CB1 receptor activation in the rat paraventricular nucleus induces bi-directional cardiovascular effects via modification of glutamatergic and GABAergic neurotransmission

被引:0
作者
Emilia Grzęda
Eberhard Schlicker
Marek Toczek
Iwona Zalewska
Marta Baranowska-Kuczko
Barbara Malinowska
机构
[1] Medical University of Białystok,Department of Experimental Physiology and Pathophysiology
[2] University of Bonn,Department of Pharmacology and Toxicology
来源
Naunyn-Schmiedeberg's Archives of Pharmacology | 2017年 / 390卷
关键词
Angiotensin AT; receptor; β; -adrenoceptor; Cannabinoid CB; receptor; GABA; receptor; NMDA receptor; Paraventricular nucleus of hypothalamus;
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摘要
We have shown previously that the cannabinoid receptor agonist CP55940 microinjected into the paraventricular nucleus of the hypothalamus (PVN) of urethane-anaesthetized rats induces depressor and pressor cardiovascular effects in the absence and presence of the CB1 antagonist AM251, respectively. The aim of our study was to examine whether the hypotension and/or hypertension induced by CP55940 given into the PVN results from its influence on glutamatergic and GABAergic neurotransmission. CP55940 was microinjected into the PVN of urethane-anaesthetized rats twice (S1 and S2, 20 min apart). Antagonists of the following receptors, NMDA (MK801), β2-adrenergic (ICI118551), thromboxane A2–TP (SQ29548), angiotensin II–AT1 (losartan) or GABAA (bicuculline), or the NO synthase inhibitor L-NAME were administered intravenously 5 min before S2 alone or together with AM251. The CP55940-induced hypotension was reversed into a pressor response by AM251, bicuculline and L-NAME, but not by the other antagonists. The CP55940-induced pressor effect examined in the presence of AM251 was completely reversed by losartan, reduced by about 50–60 % by MK801, ICI118551 and SQ29548, prevented by bilateral adrenalectomy but not modified by bicuculline and L-NAME. Parallel, but smaller, changes in heart rate accompanied the changes in blood pressure. The bi-directional CB1 receptor-mediated cardiovascular effects of cannabinoids microinjected into the PVN of anaesthetized rats depend on stimulatory glutamatergic and inhibitory GABAergic inputs to the sympathetic tone; the glutamatergic input is related to AT1, TP and β2-adrenergic receptors and catecholamine release from the adrenal medulla whereas the GABAergic input is reinforced by NO.
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页码:25 / 35
页数:10
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  • [11] Metna-Laurent M(2010)Inhibitor of fatty acid amide hydrolase normalizes cardiovascular function in hypertension without adverse metabolic effects Chem Biol 17 1256-1266
  • [12] Bellocchio L(2014)Resveratrol induces acute endothelium-dependent renal vasodilation mediated through nitric oxide and reactive oxygen species scavenging Am J Physiol Renal Physiol 306 F542-F550
  • [13] Marsicano G(2015)Bi-directional CB J Physiol Pharmacol 66 343-353
  • [14] Soria-Gomez E(2012) receptor-mediated cardiovascular effects of cannabinoids in anaesthetized rats: role of the paraventricular nucleus Mol Cell Endocrinol 353 29-36
  • [15] Carruba MO(2011)Regulation of endocannabinoid release by G proteins: a paracrine mechanism of G protein-coupled receptor action Brain Res 1414 1-9
  • [16] Bondiolotti G(2012)Role of brainstem GABAergic signaling in central cannabinoid receptor evoked sympathoexcitation and pressor responses in conscious rats J Pharmacol Exp Ther 341 579-586
  • [17] Picotti GB(2014)Enhancement of rostral ventrolateral medulla neuronal nitric-oxide synthase-nitric-oxide signaling mediates the central cannabinoid receptor 1-evoked pressor response in conscious rats J Adv Res 5 137-145
  • [18] Catteruccia N(2008)Cannabinoid receptor 1 signaling in cardiovascular regulating nuclei in the brainstem: a review Neuroscience 153 605-617
  • [19] Da Prada M(2010)Cardiovascular function of a glutamatergic projection from the hypothalamic paraventricular nucleus to the nucleus tractus solitarius in the rat Res Physiol Neurobiol 174 55-64
  • [20] Chen Q(2015)Modulation of cardiorespiratory function mediated by the paraventricular nucleus Anal Bioanal Chem 407 5261-5272