ACTIVATION OF SEROTONIN(1A) RECEPTORS INHIBITS MIDBRAIN PERIAQUEDUCTAL GRAY NEURONS OF THE RAT

Citation
Mm. Behbehani et al., ACTIVATION OF SEROTONIN(1A) RECEPTORS INHIBITS MIDBRAIN PERIAQUEDUCTAL GRAY NEURONS OF THE RAT, Brain research, 612(1-2), 1993, pp. 56-60
Citations number
39
Categorie Soggetti
Neurosciences
Journal title
ISSN journal
00068993
Volume
612
Issue
1-2
Year of publication
1993
Pages
56 - 60
Database
ISI
SICI code
0006-8993(1993)612:1-2<56:AOSRIM>2.0.ZU;2-C
Abstract
The midbrain periaqueductal gray (PAG) is involved in a variety of fun ctions including pain modulation, vocalization, autonomic control, fea r and anxiety. This area contains serotonin receptors, particularly 5- HT1A that are known to play a role in the above functions. The goals o f this study were to characterize the effects of 8-OH-DPAT, a selectiv e 5-HT1A agonist, on the firing characteristics and membrane propertie s of PAG neurons. Both in vivo and in vitro preparations were used. Th e effects of 8-OH-DPAT on baseline activity of 91 neurons were tested in the in vivo preparation. In 50/91 cells, 8-OH-DPAT produced a decre ase in the firing rate that ranged between 21 and 98% (mean +/- S.E.M. decrease of 49 +/- 1.9%). This inhibitory effect was dose dependent a nd could be blocked by spiperone. In 10/91 cells, 8-OH-DPAT produced a n increase in the firing rate that ranged between 13 and 290%, with me an increase of 83 +/- 7.4%. The baseline firing rate of the remaining 31 cells was not affected by 8-OH-DPAT. In the PAG slice preparation, the effects of 8-OH-DPAT on synaptic and membrane properties of 17 PAG neurons were tested using whole-cell voltage clamp-recording procedur es. In 14 cells, application of 8-OH-DPAT produced hyperpolarization t hat ranged between 6 and 21 mV, with mean of 8.4 +/- 2.0 mV. This hype rpolarization was associated with a decrease in membrane impedance tha t ranged between 8 and 45%, with mean decrease of 21.6 +/- 4.5%. The r emaining three neurons did not respond to 8-OH-DPAT. Under voltage cla mp conditions and in the presence of TTX, application of 8-OH-DPAT pro duced a reversal potential that ranged between -70 and -90 mV, with me an of -80 +/- 2.68 mV. In conclusion: (1) 8-OH-DPAT has a strong influ ence on neurons in all regions of the PAG in particular on cells locat ed in the dorsal PAG; (2) in both in vivo and in vitro preparations, t he 5-HT1A-mediated response of PAG neurons is inhibitory; and (3) the inhibitory effect of 5-HT1A is associated with hyperpolarization of th e cell membrane that is likely due to an increase in K conductance.