Zinc and water intake in rats: investigation of adrenergic and opiatergic central mechanisms
Open Access
- 1 October 1999
- journal article
- Published by FapUNIFESP (SciELO) in Brazilian Journal of Medical and Biological Research
- Vol. 32 (10), 1217-1222
- https://doi.org/10.1590/s0100-879x1999001000007
Abstract
We have demonstrated that central administration of zinc in minute amounts induces a significant antidipsogenic action in dehydrated rats as well as in rats under central cholinergic and angiotensinergic stimulation. Here we show that acute third ventricle injections of zinc also block water intake induced by central ß-adrenergic stimulation in Wistar rats (190-250 g). Central inhibition of opioid pathways by naloxone reverses the zinc-induced antidipsogenic effect in dehydrated rats. After 120 min, rats receiving third ventricle injections of isoproterenol (160 nmol/rat) exhibited a significant increase in water intake (5.78 ± 0.54 ml/100 g body weight) compared to saline-treated controls (0.15 ± 0.07 ml/100 g body weight). Pretreatment with zinc (3.0, 30.0 and 300.0 pmol/rat, 45 min before isoproterenol injection) blocked water intake in a dose-dependent way. At the highest dose employed a complete blockade was demonstrable (0.54 ± 0.2 ml/100 g body weight). After 120 min, control (NaAc-treated) dehydrated rats, as expected, exhibited a high water intake (7.36 ± 0.39 ml/100 g body weight). Central administration of zinc blocked this response (2.5 ± 0.77 ml/100 g body weight). Naloxone pretreatment (82.5 nmol/rat, 30 min before zinc administration) reverted the water intake to the high levels observed in zinc-free dehydrated animals (7.04 ± 0.56 ml/100 g body weight). These data indicate that zinc is able to block water intake induced by central ß-adrenergic stimulation and that zinc-induced blockade of water intake in dehydrated rats may be, at least in part, due to stimulation of central opioid peptides.Keywords
This publication has 11 references indexed in Scilit:
- Dentate Gyrus Basket Cell GABAAReceptors Are Blocked by Zn2+via Changes of Their Desensitization Kinetics: AnIn SituPatch-Clamp and Single-Cell PCR StudyJournal of Neuroscience, 1998
- Angiotensin, Thirst, and Sodium AppetitePhysiological Reviews, 1998
- Metal ions and synaptic transmission: Think zincProceedings of the National Academy of Sciences, 1997
- The Neuroendocrinology of Thirst and Salt Appetite: Visceral Sensory Signals and Mechanisms of Central IntegrationFrontiers in Neuroendocrinology, 1997
- Differential Sensitivity of RecombinantN-Methyl-d-Aspartate Receptor Subtypes to Zinc InhibitionMolecular Pharmacology, 1997
- ZnT-3, a putative transporter of zinc into synaptic vesiclesProceedings of the National Academy of Sciences, 1996
- The biochemical basis of zinc physiologyPhysiological Reviews, 1993
- Inhibition of Enkephalin Binding to Opiate Receptors by Zinc Ions: Possible Physiological Importance in the BrainActa Pharmacologica et Toxicologica, 1982
- Inhibition of opiate receptor binding by zinc ions: Possible physiological importance in the hippocampusPeptides, 1981
- Water, Sodium Chloride, and Food Intake Induced by Injections of Cholinergic and Adrenergic Drugs into the Third Ventricle of the Rat BrainExperimental Biology and Medicine, 1970