PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2011 | 71 | 4 |

Tytuł artykułu

Galanin and vasopressin response to hyperosmotic stimulation: in vitro study

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Galanin (Gal) - a neuropeptide present in the nervous system and peripheral tissues - may be involved in the regulation of hypothalamo-neurohypophysial system function. It was shown that centrally injected galanin inhibits osmotically stimulated vasopressin (VP) secretion into the blood and reduces VP mRNA level in the supraoptic (SON) and paraventricular (PVN) hypothalamic nuclei. The aim of the present study in vitro was to investigate the influence of Gal on vasopressin release from isolated rat hypothalamus (Hth), neurohypophysis (NH) or hypothalamo-neurohypophysial explants (Hth-NH). The effect of Gal on VP secretion was studied under conditions of direct osmotic (i.e., Na+-evoked) (series 1) as well as non- osmotic (i.e., K+-evoked) (series 2) stimulation. In series 3, vasopressin response to Gal was studied using the neural tissues obtained from animals drinking 2% NaCl solution for eight days (indirect osmotic stimulation). Gal in a concentration of 10"10 M and 10-8 M inhibited basal VP release from Hth, NH and Hth-NH explants isolated from euhydrated rats as well as from Hth-NH complex of osmotically challenged animals. When the neural tissues obtained from previously salt-loaded rats were incubated in K+-enriched medium the inhibitory effect of Gal was completely blocked. It may be concluded that the effect of Gal is depending on the current functional status of the hypothalamo-neurohypophysial system.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

71

Numer

4

Opis fizyczny

p.496-507,fig.,ref.

Twórcy

autor
  • Department of Neuropeptides Research, Medical University of Lodz, Lodz, Poland
autor
  • Department of Neuropeptides Research, Medical University of Lodz, Lodz, Poland

