16
Views
4
CrossRef citations to date
0
Altmetric
Original Article

Central Cardiovascular Regulation and the Role of Vasopressin: A Review

Pages 2197-2217 | Published online: 03 Jul 2009

References

  • Cowley A W, Jr. Vasopressin and cardiovascular regulation. Cardiovascular physiology IV, International Review of Physiology, Vol. 26, A.C. Guyton, J.E. Hall. University Park Press, Baltimore 1982; pp. 189–242
  • Reid I A, Schwartz J. Role of vasopressin in the control of blood pressure. Frontiers in neuroendocrinol-ogy, Vol. 8, L. Martini, W.G. Ganong. Raven Press, NY 1984; pp. 177–197
  • Szczepanska-Sadowska E. Hemodynamic effects of a moderate increase of the plasma vasopressin level in conscious dogs. Pflugers Arch 1973; 338: 313–322
  • Lohmeier T E, Smith M J, Cowley A W, Jr., Manning R D, Guyton A.C. Is vasopressin an important hypertensive hormone?. Hypertension 1981; 3: 416–425
  • Rocha E, Silva M, Rosenberg M. The release of vasopressin in response to haemorrhage and its role in the mechanism of blood oressure regulation. J. Physiol. (Lond.) 1969; 202: 535–57
  • Cowley A W, Jr., Monos E, Guyton A.C. Interaction of vasopressin and the baroreflex system in the regulation of arterial blood pressure in the dog. Circ. Res 1974; 34: 505–514
  • Altura B M, Altura B.T. Vascular smooth muscle and neurohypophysial hormones. Fed. Proc 1977; 36: 1853–1860
  • Altura B M. Humoral, hormonal and myogenic mechanisms in microcirculatory regulation. Microcirculation. Vol. II, G. Kaley, B.M. Altura. University Park Press, Baltimore 1978; pp. 431–502
  • Quillen E W, Granger D NAE. Taylor. Effects of arginine vasopressin on capillary filtration in the catileum. Gastroenterol 1977; 73: 1290–1295
  • Penit J, Faure M, Jard S. Vasopressin and angiotensin II receptors in rat active smooth muscle cells in culture. Am. J. Physiol 1983; 244: E72–E82
  • Montani J-P, J-Liard F, Schoun J, Mohring J. Hemodynamic effects of exogenous and endogenous vasopressin at low plasma concentration in dogs. Circ. Res 1980; 47: 346–355
  • Liard J-F. The baroreceptor reflexes in experimental hypertension. Clin. Exp. Hypertension 1980; 2: 479–498
  • Lumbers E R, Potter E.K. The effects of vasoactive peptides on the carotid cardiac baroreflex. Clin. Exp. Pharmacol. Physiol. Suppl 1982; 7: 45–49
  • Schmid P G, Sharabi F M, Matsuguchi H, Schidt-Davis J, Lund D.D. Vasopressin and the neurogenic control of the circulation. Salt and Hypertension, J. Iwai. Igakushoin, NY 1982; pp. 203–230
  • Hanley M R, Benton H F, Lightman S L, Todd K, Bone E A, Fretton P, Palmer S, Kirk C J, Mitchell R.H. A vasopressin-like peptide in the mammalian sympathetic nervous system. Nature 1984; 309: 258–261
  • Nashold B S, Mannarino E M, Wunderlich M. Pressor-depressor blood pressure response in the cat after intraventricular administration of drugs. Nature 1961; 193: 1297–1298
  • Varma S, Jaju B P, Barghava K. Mechanism of vasopressin induced bradycardia in dogs. Circ. Res 1969; 24: 787–792
  • Doris P A, Bell F.R. Vasopressin in plasma and cerebrospinal fluid of hydrated and dehydrated steers. Neuro-endocrinology 1984; 38: 290–296
  • Wang B C, Share L, Crofton J T, Kiraura T. Changes in vasopressin concentration in plasma and cerebrospinal fluid in response to hemorrhage in anesthetized dogs. Neuroendocrinol 1981; 33: 61–66
  • Pittman Q J, Lawrence D, McLean L. Central effects of arginine vasopressin on blood pressure in rats. Endocrinology 1982; 110: 1058–1060
