Changes in drinking behavior caused by superior cervical ganglionectomy and pinealectomy in rats

The effect of superior cervical ganglionectomy (SCGx) or pinealectomy (Px) on drinking behavior was examined in rats subjected to a restricted photoperiod (i.e. 4 h of light per day). Both in male and female rats SCGx depressed water intake significantly from 1 to 3 days after surgery. After osmolar...

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Autor principal: Gejman, P.V
Otros Autores: Cardinali, D.P, Finkielman, S., Nahmod, V.E
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 1981
Acceso en línea:Registro en Scopus
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024 7 |2 cas  |a isoprenaline, 299-95-6, 51-30-9, 6700-39-6, 7683-59-2; Isoproterenol, 7683-59-2; Sodium Chloride, 7647-14-5 
040 |a Scopus  |b spa  |c AR-BaUEN  |d AR-BaUEN 
030 |a JASYD 
100 1 |a Gejman, P.V. 
245 1 0 |a Changes in drinking behavior caused by superior cervical ganglionectomy and pinealectomy in rats 
260 |c 1981 
270 1 0 |m Cardinali, D.P.; Instituto de Investigaciones Medicas, Facultad de Medicina, UBAArgentina 
506 |2 openaire  |e Política editorial 
504 |a Baum, Light synchronization of rat feeding rhythms following sympathetotomy or pinealectomy (1970) Physiol. Behav., 5, pp. 325-329 
504 |a Butterfield, Neufeld, Cyclic nucleotides in the rabbit cornea following superior cervical ganglionectomy (1977) Exp. Eye Res., 25, pp. 427-433 
504 |a Buttle, The effect of anterior cervical ganglionectomy on the seasonal variation in prolactin concentration in goats (1977) Neuroendocrinology, 23, pp. 121-128 
504 |a Cardinali, Faigón, Scacchi, Moguilevsky, Failure of melatonin to increase plasma prolactin levels in rats subjected to superior cervical ganglionectomy or pinealectomy (1979) J. Endocr., 82, pp. 315-319 
504 |a Cardinali, Vacas, Fortis, Stefano, Superior cervical ganglionectomy depresses norepinephrine uptake increases the density of α-adrenoreceptor sites and induces supersensitivity to adrenergic drugs in rat medial basal hypothalamus (1981) Neuroendocrinology, , in press 
504 |a Charlton, Gtocock, Ostberg, The effect of pinealectomy and superior cervical ganglionectomy on the testis of the vole, Microtus agrestis (1976) J. Reprod. Fert., 48, pp. 377-379 
504 |a Falck, Mchedlishvid, Owman, Histochemical demonstration of adrenergic nerves in cortex-pia of rabbit (1965) Acta Pharmacol. (Kbh.), 23, pp. 135-142 
504 |a Fendler, Verves, Stark, Lissák, Effect of cervical sympathectomy on water balance in pituitary stalk-sectioned rats (1972) Acta physiol. hung., 42, pp. 61-65 
504 |a Fitzsimons, Thirst (1972) Physiol. Rev., 52, pp. 468-561 
504 |a Häggendal, The disappearance of dopamine-β-hydroxylase from the rat salivary glands after extirpation of the superior cervical ganglion (1980) Journal of Neural Transmission, 48, pp. 249-259 
504 |a Haulica, Branisteanu, Resca, Stratone, Berbelue, Balan, Ionescu, A renin-like activity in pineal gland and hypophysis (1975) Endocrinology, 96, pp. 508-510 
504 |a Herbert, The pineal gland and light-induced oestrus in ferrets (1969) J. Endocr., 43, pp. 625-636 
504 |a Houpt, Epstein, The complete dependence of beta-adrenergic drinking on the renal dipsogen (1971) Physiol. Behav., 7, pp. 899-902 
504 |a Kissileff, Food-associated drinking in the rat (1969) J. comp. Physiol., 67, pp. 284-300 
504 |a Kleeman, Berl, Neurohypophysial hormones: vasopressin (1979) Endocrinology, 1, pp. 253-276. , J.L. De Groot, G.F. Cahill Jr., W.D. Odell, L. Martini, J.I. Potts Jr., D.H. Nelson, E. Steinberger, A.I. Winegrad, Grune and Stratton, New York 
504 |a Kuszak, Rodin, A new technique for pinealectomy for adult rats (1977) Experientia, 33, p. 283 
504 |a Lincoln, Photoperiodic control of seasonal breeding in the ram: participation of the cranial sympathetic nervous system (1979) J. Endocr., 82, pp. 135-147 
504 |a Lindvall, Edvinson, Owman, Sympathetic nervous control of cerebrospinal fluid production from the choroid plexus (1978) Science, 201, pp. 176-178 
504 |a McDonald, Mitchell, The innervation of glomus cells, ganglion cells and blood vessels in the rat carotid body: a quantitative ultrastructural analysis (1975) J. Neurocytol., 4, pp. 177-230 
