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PMID: 233310 Published · ppublish English Comparative Study Journal Article

Fast excitatory postsynaptic currents in voltage-clamped mammalian sympathetic ganglion neurones.

Journal of the autonomic nervous system ·Vol. 1 ·No. 2 ·1979-12-00 ·Pages 127-37

Selyanko AA, Derkach VA, Skok VI

Abstract

Fast excitatory postsynaptic currents (EPSCs) were recorded in voltage-clamped neurones of isolated superior cervical ganglion of the rabbit. The rise time, decay time and whole duration of EPSC, as well as miniature EPSC, were shorter than those of corresponding postsynaptic potentials. Characteristic impedance for EPSC was 5.5 +/- 1.1 M omega, and was a few times lower than for current evoked by iontophoretic application of ACh. The rise time of EPSC was 2.0 +/- 0.2 msec, the time constant of decay was 3.6 +/- 0.5 msec, and the mean amplitude of EPSC was -5.5 +/- 1.0 nA at the resting potential level (-53.8 +/- 1.4 mV) and at 36 degrees C. Amplitude of EPSC varied with membrane potential almost linearly at negative potentials, non-linearly at positive potentials, and nullified at -8.9 +/- 1.8 mV. The decay of EPSC was exponential over the most of its time course and the rate constant of decay (alpha) varied exponentially with membrane potential according to the relationship alpha(V) = B exp(AV), with A = 0.00716 +/- 0.00101 mV-1 and B = 0.46 +/- 0.07 msec-1. The voltage sensitivity of EPSC decay is interpreted in terms of voltage sensitivity in ionic channel lifetimes.

MeSH Terms
Animals Anura Aplysia/physiology Cats Evoked Potentials Feedback Ganglia/physiology Ganglia, Sympathetic/physiology Ion Channels/physiology Membrane Potentials Neuromuscular Junction/physiology Rabbits Species Specificity Synaptic Transmission
Chemicals
Ion Channels
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Selyanko A A
Derkach V A
Skok V I
Article Info
Journal
Journal of the autonomic nervous system
Abbr.
J Auton Nerv Syst
ISSN
0165-1838
Published
1979-12-00
Pages
127-37
Language
English
Region
Netherlands
NLM ID
8003419
Subset
IM
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