Cardiovascular function and autonomic regulation in urethane-anesthetized and conscious mice.

IF 2.2 3区 医学 Q3 PHYSIOLOGY
Anastasiia Vasileva, Laura D M Flores, Mikhail Vasilyev, Michelle A Buckman, Lara R DeRuisseau, Michael H Tomasson, Melissa L Bates
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Abstract

Urethane is widely used for its ability to induce prolonged anesthesia. Variability in previously reported cardiovascular parameters in murine models makes it challenging to definitively evaluate the cardiovascular effects of urethane anesthesia. We aimed to address these challenges, thereby advancing our understanding of urethane's effects on cardiovascular function in mice. In this study, we investigated how urethane anesthesia, with and without supplemental oxygen, impacts heart rate, arterial oxygen saturation ([Formula: see text]), blood pressure, and heart rate variability in mice. First, we conducted a literature review and found that data in mice were both limited and lacking in reproduction. Next, we conducted a series of physiological measurements to address gaps in the literature and subjected C57BL/6J mice to three conditions: 1) conscious, 2) urethane-anesthetized, and 3) urethane-anesthetized with supplemental oxygen. Blood pressure, heart rate, [Formula: see text], and heart rate variability (via time, frequency, and M-curve analyses) were assessed. We observed an increase in heart rate with urethane anesthesia (P = 0.012) compared with the conscious state. Urethane caused a decrease in heart rate variability, which was independent of oxygen supplementation. Urethane anesthesia caused a significant reduction in arterial blood pressure (P < 0.001) with oxygen-supplemented mice remained hypotensive. Urethane decreased [Formula: see text] (P = 0.001), which was restored by oxygen supplementation (P < 0.001). We did not observe sex effects of urethane anesthesia on blood pressure, heart rate, heart rate variability, or [Formula: see text]. Taken together, these results underscore the importance of a cautious approach when using urethane in mice, as urethane significantly impacts arterial blood pressure, heart rate, oxygen saturation, and heart rate variability.NEW & NOTEWORTHY This investigation documents cardiovascular outcomes in mice receiving urethane anesthesia, emphasizing sex as a biological variable, and considering oxygen supplementation during anesthesia. This is the first report of M-curve analysis in rodents as a heart rate-independent variability analysis.

聚氨酯麻醉和清醒小鼠的心血管功能和自主调节。
聚氨酯因其诱导长时间麻醉的能力而被广泛使用。以前报道的小鼠模型中心血管参数的变异性使得明确评估聚氨酯麻醉对心血管的影响具有挑战性。我们的目标是解决这些挑战,从而推进我们对聚氨酯对小鼠心血管功能影响的理解。在这项研究中,我们研究了尿素麻醉在有和没有补充氧气的情况下对小鼠心率、动脉血氧饱和度(SpO2)、血压和心率变异性的影响。首先,我们进行了文献回顾,发现小鼠的数据既有限又缺乏繁殖。接下来,为了填补文献空白,我们进行了一系列生理测量,并将C57BL/6J小鼠置于三种条件下:1)有意识,2)氨基脲麻醉,3)氨基脲麻醉并补充氧气。评估血压、心率、SpO2和心率变异性(通过时间、频率和m曲线分析)。我们观察到与意识状态相比,使用聚氨酯麻醉的心率增加(p=0.012)。氨基甲酸乙酯引起心率变异性的降低,这与补充氧气无关。脲烷麻醉显著降低动脉血压(p=0.001),补氧后血压恢复(p=0.001)。综上所述,这些结果强调了在小鼠中使用聚氨酯时谨慎处理的重要性,因为聚氨酯会显著影响动脉血压、心率、氧饱和度和心率变异性。
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来源期刊
CiteScore
5.30
自引率
3.60%
发文量
145
审稿时长
2 months
期刊介绍: The American Journal of Physiology-Regulatory, Integrative and Comparative Physiology publishes original investigations that illuminate normal or abnormal regulation and integration of physiological mechanisms at all levels of biological organization, ranging from molecules to humans, including clinical investigations. Major areas of emphasis include regulation in genetically modified animals; model organisms; development and tissue plasticity; neurohumoral control of circulation and hypertension; local control of circulation; cardiac and renal integration; thirst and volume, electrolyte homeostasis; glucose homeostasis and energy balance; appetite and obesity; inflammation and cytokines; integrative physiology of pregnancy-parturition-lactation; and thermoregulation and adaptations to exercise and environmental stress.
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