栓模型的建立与思考
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1. 新疆军区总医院急诊医学科,乌鲁木齐 830000;2. 新疆军区总医院呼吸科,乌鲁木齐 830000; 3. 新疆军区总医院影像科,乌鲁木齐 830000;4. 新疆军区总医院科研教学办公室乌鲁木齐 830000;5.新疆军区总医院重症医学科,乌鲁木齐 830000; 6. 中国人民解放军第951医院,新疆 库尔勒 841000

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Establishment and assessment of deep vein thrombosis model in rats in a plateau hypoxic environment
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1.Department of Emergency Medicine, General Hospital of Xinjiang Military Command, Urumqi 830000, China; 2. Department of Respiratory Medicine, General Hospital of Xinjiang Military Command, Urumqi 830000, China; 3. Department of Imaging, General Hospital of Xinjiang Military Command, Urumqi 830000, China; 4. Research and Teaching Office, General Hospital of Xinjiang Military Command, Urumqi 830000, China; 5. Department of Critical Care Medicine, General Hospital of Xinjiang Military Command, Urumqi 830000, China; 6. the 951th Hospital of Chinese People’s Liberation Army, Korla 841000, China

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    摘要:

    目的 建立高原低压缺氧环境大鼠静脉血栓模型,同时探讨高原缺氧环境对高原静脉血栓形成的影响。 方法 雄性健康SD大鼠144只,随机分组,每组36只,分为平原假手术(A)组、平原手术(B)组、高原海拔6000 m + 假手术(C)组、高原海拔6000 m + 手术(D)组。A组和B组置于平原常氧环境,C组和D组置入高原环境;手术组采用“定量缩窄”,不全性阻断下腔静脉血流;每组按照时间点分为1、3、5、7、14、21d亚组(n= 6),定时监血管超声;取血进行全血粘度检测;炎症指标:ET-1、IL-6、TF检测;凝血功能:APTT、PT、TT检测、Fib检测、D二聚体,观察期结束后处死实验动物后取下肢血栓,苏木素-伊红(HE)染色和测量血栓质量。 结果 D组的血栓形成显著高于B组,且伴随血液粘稠度和红细胞压积的显著增加(P<.01), ET-1、IL-6和TF的水平也显著升高(P<.05),凝血功能紊乱。 结论 下腔静脉不全性定量缩窄结合特殊环境舱模拟高原缺氧环境可以成功构建模型,高原缺氧环境促进静脉血栓形成。

    Abstract:

    Objective To establish a rat model of venous thrombosis in a plateau hypobaric hypoxic environment and to investigate the effect of this environment on venous thrombosis. Methods A total of 144 healthy male SD rats were assigned randomly to four groups (n= 36 rats per group): a plains sham operation (A) group, plains operation (B) group, plateau altitude 6000 m + sham operation (C) group, and plateau altitude 6000 m + surgery (D) group. Rats in A and B groups were maintained in a plains normoxic environment, while rats in C and D groups C and D were subjected to a plateau environment. Rats in the surgical groups underwent quantitative constriction to incompletely obstruct the inferior vena cava blood flow. Each group was further divided into subgroups based on time: 1, 3, 5, 7, 14, and 21 d (n= 6 rats per group). Regular vascular ultrasound monitoring was conducted, and blood samples were taken for whole blood viscosity testing and the assessment of inflammatory indicators, including endothelin-1 (ET-1), interleukin-6 (IL-6) and tissue factor (TF). Coagulation function was evaluated through the activated partial thromboplastin time(APTT), prothrombin time(PT), thrombin time(TT), fibrinogen(FIB) and D-dimer. After the observation period, the experimental animals were sacrificed and the limbs were removed. Thrombus samples were stained with hematoxylin/eosin(HE), and the thrombus wet mass was measured. Results The thrombosis incidence was significantly higher in the plateau D group than in B group, accompanied by a marked increase in blood viscosity and hematocrit (P<.01). Additionally, levels of ET-1, IL-6, and TF were significantly elevated (P<.05), indicating a coagulation disorder. Conclusions A plateau hypoxic environment model can be successfully simulated by quantitative coarctation of the inferior vena cava, combined with a specialized environmental chamber. The findings of this study suggest that a plateau hypoxic environment promotes venous thrombosis.

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韩小博,柴雅豪,高家威,邓鑫凯,李啸,吴家林,韩小丽,李国祥,赵胤杰,杨曦,敖其,张雷,韩红伟,刘智学.高原缺氧环境大鼠深静脉血栓模型的建立与思考[J].中国实验动物学报,2025,33(8):1133~1143.

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  • 收稿日期:2025-01-08
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  • 在线发布日期: 2025-09-22
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