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压力感受器去神经对清醒小鼠动脉血压自主控制的影响。

Effect of baroreceptor denervation on the autonomic control of arterial pressure in conscious mice.

机构信息

Department of Physiology, School of Medicine of Ribeirão Preto/USP, Avenida Bandeirantes 3900, 14049-900, Ribeirão Preto, SP, Brazil.

出版信息

Exp Physiol. 2011 Sep;96(9):853-62. doi: 10.1113/expphysiol.2011.057067. Epub 2011 Jun 10.

Abstract

This study evaluated the role of arterial baroreceptors in arterial pressure (AP) and pulse interval (PI) regulation in conscious C57BL mice. Male animals, implanted with catheters in a femoral artery and a jugular vein, were submitted to sino-aortic (SAD), aortic (Ao-X) or carotid sinus denervation (Ca-X), 5 days prior to the experiments. After basal recording of AP, the lack of reflex bradycardia elicited by administration of phenylephrine was used to confirm the efficacy of SAD, and cardiac autonomic blockade with methylatropine and propranolol was performed. The AP and PI variability were calculated in the time and frequency domains (spectral analysis/fast Fourier transform) with the spectra quantified in low- (LF; 0.25-1 Hz) and high-frequency bands (HF; 1-5 Hz). Basal AP and AP variability were higher after SAD, Ao-X or Ca-X than in intact mice. Pulse interval was similar among the groups, whereas PI variability was lower after SAD. Atropine elicited a slight tachycardia in control mice but did not change PI after total or partial denervation. The bradycardia caused by propranolol was higher after SAD, Ao-X or Ca-X compared with intact mice. The increase in the variability of AP was accompanied by a marked increase in the LF and HF power of the AP spectra after baroreceptor denervation. The LF and HF power of the PI were reduced by SAD and by Ao-X or Ca-X. Therefore, both sino-aortic and partial baroreceptor denervation in mice elicits hypertension and a remarkable increase in AP variability and cardiac sympathetic tonus. Spectral analysis showed an important contribution of the baroreflex in the power of LF oscillations of the PI spectra. Both sets of baroreceptors seem to be equally important in the autonomic regulation of the cardiovascular system in mice.

摘要

本研究旨在评估动脉压力感受器在清醒 C57BL 小鼠的动脉血压(AP)和脉搏间隔(PI)调节中的作用。雄性动物在股动脉和颈静脉植入导管,在实验前 5 天进行了主动脉弓(SAD)、主动脉(Ao-X)或颈动脉窦去神经(Ca-X)。在 AP 的基础记录后,给予苯肾上腺素后反射性心动过缓的缺失被用来确认 SAD 的效果,并用甲基阿托品和普萘洛尔进行心脏自主神经阻断。AP 和 PI 的变异性通过时间和频率域(频谱分析/快速傅里叶变换)进行计算,用低(LF;0.25-1 Hz)和高(HF;1-5 Hz)频带的频谱进行量化。与完整小鼠相比,SAD、Ao-X 或 Ca-X 后 AP 和 AP 变异性的基础值更高。脉搏间隔在各组之间相似,而 SAD 后 PI 变异性较低。阿托品在对照小鼠中引起轻微的心动过速,但在完全或部分去神经后不改变 PI。与完整小鼠相比,普萘洛尔引起的心动过缓在 SAD、Ao-X 或 Ca-X 后更高。AP 变异性的增加伴随着 AP 频谱 LF 和 HF 功率的显著增加,在去压力感受器后。SAD 和 Ao-X 或 Ca-X 降低了 PI 的 LF 和 HF 功率。因此,在小鼠中,SAD 和部分压力感受器去神经都会引起高血压以及 AP 变异性和心脏交感神经张力的显著增加。频谱分析表明,压力反射在 PI 频谱 LF 振荡的功率中具有重要贡献。这两组压力感受器在小鼠心血管系统的自主调节中似乎同样重要。

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