Role of arginine vasopressin and angiotensin II in cardiovascular responses to combined acute hypoxemia and hypercapnic acidosis in conscious dogs.
Open Access
- 1 August 1984
- journal article
- research article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 74 (2) , 321-331
- https://doi.org/10.1172/jci111427
Abstract
The physiological relationship of increased circulating angiotensin II and vasopressin to circulatory changes during combined hypoxemia and hypercapnic acidosis is unclear. To evaluate the role(s) of angiotensin II and vasopressin, seven unanesthetized female mongrel dogs with controlled sodium intake (80 meq/24 h X 4 d) were studied during 40 min of combined acute hypoxemia and hypercapnic acidosis (PaO2, 36 +/- 1 mmHg; PaCO2, 55 +/- 2 mmHg; pH = 7.16 +/- 0.04) under the following conditions: (a) intact state with infusion of vehicles alone; (b) beta-adrenergic blockade with infusion of d,l-propranolol (1.0 mg/kg bolus, 0.5 mg/kg per h); of the vasopressin pressor antagonist d-(CH2)5Tyr(methyl)arginine-vasopressin (10 micrograms/kg); and (d) simultaneous vasopressin pressor and angiotensin II inhibition with the additional infusion of 1-sarcosine, 8-alanine angiotensin II (2.0 micrograms/kg per min). The rise in mean arterial pressure during the combined blood-gas derangement with vehicles appeared to be related to increased cardiac output, since total peripheral resistance fell. Beta-adrenergic blockade abolished the fall in total peripheral resistance and diminished the rise in cardiac output during combined hypoxemia and hypercapnic acidosis, but the systemic pressor response was unchanged. In addition, the rise in mean arterial pressure during the combined blood-gas derangement was unaltered with vasopressin pressor antagonism alone. In contrast, the simultaneous administration of the vasopressin pressor and angiotensin II inhibitors during combined hypoxemia and hypercapnic acidosis resulted in the abrogation of the overall systemic pressor response despite increased cardiac output, owing to a more pronounced fall in total peripheral resistance. Circulating catecholamines were increased during the combined blood-gas derangement with vasopressin pressor and angiotensin II blockade, suggesting that the abolition of the systemic pressor response in the last 30 min of combined hypoxemia and hypercapnic acidosis was not related to diminished activity of the sympathetic nervous system. These studies show that vasopressin and angiotensin II are major contributors to the systemic pressor response during combined acute hypoxemia and hypercapnic acidosis.This publication has 28 references indexed in Scilit:
- Acute hypoxemia and hypercapnia: increase in plasma catecholamines in conscious dogsAmerican Journal of Physiology-Heart and Circulatory Physiology, 1983
- Synergistic effects of acute hypoxemia and hypercapnic acidosis in conscious dogs. Renal dysfunction and activation of the renin-angiotensin system.Circulation Research, 1983
- [1-(.beta.-mercapto-.beta.,.beta.-cyclopentamethylenepropionic acid),2-(O-methyl)tyrosine]arginine-vasopressin and [1-(.beta.-mercapto-.beta.,.beta.-cyclopentamethylenepropionic acid)]arginine-vasopressin, two highly potent antagonists of the vasopressor response to arginine-vasopressinJournal of Medicinal Chemistry, 1980
- Determination of plasma catecholamines by high performance liquid chromatography with electrochemical detection: Comparison with a radioenzymatic methodLife Sciences, 1979
- Inhibition of angiotensin converting enzyme activity in cultured endothelial cells by hypoxia.Journal of Clinical Investigation, 1979
- Autonomic cardiovascular control during hypoxia in the dog.Circulation Research, 1979
- Mechanism of Effect of Hypoxia on Renal Water ExcretionJournal of Clinical Investigation, 1978
- Inhibition of renin secretion by vasopressin in unanesthetized sodium-deprived dogsAmerican Journal of Physiology-Legacy Content, 1971
- Influence of Acute Hypoxia on Sympathectomized and Adrenalectomized DogsAmerican Journal of Physiology-Legacy Content, 1954
- The Influence of Respiratory Gas Mixtures on Arterial Pressure and Vascular Reactivity in "Normal" and Hypertensive DogsCirculation, 1951