Literature DB >> 10520132

Kappa-opioid receptor activation inhibits post-spike depolarizing after-potentials in rat supraoptic nucleus neurones in vitro.

C H Brown1, M Ghamari-Langroudi, G Leng, C W Bourque.   

Abstract

Endogenous agonists acting at kappa-opioid receptors modulate the discharge activity of hypothalamic supraoptic nucleus vasopressin cells in vivo. Phasic activity in vasopressin cells is known to depend critically on intrinsic mechanisms involving post-spike depolarizing after-potentials and we hypothesized that inhibition of phasic bursting by an endogenous kappa-agonist may result from reducing the magnitude of depolarizing after-potentials. To investigate this possibility, intracellular sharp electrode recordings were obtained from supraoptic nucleus cells impaled in superfused explants of rat hypothalamus. Bath application of the selective kappa-agonist, U50,488H (0.1-1 microM), decreased the spontaneous firing rate of magnocellular neurosecretory cells (by 94. 0+/-4.5% at 1 microM, mean+/-SEM; P = 0.02, n = 4). U50,488H did not alter membrane potential (0.9+/-0.8 mV hyperpolarization at 1 microM, P = 0.17, n = 8) or input resistance (11.0+/-4.5% increase at 1 microM, P = 0.09, n = 5). U50,488H (0.1 and 1 microM, both n = 5) reduced depolarizing after-potential amplitude (by 29.9+/-9.3 and 78.0+/-10. 6%, respectively, P<0.001) in eight cells in which the baseline membrane potential was kept constant by dc-current injection and in which a depolarizing after-potential was evoked every 25-40 s by a brief (40-80 ms) train of 3-6 action potentials (the number of spikes in the trains was kept constant for each cell). Thus, kappa-opioid receptor activation reduces depolarizing after-potential amplitude in supraoptic nucleus cells and this may underlie the reduction in burst duration of vasopressin cells caused by an endogenous kappa-agonist in vivo.

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Year:  1999        PMID: 10520132     DOI: 10.1046/j.1365-2826.1999.00419.x

Source DB:  PubMed          Journal:  J Neuroendocrinol        ISSN: 0953-8194            Impact factor:   3.627


  13 in total

1.  Autocrine feedback inhibition of plateau potentials terminates phasic bursts in magnocellular neurosecretory cells of the rat supraoptic nucleus.

Authors:  Colin H Brown; Charles W Bourque
Journal:  J Physiol       Date:  2004-04-23       Impact factor: 5.182

2.  Voltage-dependent kappa-opioid modulation of action potential waveform-elicited calcium currents in neurohypophysial terminals.

Authors:  Cristina M Velázquez-Marrero; Héctor G Marrero; José R Lemos
Journal:  J Cell Physiol       Date:  2010-10       Impact factor: 6.384

3.  Neuronal hyperexcitability in a mouse model of SCN8A epileptic encephalopathy.

Authors:  Luis F Lopez-Santiago; Yukun Yuan; Jacy L Wagnon; Jacob M Hull; Chad R Frasier; Heather A O'Malley; Miriam H Meisler; Lori L Isom
Journal:  Proc Natl Acad Sci U S A       Date:  2017-02-13       Impact factor: 11.205

Review 4.  Performance, properties and plasticity of identified oxytocin and vasopressin neurones in vitro.

Authors:  W E Armstrong; L Wang; C Li; R Teruyama
Journal:  J Neuroendocrinol       Date:  2010-02-20       Impact factor: 3.627

5.  Ionic basis of the caesium-induced depolarisation in rat supraoptic nucleus neurones.

Authors:  M Ghamari-Langroudi; C W Bourque
Journal:  J Physiol       Date:  2001-11-01       Impact factor: 5.182

6.  Effects of the endogenous opioid peptide, endomorphin 1, on supraoptic nucleus oxytocin and vasopressin neurones in vivo and in vitro.

Authors:  N Doi; C H Brown; H D Cohen; G Leng; J A Russell
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Review 7.  Electrophysiological properties of identified oxytocin and vasopressin neurones.

Authors:  William E Armstrong; Robert C Foehring; Matthew K Kirchner; Celia D Sladek
Journal:  J Neuroendocrinol       Date:  2019-02-14       Impact factor: 3.627

8.  Flufenamic acid blocks depolarizing afterpotentials and phasic firing in rat supraoptic neurones.

Authors:  Masoud Ghamari-Langroudi; Charles W Bourque
Journal:  J Physiol       Date:  2002-12-01       Impact factor: 5.182

9.  Nalfurafine, a G-Protein-Biased KOR (Kappa Opioid Receptor) Agonist, Enhances the Diuretic Response and Limits Electrolyte Losses to Standard-of-Care Diuretics.

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Journal:  Hypertension       Date:  2021-12-02       Impact factor: 10.190

Review 10.  Physiological regulation of magnocellular neurosecretory cell activity: integration of intrinsic, local and afferent mechanisms.

Authors:  C H Brown; J S Bains; M Ludwig; J E Stern
Journal:  J Neuroendocrinol       Date:  2013-08       Impact factor: 3.627

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