  • Nussey S S, Ang V T.Y, Jenkins J.S., Chowdrey H S, Bisset G.W. Brattleboro rat adrenal contains vasopressin. Nature 1984; 310: 64–66
  • Martin S, Malkinson T J, Veale W L, Pittman Q.J. Central effect of arginine vasopressin on blood pressure in the rabbit. Can. J. Physiol. Pharmacol. 1983; 61: Axvii–Axviii
  • Zerbe A L, Kirtland S, Faden A I, Feuerstein G. Cent Cerl cardiovascular effects of mammalian neurohypophyseal. Peptides 1983; 4: 627–630
  • Schmid P G, Sharabi F.M. Pressor and heart rate responses to cerebroventricular injection of vasopressin in rats: evidence of sympathetic activation without vasopressin release. Federation Proc 1983; 42: 310
  • Manning M, Sawyer W.H. Design and uses of selective agonistic and antagonistic analogs of jthe neuropeptides oxytocin and vasopressin. Trends in Neurosciences 1984; 7: 6–9
  • Matsuguchi H, Schmid P G, Gordon F J, Johnson A.K. Increases in blood pressure and heart rate after vasopressin administration by microinjection into area of nucleus tractus solitarius of rats. Physiologist 1980; 23(4)29
  • Matsuguchi H, Sharabi F M, Gordon F J, Johnson A K, Schmid P.G. Blood pressure and heart rate responses to microinjection of vasopressin into the nucleus tractus solitarius region of the rat. Neuropharmacology 1982; 21: 687–693
  • Berecek K H, Ople H, Jones R E, Hofbauer K.G. Cardiovascular responses to microinjection of vasopressin into the locus coeruleus of the conscious rat. Federation Proc 1984; 43: 1068
  • Liard J-F, Deriaz O, Tschopp M, Schoun J. Cardiovascular effects of vasopressin infused into the vertebral circulation of conscious dogs. Clin. Sci 1981; 61: 345–347
  • Undesser K P, Hasser E M, Johnson A K, Haywood J R, Bishop V.S. Lesions of the area postrema prevent enhancement of arterial baroreflex inhibition of sympathetic activity by vasopressin in conscious rabbits. Federation Proc 1984; 43: 1067
  • Izdebska E, Jodkowski J, Trzebski A. Central influence of vasopressin on baroreceptor reflex in normotensive rats and its lack in spontaneously hypertensive rats (SHR). Experientia 1982; 38: 594–595
  • Imaizumi T, Thames M.D. Effect of centrally administered AVP on baroreflex control of renal sympathetic nerve activity in rabbits. Federation Proc 1984; 43: 1066
  • Bohus B, Versteeg C A.M, de Jong W., Cransberg K, Kooy J.G. Neurohypophysial hormones and central cardiovascular control, pp. 445–457. In: The neurohypophysis: Structure, function and control. Progress in Brain Research 1983; Vol. 60
  • de Jong W, Versteeg C A.M, Bohus B. Inhibition of pressor responses induced by electrical stimulation of the mesencephalon by vasopressin and oxytocin. Clin. Exp. Hypertension 1984; A6: 139–147
  • Versteeg C AM, Bohus B, de Jong W. Inhibition of centrally-evoked pressor responses by neurohypophyseal peptides and their fragments. Neuropharmacol 1982; 21: 1359–1364
  • Burbach J PH, Lebouille J L.M. Proteolytic conversion of arginine-vasopressin and oxytocin by brain synaptic membranes. Characterization of formed peptides and mechanisms of proteolysis. J. Biol. Chem 1983; 258: 1487–1494
  • Sofroniew M V. Projections from vasopressin oxytocin and neurophysin neurons to neural targets in the rat and human. J. Histochem. Cytochem 1980; 28: 475–478
  • Sofroniew M V, Weindl A, Schrell U, Wetzstein R. Immunohistochemistry of vasopressin, oxytocin, and neurophysin in the hypothalamus and extrahypothalamic regions the human and primate brain. Acta Histochem 1981; Suppl. 24: 79–95
