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动脉压力感受器和脑室内胍那苄对同步肾神经活动的影响。

Influence of arterial baroreceptors and intracerebroventricular guanabenz on synchronized renal nerve activity.

作者信息

Grisk O, Dibona G F

机构信息

Department of Physiology, Ernst-Moritz-Arndt-University, Greifswald, Germany.

出版信息

Acta Physiol Scand. 1998 Jul;163(3):209-18. doi: 10.1046/j.1365-201x.1998.00357.x.

Abstract

The contributions of changes in the number of active fibres and the peak interval of synchronized neural discharges to arterial baroreflex regulated alterations in renal sympathetic nerve activity were examined in intact conscious rats. Stimulation of central nervous system alpha 2 adrenoreceptors with intracerebroventricular guanabenz (10, 20, 40 micrograms) was used to alter renal sympathetic nerve activity by a non-reflex mechanism in both intact and sinoaortic denervated (SAD) rats. Synchronized renal sympathetic nerve discharge was analysed with the sympathetic peak detection algorithm. When arterial pressure was increased from 50 mmHg to 150 mmHg in intact rats, the peak height (number of simultaneously active fibres) of synchronized discharges decreased in a sigmoidal fashion while the peak interval remained unchanged. Guanabenz produced a dose dependent inhibition of renal sympathetic nerve activity due to both a decrease in peak height and an increase in peak interval of synchronized discharges in both intact and SAD rats. Arterial baroreflex mediated changes in renal sympathetic nerve activity are due to changes in the number of simultaneously active nerve fibres. Central nervous system alpha 2 adrenoreceptor stimulation decreases renal sympathetic nerve activity by decreasing the number of active fibres and increasing the peak interval, acting on additional neural pathways not involved in buffering acute arterial pressure changes.

摘要

在清醒的完整大鼠中,研究了活动纤维数量的变化以及同步神经放电的峰间隔对肾交感神经活动的动脉压力感受性反射调节改变的影响。通过脑室内注射胍那苄(10、20、40微克)刺激中枢神经系统α2肾上腺素能受体,以非反射机制改变完整大鼠和去窦主动脉大鼠(SAD)的肾交感神经活动。使用交感峰检测算法分析同步的肾交感神经放电。在完整大鼠中,当动脉血压从50 mmHg升高到150 mmHg时,同步放电的峰高(同时活动的纤维数量)呈S形下降,而峰间隔保持不变。胍那苄对肾交感神经活动产生剂量依赖性抑制,这是由于完整大鼠和去窦主动脉大鼠同步放电的峰高降低和峰间隔增加所致。动脉压力感受性反射介导的肾交感神经活动变化是由于同时活动的神经纤维数量的变化。中枢神经系统α2肾上腺素能受体刺激通过减少活动纤维数量和增加峰间隔来降低肾交感神经活动,作用于不参与缓冲急性动脉血压变化的其他神经通路。

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