Effect of different hypoxic and hypobaric interventions on blood gas and erythrocyte-related indicators in rats.

Qingyuan Qian, Jinchao Pan, Jun Yang, Renjie Wang, Kai Luo, Zengchun Ma, Maoxing Li, Yue Gao
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Abstract

Objectives: To explore the effects of hypoxic and hypobaric conditions on blood gas and erythrocyte-related indicators in rats.

Methods: SD male rats were exposed to low-pressure hypoxic conditions simulating an altitude of 6500 m in a small or a large experimental cabin. Abdominal aortic blood samples were collected and blood gas indicators, red blood cells (RBCs) count, and hemoglobin (Hb) content were measured. The effects of exposure to different hypoxia times, different hypoxia modes, normal oxygen recovery after hypoxia, and re-hypoxia after hypoxia preconditioning on blood gas indicators, RBCs count and Hb content were investigated.

Results: The effect of blood gas indicators was correlated with the length of exposure time of hypoxia and the reoxygenation after leaving the cabin. Hypoxia caused acid-base imbalance and its severity was associated with the duration of hypoxia; hypoxia also led to an increase in RBCs count and Hb content, and the increase was also related to the time exposed to hypoxia. The effects of reoxygenation on acid-base imbalance in rats caged in a small animal cabin were more severe that those in a large experimental cabin. Acetazolamide alleviated the effects of reoxygenation after leaving the cabin. Different hypoxia modes and administration of acetazolamide had little effect on RBCs count and Hb content. Normal oxygen recovery can alleviate the reoxygenation and acid-base imbalance of hypoxic rats after leaving the cabin and improve the increase in red blood cell and hemoglobin content caused by hypoxia. The improvement of hypoxia preconditioning on post hypoxia reoxygenation is not significant, but it can alleviate the acid-base imbalance caused by hypoxia in rats and to some extent improve the increase in red blood cell and hemoglobin content caused by hypoxia.

Conclusions: Due to excessive ventilation and elevated RBCs count and Hb content after hypoxia reoxygenation, oxygen partial pressure and other oxygenation indicators in hypoxic rats are prone to become abnormal, while blood gas acid-base balance indicators are relatively stable, which are more suitable for evaluating the degree of hypoxia injury and related pharmacological effects in rats.

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不同缺氧和低压干预对大鼠血气指标的影响
目的:探讨不同缺氧和低压条件对大鼠血气指标的影响:探讨不同缺氧和低压条件对大鼠血气指标的影响:将 SD 雄性大鼠置于模拟海拔 6500 米的低压缺氧条件下,分别在小型动物舱和大型实验舱中进行实验。采集大鼠腹主动脉血样,测量血气指标、红细胞(RBC)和血红蛋白(Hb)含量。研究了暴露于不同缺氧时间、不同缺氧模式、缺氧后正常氧恢复、缺氧预处理后再缺氧对血气指标、红细胞和血红蛋白含量的影响:结果:血气指标的损害与缺氧暴露时间的长短和出舱后的复氧情况有关。缺氧导致酸碱失衡,其严重程度与缺氧时间的长短有关;缺氧还导致 RBC 数量和 Hb 含量的增加,其增加与缺氧时间有关。在小动物舱内笼养的大鼠,复氧对酸碱失衡的影响比在大型实验舱中的大鼠更严重;而乙酰唑胺能减轻离开实验舱后复氧的影响。不同的缺氧模式和服用乙酰唑胺对红细胞计数和血红蛋白含量的影响不大:结论:由于缺氧复氧后通气量过大,红细胞和血红蛋白含量升高,缺氧大鼠体内氧分压等氧合指标容易出现异常,而血气酸碱平衡指标相对稳定,说明酸碱平衡指标更适合评价大鼠缺氧损伤程度及相关药理作用。
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发文量
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