The Japanese Journal of Pharmacology · 1968 · 22 citations · 10 references
BiologyAnimal PhysiologyEngineeringSodium HomeostasisAquaculturePhysiologyWater BiologySea WaterOceanographyAquatic OrganismFresh Water FishMarine BiologyOsmoregulationSalt Adaptation
The role of the renin-angiotensin system as an aldosterone stimulating factor in the mammal is well-established (1, 2). A high salt intake diminishes the demand to conserve sodium in the body, and the secretion of aldosterone is decreased by the control of renin-angiotensin system. Decreased renin activity on a high salt diet has been shown in the mammal (3-5). In 1942, Friedman, Kaplan, and Williams found the absence of renin in the kidney of marine fish, but detected it in the fresh water fish (6). If this be true, renin-angiotensin would play a role in salt adaptation of the fish. We kept Japanese eels in both fresh and sea water for 3 to 11 weeks, and determined the renin content of the kidney, to see if euryhalinity is controlled by renin in eels. We found a decrease in renin of those kept in sea water, and suggested that the renin-angiotensin system plays a part in salt adaptation (7). The purpose of this paper is to give details of these studies on Japanese eels and other euryhaline fishes adapted to sea water.
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Influence of sodium deprivation and loading on the plasma‐renin in man
Justin Brown, D. L. Davies, A. F. Lever et al. · The Journal of Physiology · 1964 · 120 citations · Full text