首页> 美国卫生研究院文献>The Journal of Physiology >The effect of low-dose acetazolamide on the ventilatory CO2 response curve in the anaesthetized cat.
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The effect of low-dose acetazolamide on the ventilatory CO2 response curve in the anaesthetized cat.

机译:小剂量乙酰唑胺对麻醉猫的通气CO2响应曲线的影响。

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摘要

1. The effect of 4 mg kg-1 acetazolamide (I.V.) on the slope (S) and intercept on the Pa,CO2 axis (B) of the ventilatory CO2 response curve of anaesthetized cats with intact or denervated carotid bodies was studied using the technique of dynamic end-tidal forcing. 2. This dose did not induce an arterial-to-end-tidal PCO2 (P(a-ET),CO2) gradient, indicating that erythrocytic carbonic anhydrase was not completely inhibited. Within the first 2 h after administration, this small dose caused only a slight decrease in mean standard bicarbonate of 1.8 and 1.7 mmol l-1 in intact (n = 7) and denervated animals (n = 7), respectively. Doses of acetazolamide larger than 4 mg kg-1 (up to 32 mg kg-1) caused a significant increase in the P(a-ET),CO2 gradient. 3. In carotid body-denervated cats, 4 mg kg-1 acetazolamide caused a decrease in the CO2 sensitivity of the central chemoreflex loop (Sc) from 1.52 +/- 0.42 to 0.96 +/- 0.32 l min-1 kPa-1 (mean +/- S.D.) while the intercept on the Pa,CO2 axis (B) decreased from 4.5 +/- 0.5 to 4.2 +/- 0.7 kPa. 4. In carotid body-intact animals, 4 mg kg-1 acetazolamide caused a decrease in the CO2 sensitivity of the peripheral chemoreflex loop (Sp) from 0.28 +/- 0.18 to 0.19 +/- 0.12 l min-1 kPa-1. Se and B decreased from 1.52 +/- 0.55 to 0.84 +/- 0.21 l min-1 kPa-1, and from 4.0 +/- 0.5 to 3.0 +/- 0.6 kPa, respectively, not significantly different from the changes encountered in the denervated animals. 5. It is argued that the effect of acetazolamide on the CO2 sensitivity of the peripheral chemoreflex loop in intact cats may be caused by a direct effect on the carotid bodies. Both in intact and in denervated animals the effects of the drug on Sc and B may not be due to a direct action on the central nervous system, but rather to an effect on cerebral vessels resulting in an altered relationship between brain blood flow and brain tissue PCO2.
机译:1.使用以下方法研究了4 mg kg-1乙酰唑胺(IV)对麻醉的颈动脉完整或失神经的猫的通气CO2反应曲线的斜率(S)和Pa,CO2轴(B)的截距的影响。动态潮汐强迫技术。 2.此剂量未引起潮气至终点的PCO2(P(a-ET),CO2)梯度,表明未完全抑制红细胞碳酸酐酶。在给药后的最初2小时内,这种小剂量分别使完整动物(n = 7)和神经支配动物(n = 7)的平均标准碳酸氢盐分别轻微降低1.8和1.7 mmol l-1。大于4 mg kg-1(最高32 mg kg-1)的乙酰唑胺剂量导致P(a-ET),CO2梯度显着增加。 3.在颈动脉去神经的猫中,4 mg kg-1乙酰唑胺使中央化学反射环(Sc)的CO2敏感性从1.52 +/- 0.42降低到0.96 +/- 0.32 l min-1 kPa-1(平均值(+/- SD),而Pa,CO2轴(B)上的截距从4.5 +/- 0.5降至4.2 +/- 0.7 kPa。 4.在完整的颈动脉动物中,4 mg kg-1乙酰唑胺使周围化学反射环(Sp)的CO2敏感性从0.28 +/- 0.18降低到0.19 +/- 0.12 l min-1 kPa-1。 Se和B分别从1.52 +/- 0.55降低到0.84 +/- 0.21 l min-1 kPa-1,并且从4.0 +/- 0.5降低到3.0 +/- 0.6 kPa,与实验中遇到的变化没有显着差异。失神经的动物。 5.有人认为,乙酰唑胺对完整猫的外周化学反射环CO2敏感性的影响可能是对颈动脉体的直接影响。在完整的动物和失神经的动物中,药物对Sc和B的作用可能不是由于对中枢神经系统的直接作用,而是由于对脑血管的作用导致脑血流和脑组织之间关系的改变PCO2。

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