Distribution of renin activity and angiotensinogen in rat brain. Effects of dietary sodium chloride intake on brain renin.
Open Access
- 1 November 1985
- journal article
- research article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 76 (5) , 1939-1945
- https://doi.org/10.1172/jci112191
Abstract
The purpose of this study was to investigate the biochemistry and the regulation of the brain renin-angiotensin system in the Sprague-Dawley rat. Renin activity and angiotensinogen concentrations (direct and indirect radioimmunoassays) were measured in several brain areas and in neuroendocrine glands. Regional renin activities were measured in separate groups of rats on high and low NaCl diets. Mean tissue renin activities ranged from 2.2 +/- 0.6 to 54.4 +/- 19.7 fmol/mg protein per h (mean of 7 +/- SD), with the highest amounts in pineal, pituitary, and pons-medulla. NaCl depletion increased renin activity in selected regions; based on estimates of residual plasma contamination (despite perfusion of brains with saline), increased renin activity of pineal gland and posterior pituitary was attributed to higher plasma renin. To eliminate contamination by plasma renin, 16-h-nephrectomized rats were also studied. In anephric rats, NaCl depletion increased renin activity by 92% in olfactory bulbs and by 97% in anterior pituitary compared with NaCl-replete state. These elevations could not be accounted for by hyperreninemia. Brain renin activity was low and was unaffected by dietary NaCl in amygdala, hypothalamus, striatum, frontal cortex, and cerebellum. In contrast to renin, highest angiotensinogen concentrations were measured in hypothalamus and cerebellum. Overall, angiotensinogen measurements with the direct and the indirect assays were highly correlated (n = 56, r = 0.96, P less than 0.001). We conclude that (a) NaCl deprivation increases renin in olfactory bulbs and anterior pituitary of the rat, unrelated to contamination by plasma renin; and (b) the existence of angiotensinogen, the precursor of angiotensins, is demonstrated by direct radioimmunoassay throughout the brain and in neuroendocrine glands.This publication has 32 references indexed in Scilit:
- Renin-like immunocytochemical activity in the rat and mouse brainPublished by Elsevier ,2003
- The Brain Renin-Angiotensin SystemAnnual Review of Physiology, 1984
- EFFECTS OF DIETARY SODIUM ON SYMPATHETIC NERVOUS SYSTEM CONTROL OF CARDIOVASCULAR FUNCTIONJournal of Autonomic Pharmacology, 1984
- Identity of angiotensinogen precursors of rat brain and liverNature, 1984
- Chronic infusion of angiotensin II into the olfactory bulb elicits an increase in water intakeBrain Research, 1983
- Regional changes in rat brain angiotensinogen following bilateral nephrectomy.Hypertension, 1982
- Effects of chronic sodium depletion on canine brain renin and cathepsin D activities.Hypertension, 1982
- Angiotensin - Forming Enzyme Active at the Physiological PH in the Brain of Normal and Nephrectomized RatsClinical and Experimental Hypertension. Part A: Theory and Practice, 1982
- Separation of dog brain renin-like activity from acid protease activity.Hypertension, 1979
- Influence of salt and volume on changes in rat brain angiotensinJournal of Pharmacy and Pharmacology, 1975