504 |a Milline, The role of the pineal gland in stress (1980) Journal of Neural Transmission, 47, pp. 191-220 
504 |a Nahmod, Finkielman, Gorodner, Goldstein, On the neuronal localization and the physiological variations of brain angiotensin (1977) The Central Actions of Angiotensin and related Hormones, pp. 573-580. , J.P. Buckley, G.M. Ferrario, Pergamon Press, Oxford, New York 
504 |a Nahmod, Lascano, Pirola, Balda, Alvarez, Gejman, Cardinali, Efecto inhibitorio del simpático sobre la actividad del sistema renina-angiotensina en la pineal de la rata (1980) Medicina, 40, pp. 770-771 
504 |a Owman, Characterization of adrenergic receptors, with examples from some sympathetically innervated structures (1979) Acta Pharmacol. (Kbh.), 44, pp. 5-16 
504 |a Owman, Edvinson, Falck, Nielsen, Amine metabolism in brain vessels, with particular regard to autonomic innervation and blood brain barrier (1974) Pathology of Cerebral Microcirculation, pp. 184-189. , J. Cervós-Navarro, Walter de Gruyter, Berlin 
504 |a Quay, (1974) Pineal Chemistry in Cellular and Physiological Mechanisms, p. 430. , Charles C. Thomas, Springfield 
504 |a Ramsay, D.J., Beta-adrenergic thirst and its relation to the renin-angiotensin system; Reiter, The pineal and its hormones in the control of reproduction in mammals (1980) Endocrine Rev., 1, pp. 109-131 
504 |a Reiter, Hester, Interrelationships of the pineal gland, the superior cervical ganglia and the photoperiod in the regulation of the endocrine systems of hamsters (1966) Endocrinology, 79, pp. 1160-1170 
520 3 |a The effect of superior cervical ganglionectomy (SCGx) or pinealectomy (Px) on drinking behavior was examined in rats subjected to a restricted photoperiod (i.e. 4 h of light per day). Both in male and female rats SCGx depressed water intake significantly from 1 to 3 days after surgery. After osmolar (i.p. 5% NaCl) or non-osmolar stimuli (s.c. isoproterenol) SCGx female rats exhibited a depressed response in water and NaCl intake, an effect not observed in male rats. Castration of male or female rats did not change their drinking behavior response to thirst stimuli. Px did not mimic SCGx in its effects on drinking behavior; moreover in sham-Px rats the water intake fell significantly after craniotomy. Following the injection of isoproterenol or i.p. hypertonic saline, the drinking behavior was the same in Px or sham-Px animals. To assess whether the effects of SCGx needed the presence of the pineal gland, Px or sham-Px rats were subjected to SCGx 9 days later. In both groups SCGx depressed water intake; however the inhibition that followed ganglia removal in Px rats was greater than that observed in animals with a pineal gland. Water and NaCl intake following isoproterenol or i.p. hypertonic saline were similar in both experimental groups. These results suggest that SCGx affects drinking behavior in part by pathways other than pineal denervation. © 1981.  |l eng 
593 |a Instituto de Investigaciones Medicas, Facultad de Medicina, UBA, Argentina 
593 |a Centro de Estudios Farmacológicos y de Principios Naturales (CEFAPRIN), Buenos Aires, Argentina 
690 1 0 |a DRINKING BEHAVIOR 
690 1 0 |a PINEAL GLAND 
690 1 0 |a STRESS RESPONSES 
690 1 0 |a SUPERIOR CERVICAL GANGLIA 
690 1 0 |a ISOPRENALINE 
690 1 0 |a ANIMAL EXPERIMENT 
690 1 0 |a AUTONOMIC NERVOUS SYSTEM 
690 1 0 |a CENTRAL NERVOUS SYSTEM 
690 1 0 |a DRINKING 
690 1 0 |a ENDOCRINE SYSTEM 
690 1 0 |a INTRAPERITONEAL DRUG ADMINISTRATION 
690 1 0 |a PINEALECTOMY 
690 1 0 |a RAT 
690 1 0 |a SUBCUTANEOUS DRUG ADMINISTRATION 
690 1 0 |a SUPERIOR CERVICAL GANGLIONECTOMY 
690 1 0 |a ANIMAL 
690 1 0 |a DRINKING BEHAVIOR 
690 1 0 |a FEMALE 
690 1 0 |a GANGLIA, SYMPATHETIC 
690 1 0 |a ISOPROTERENOL 
690 1 0 |a MALE 
690 1 0 |a PINEAL GLAND 
690 1 0 |a RATS 
690 1 0 |a RATS, INBRED STRAINS 
690 1 0 |a SODIUM CHLORIDE 
700 1 |a Cardinali, D.P. 
700 1 |a Finkielman, S. 
700 1 |a Nahmod, V.E. 
773 0 |d 1981  |g v. 4  |h pp. 249-259  |k n. 3  |p J. Auton. Nerv. Syst.  |x 01651838  |w (AR-BaUEN)CENRE-5826  |t Journal of the Autonomic Nervous System 
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856 4 0 |u https://hdl.handle.net/20.500.12110/paper_01651838_v4_n3_p249_Gejman  |y Handle 
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