  • Zerihun L, Harris M. An electrophysiological analysis of caudally-projecting neurones from the hypothalamic paraventricula nucleus in the rat. Brain Res 1983; 261: 13–20
  • Buijs R M, Swaab D.F. Immuno-electron microscopical demonstration of vasopressin and oxytocin synapses in the limbic system of the rat. Cell Tissue Res 1979; 204: 355–365
  • Dorsa D M, Majumdar L A, Petracca F M, Baskin D G, Cornett L.E. Characterization and localization of 3H-arginine8- vasopressin binding to rat kidney and brain tissue. Peptides 1983; 4: 699–706
  • Sofroniew M V. Vasopressin and oxytocin in the mammalian brain and spinal cord. Trends in Neurosciences 1983; 6: 467–472
  • Voorn P, Buijs R.M. An immuno-electron microscopical study comparing vasopressin, oxytocin, substance P and enkephalin containing nerve terminals in the nucleus of the solitary tract of the rat. Brain Res 1983; 270: 169–173
  • Robinson I CAF. Neurohypophysial peptides in cerebrospinal fluid. In: The Neurophypophysis: Structure, Function and Control. Progress in Brain Research 1983; Vol. 60: pp. 129–145
  • Doris P A. Vasopressin and the regulation of evaporative water loss and body temperature in the cat. Brain Res 1982; 251: 127–136
  • Szczepanska-Sadowska E, Simon-Oppermann C, Gray D A, Simon E. Plasma and cerebrospinal fluid vasopressin and osmolality in relation to thirst. Pflugers Arch 1984; 400: 294–299
  • Wang B C, Share L, Crofton J T, Kimura T. Effect of intravenous and intracerebroventricular infusion of hypertonic solutions on plasma and cerebrospinal fluid vasopressin concentrations. Neuroendocrinol 1982; 34: 215–221
  • Mens W BJ, Bouman H J, Bakker E A.D, van Wimersma Greidanus TJ. Differential effects of various stimuli on AVP levels in blood and cerebrospinal fluid. Europ. J. Pharmacol 1980; 68: 89–92
  • Reppert S M, Schwartz W J, Artman H G, Fisher D.A. Comparison of the temporal profiles of vasopressin in the cerebrospinal fluid of the cat monkey and rat. Brain Res 1983; 261: 341–345
  • Jones P M, Robinson I.C.A.F. Differential clearance of neurophysin and neuorhypophysial peptides from the cerebrospinal fluid in conscious guinea pigs. Neuroendocrinol 1983; 34: 297–302
  • Doris P A. Vasopressin and central integrative processes. Neuroendocrinol 1984; 38: 75–85
  • Mohring J, Schoun J, Kintz J, I, Robinson C A.F, McNeill J.R. Vasopressin and oxytocin content are decreased in the brain stems of spontaneously hypertensive rats. Neuroendocrinol 1983; 36: 457–461
  • Raschar W, Lang R E, Fink B, Ganten D, Unger T, Gross F. Reduced synthesis of arginine vasopressin in spontaneously hypertensive rats. Clin. Sci 1982; 63: 117s–119s
  • Rascher W, Lang R E, Unger T, Ganten D, Gross F. Vasopressin in brain of spontaneously hypertensive rats. Am. J. Physiol 1982; 242: H496–H499
  • Morris M, Keller M, Sundberg D.K. Changes in paraventricular vasopressin and oxytocin content during the development of spontaneous hypertension. Hypertension 1983; 5: 476–581
  • Feuerstein G, Zerbe R L, Ben-Ishay D, Kopin I J, Jacobowitz D.M. Catecholamines and vasopressin in hindbrain nuclei of hypertension prone and resistant rats. Brain Res 1982; 251: 169–173
  • Negro-Vilar A, Saavedra J.M. Changes in brain somatostatin and vasopressin levels after stress in spontaneously hypertensive and Wistar-Kyoto rats. Brain Res. Bull 1980; 5: 353–358

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.