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毒蕈碱M1受体介导犬迷走神经刺激期间肺阻力的增加。

Muscarinic M1 receptors mediate the increase in pulmonary resistance during vagus nerve stimulation in dogs.

作者信息

Beck K C, Vettermann J, Flavahan N A, Rehder K

机构信息

Division of Anesthesia Research, Mayo Clinic, Rochester, Minnesota.

出版信息

Am Rev Respir Dis. 1987 Nov;136(5):1135-9. doi: 10.1164/ajrccm/136.5.1135.

Abstract

The physiologic roles of the 2 muscarinic receptors (M1 and M2) in the vagal control of pulmonary resistance were studied by comparing the effects of pirenzepine (PZ, M1-blocker), gallamine (GAL, M2-blocker), and atropine (AT, M1- and M2-blocker) on the increase in pulmonary resistance (RL) and on the reduction in heart rate (HR) during bilateral cervical vagus nerve stimulation in 18 anesthetized (chloralose and urethane) and paralyzed (vecuronium) dogs. PZ, AT, and GAL all inhibited the reduction in HR during vagus nerve stimulation, although the inhibition required relatively high doses of PZ and GAL. AT and PZ inhibited the increase in RL during vagus nerve stimulation. The ratio of the dose needed to inhibit by 50% the HR response to the dose needed to inhibit by 50% the RL response was approximately 45:1 for PZ, 12:1 for AT, and less than 0.4:1 for GAL. Thus, compared with AT, PZ is a more selective blocker of vagally induced increases in RL, indicating that M1 receptors are present in the airway smooth muscle of intact anesthetized dogs. In the same dose range as that which caused the inhibition of the HR response, GAL had no consistent effect on the increase in RL during vagus nerve stimulation, indicating that M2 receptors do not mediate the increase in RL in intact anesthetized dogs.

摘要

通过比较哌仑西平(PZ,M1受体阻滞剂)、加拉明(GAL,M2受体阻滞剂)和阿托品(AT,M1和M2受体阻滞剂)对18只麻醉(氯醛糖和乌拉坦)且麻痹(维库溴铵)犬双侧颈迷走神经刺激期间肺阻力增加(RL)和心率降低(HR)的影响,研究了两种毒蕈碱受体(M1和M2)在迷走神经对肺阻力控制中的生理作用。PZ、AT和GAL均抑制迷走神经刺激期间的HR降低,尽管抑制作用需要相对高剂量的PZ和GAL。AT和PZ抑制迷走神经刺激期间的RL增加。抑制50%HR反应所需剂量与抑制50%RL反应所需剂量之比,PZ约为45:1,AT为12:1,GAL小于0.4:1。因此,与AT相比,PZ是迷走神经诱导的RL增加的更具选择性的阻滞剂,表明M1受体存在于完整麻醉犬的气道平滑肌中。在引起HR反应抑制的相同剂量范围内,GAL对迷走神经刺激期间的RL增加没有一致的影响,表明M2受体不介导完整麻醉犬的RL增加。

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