Sustained hypoxia in mice increases parasympathetic but not sympathetic tone

IF 2.1 Q3 PHYSIOLOGY
Juliana R. Souza, Mauro de Oliveira, Benedito H. Machado
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引用次数: 2

Abstract

The autonomic profile of mice submitted to sustained hypoxia (SH) was not yet fully evaluated. Herein, we characterized the cardiovascular and autonomic profile of conscious freely moving mice submitted to SH using two sequential experimental protocols to evaluate the parasympathetic and sympathetic tone to the heart and the sympathetic tone to the vascular resistance. In the first protocol the sequence of antagonists was methyl-atropine followed by propranolol and then by prazosin, while in the second protocol the sequence was propranolol followed by methyl-atropine and then by prazosin. In SH the baseline heart rate was significantly lower than in control mice and the antagonism of the parasympathetic and sympathetic tone to the heart in both experimental protocols indicated an increased parasympathetic tone in SH mice and no changes in the sympathetic tone. Antagonism of the sympathetic tone to the vascular resistance with prazosin produced similar changes in arterial pressure in control and SH mice. Altogether these findings support the concept that mice submitted to SH present a significant increase in the parasympathetic but not in the sympathetic tone, which may explain why the baseline arterial pressure was not increased in SH mice.

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小鼠持续缺氧增加副交感神经张力,但不增加交感神经张力
持续缺氧(SH)小鼠的自主神经谱尚未完全评估。在此,我们采用两种顺序的实验方案来评估副交感神经和交感神经对心脏的张力以及交感神经对血管阻力的张力,对接受SH治疗的有意识自由运动小鼠的心血管和自主神经特征进行了表征。在第一个方案中,拮抗剂的顺序是甲基阿托品,然后是心得安,然后是普唑嗪,而在第二个方案中,顺序是心得安,然后是甲基阿托品,然后是普唑嗪。在SH小鼠中,基线心率明显低于对照小鼠,两种实验方案中对心脏的副交感神经和交感神经张力的拮抗表明,SH小鼠的副交感神经张力增加,而交感神经张力没有变化。在对照和SH小鼠中,交感神经张力对哌唑嗪血管阻力的拮抗作用产生了类似的动脉压变化。总的来说,这些发现支持了这样一个概念,即接受SH治疗的小鼠副交感神经张力显著增加,但交感神经张力没有增加,这可能解释了为什么SH小鼠的基线动脉压没有增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.20
自引率
0.00%
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审稿时长
62 days
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