Bibliografia

  • Arai R, Onteniente B, Trembleau A, Landry M, Calas A (1990) Hypothalamic galanin-immunoreactive neurons projecting to the posterior lobe of the rat pituitary: a com­bined retrograde tracing and immunohistochemical study. J Comp Neurol 299: 405-420.
  • Bartfai T (1995) Galanin. In: Psychopharmacology: The Fourth Generation of Progress (Bloom FE, Kupfer DJ, Eds). Raven Press, New York, NY. p. 563-571.
  • Björkstrand E, Hulting AL, Meister B, Uvnas-Moberg K (1993) Effect of galanin on plasma levels of oxytocin and cholecystokonin. Neuroreport 4: 10-12.
  • Bojanowska E, Guzek JW, Dąbrowski R (1999) Luteinizing hormone-releasing hormone and function of the magno­cellular vasopressinergic system. Neuropeptides 33: 301­305.
  • Bojanowska E, Juszczak M, Guzek JW, Dąbrowski R (2000) Luteinizing hormone-releasing hormone and oxytocin response to hyperosmotic stimulation: In vitro study. Brain Res Bull 52: 303-307.
  • Bourque CW, Oliet SHR, Richard D (1994) Osmoreceptors, osmoreception, and osmoregulation. Front Neuroendocrinol 15: 231-274.
  • Bourque WC, Ciura S, Trudel E, Stachniak THE, Sharif- Naeini R (2007) Neurophysiological characterization of mammalian osmosensitive neurones. Exp Physiol 93.3: 499-505.
  • Branchek TA, Smith KE, Walker MW (1998) Molecular biology and pharmacology of galanin receptors. Ann N Y Acad Sci 863: 94-107.
  • Branchek TA, Smith KE, Christophe G, Walker MW (2000) Galanin receptors subtypes. Trends Pharmacol Sci 21: 109-116.
  • Brewer A, Echevarria DJ, Langel U, Robinson JK (2005) Assessment of new functional roles for galanin in the CNS. Neuropeptides 39: 323-326.
  • Burazin TC, Larm JA, Gundlach AL (2001) Regulation by osmotic stimuli of galanin-R1 receptor expression in magnocellular neurons of the paraventricular and supraop­tic nuclei of the rat. Neuroendocrinology 13: 358-370.
  • Ciosek J, Guzek JW (1992) Thyrotropin-releasing hormone (TRH) and vasopressin and oxytocin release: in vitro as well as in vivo studies. Exp Clin Endocrinol 100: 152-159.
  • Ciosek J, Cisowska A, Dąbrowski R (2003) Galanin affects vasopressin and oxytocin release from the hypothalamo- neurohypophysial system in haemorrhaged rats. J Physiol Pharmacol 54: 233-246
  • Ciosek J, Izdebska K (2009) Thyrotropin-releasing hormone modulates vasopressin and oxytocin synthesis and release from the hypothalamo-neurohypohysial system of differ­ent age male rats. J Physiol Pharmacol 60: 63-70.
  • Cisowska-Maciejewska A, Ciosek J (2005) Galanin influ­ence vasopressin and oxytocin release from the hypo- thalamo-neurohypophysial system of salt-loaded rats. J Physiol Pharmacol 56: 673-688.
  • Depczyński B, Nichol K, Fathi Z, Iismaa T, Shine, J, Cunningham A (1998) Distribution and characterization of cell types expressing GALR2 mRNA in brain and pitu­itary gland. Ann N Y Acad Sci 863: 120-128.
  • Gai WP, Geffen LB, Blessing WW (1990) Galanin immuno- reactive neurons in the human hypothalamus: colocalization with vasopressin-containing neurons. J Comp Neurol 298: 265-280.
  • Galfi M, Balaspiri L, Tóth R, Laszló F, Morschl E, Varga C, Laszló FA (2002) Inhibitory effect of galanin on dop- amine-induced enhanced vasopressin secretion in rat neurohypophyseal tissue cultures. Regul Pept 110: 17-23.
  • Galfi M, Balaspiri L, Tóth R, Pavó I, Csajbók E, Laszló F, Morschl E, Varga C, Laszló FA (2003) Inhibitory effect of galanin on dopamine induced increased oxytocin secre­tion in rat neurohypophyseal tissue cultures. Regul Pept 116: 35-41.
  • Gregg CM, Sladek CD (1984) A compartmentalized, organ- culture hypothalamo-neurohypophysial system for the study of vasopressin release. Neuroendocrinology 38: 397-402.
  • Gundlach AL, Burazin TC (1998) Galanin-galanin receptor systems in the hypothalamic, paraventricular and supraop- tic nuclei. Some recent findings and future challenges. Ann N Y Acad Sci 863: 241-251.
  • Gundlach AL, Burazin TC, Larm JA (2001) Distribution, regulation and role of hypothalamic galanin systems: renewed interest in a pleiotropic peptide family. Clin Exp Pharmacol Physiol 28: 100-105.
  • Gundlach AL (2002) Galanin/GALP and galanin receptors: role in central control of feeding, body weight/obesity and reproduction? Eur J Pharmacol 440: 255-268.
  • Iismaa TP, Shine J (1999) Galanin and galanin receptors. Results Probl Cell Differ 26: 257-291.
  • Izdebska K, Ciosek J (2010) Galanin influences on vaso­pressin and oxytocin release: in vitro studies. Neuropeptides 44: 341-348.
  • Juszczak M (2002) Neurokinin A and the neurohypophysial response to melatonin: in vitro studies. J Physiol Pharmacol 53: 823-834.
  • Juszczak M, Boczek-Leszczyk E, Stempniak B (2007) Effect of melatonin on the vasopressin secretion as influ­ence by tachykinin, NK-1 receptor agonist and antago­nist: in vivo and in vitro studies. J Physiol Pharmacol 58: 829-843.
  • Kadekaro M, Harris J, Frejman S, Terrell ML, Kohler E, Summy-Long JY (1995) Water intake and activity of hypothalamo-neurohypophysial system during osmotic and sodium stimulation in rats. Am J Physiol 268: R651- R657.
  • Koenig JI, Hooi S, Gabriel SM, Martin JB (1989) Potential involvement of galanin in the regulation of fluid homeo­stasis in the rat. Regul Pept 24: 81-86.
  • Kondo K, Murase T, Otake K, Ito M, Oiso Y (1991) Centrally administered galanin inhibits osmotically stim­ulated arginine vasopressin release in conscious rats. Neurosci Lett 22: 245-248.
  • Kondo K, Murase T, Otake K, Ito M, Kurimoto F, Oiso Y (1993) Galanin as a physiological neurotransmitter in hemodynamic control of arginine vasopressin release in rats. Neuroendocrinology 57: 224-249.
  • Kozoriz MG, Kuzminski JB, Hirasawa M, Pittman QJ (2006) Galanin modulates neuronal and synaptic proper­ties in the rat supraoptic nucleus in a use and state depen­dent manner. J Neurophysiol 96: 154-164.
  • Landry M, Roche D, Calas A (1995) Short-term effects of centrally administered galanin on the hyperosmotically stimulated expression of vasopressin in the rat hypothala­mus. An in situ hybridization and immunohistochemistry study. Neuroendocrinology 61: 393-404.
  • Landry M, Roche D, Angebra E, Calas A (1997) Effect of galanin in hypothalamic magnocellular vasopressin and oxytocin. J Endocrinol 155: 467-481.
  • Landry M, Hökfelt T (1998) Subcellular localization of pre- progalanin messenger mRNA in perikarya and axons of hypothalamo-neurohypophyseal magnocellular neurons: an in situ hybridization study. Neuroscience 84: 897­912.
  • Landry M, Roche D, Vila-Porcile E, Calas A (2000) Effects of centrally administered galanin (1-16) on galanin expression in the rat hypothalamus. Peptides 21: 1725­1733.
  • Landry M, Vila-Porcile E, Hökfelt T, Calas A (2003) Differential routing of coexisting neuropeptides in vasopressin neurons. Eur J Neurosci 17: 579-589.
  • Larsen PJ, Jukes KE, Chowdrey HS, Lightman SL, Jessop DS (1994) Neuropeptide-Y potentiates the secretion of vasopressin from the neuroinetrmediate lobe of the rat pituitary gland. Endocrinology 134: 1635-1639.
  • Leng G, Mason WT, Dyer RG (1982) The supraoptic nucle­us as an osmoreceptor. Neuroendocrinology 34: 75-82.
  • Ludwig M, Callahan M F, Morris M (1995) Effects of tetrodotoxin on osmotically stimulated central and peripheral vasopressin and oxytocin release. Neuroendocrinology 62: 619-627.
  • Ludwig M, Williams K, Callahan MF, Morris M (1996) Salt loading abolishes osmotically stimulated vasopressin release within the supraoptic nucleus. Neurosci Lett 215: 1-4.
  • Mechentaler I (2008) Galanin and the neuroendocrine axes. Cell Mol Life Sci 65: 1826-1835.
  • Meister B, Cortes R, Villar MJ, Schalling M, Hökfelt T (1990) Peptides and transmitter enzymes in hypotha- lamic magnocellular neurons after administration of hyperosmotic stimuli: comparison between messenger RNA and peptide/protein levels. Cell Tissue Res 260: 279-297.
  • Melander T, Hökfelt T, Rökaeus L (1986) Distribution of galanin like immunoreactivity in the rat central nervous system. J Comp Neurol 248: 475-517.
  • Melander T, Köhler C, Nillson S, Hökfelt T, Brodin E, Theodorsson E, Bartfai T (1988) Autoradiographic quan­titation and anatomical mapping of 125I-galanin binding sites in the rat central nervous system. J Chem Neuroanat 1: 213-233.
  • Mitchell V, Bouret S, Prevot V, Jennes L, Beauvillain JC (1999) Evidence for expression of galanin receptor Gal- R1 mRNA in certain gonadotropin-releasing neurones of the rostral preoptic area. J Neuroendocrinol 11: 805­812.
  • Molnar A, Balaspiri L, Galfi M, Laszlo F, Varga C, Berko A, Laszlo FA (2005) Inhibitory effects of different galanin compounds and fragments on osmotically and histamine- induced enhanced vasopressin secretion in rats. Eur J Pharmacol 516: 174-179.
  • Morita M, Kita Y, Notsu Y (2001) Mechanism of AVP release and synthesis in chronic salt-loaded rats. J Pharm Pharmacol 53: 1703-1709.
  • Nagyeri G, Galfi M, Radacs M, Molnar AH, Laszlo F, Varga C, Laszlo FA (2009) Effects of galanin-monoaminoergic interactions on vasopressin secretion in rat neurohypo- physeal cell cultures. Regul Pept 155: 76-80.
  • Neuman I, Ludwig M, Engelmann M, Pittman QJ, Landgraf R (1993) Simultaneous microdialysis in blood and brain: Oxytocin and vasopressin release in response to central and peripheral osmotic stimulation and suckling in the rat. Neuroendocrinology 58: 637-645.
  • Papas S, Bourque CW (1997) Galanin inhibits continuous and phasic firing in rat hypothalamic magnocellular neu- rosecretory cells. J Neurosci 17: 6048-6056.
  • Pieribone VA, Xu ZQ, Zhang X, Hokfelt T (1998) Electrophysiologic effects of galanin on neurons of the central nervous system. Ann N Y Acad Sci 863: 264­273.
  • Sanchez A, Bilinski M, Villar MJ, Tramezzani JH (2001) Coexistence of neuropeptides and their possible relation to neuritic regeneration in primary cultures of magnocellular neurons isolated from adult rat supraoptic neurons nuclei. Histochem J 33: 121-128.
  • Waters SM, Krause JE (2000) Distribution of galanin-1, -2, and -3 receptor messenger RNA in central and peripheral rat tissues. Neuroscience 95: 265-271.
  • Yasin SA, Grossman A, Forsling ML (1996) Diurnal varia­tion in the effect of melatonin on neurohypophysial hor­mone release from the rat hypothalamus. Brain Res Bull 39: 1-5.
  • Yasin SA, Forsling ML (1998) Mechanisms of melatonin inhibition of neurohypophysial hormone release from the rat hypothalamus in vitro. Brain Res Bull 45: 53-59.

Uwagi

Rekord w opracowaniu

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-563d1d45-eb32-44f8-bf9f-149dbf0b55c0
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.