Conductance of GABAA channels activated by pentobarbitone in hippocampal neurons from newborn rats
Date
2003
Authors
Eghbali, Mansoureh
Birnir, Bryndis
Gage, Peter
Journal Title
Journal ISSN
Volume Title
Publisher
Cambridge University Press
Abstract
Neurons were obtained from the CA1 region of the hippocampus of newborn rats and maintained in culture. Channels were activated by pentobarbitone in cell-attached, inside-out or outside-out patches, normally by applying pentobarbitone in flowing bath solution. Currents were outwardly rectifying and blocked by bicuculline, properties of GABAA channels in these cells. Maximum channel conductance increased as pentobarbitone concentration was increased to 500 μM but conductance then decreased as pentobarbitone concentration was raised further. The best fit of a Hill-type equation to the relationship between maximum channel conductance and pentobarbitone concentration (up to 500 μM) gave an EC50 of 41 μM, a maximum conductance of 36 pS and a Hill coefficient of 1.6. Bicuculline decreased the maximum conductance of the channels activated by pentobarbitone, with an IC50 of 224 μM. Diazepam increased channel conductance, with a maximum effect being obtained with 1 μM diazepam. Diazepam (1 μM) decreased the EC50 of the pentobarbitone effect on channel conductance from 41 μM to 7.2 μM and increased maximum conductance to 72 pS. We conclude that GABAA channel conductance is related to the concentration of the allosteric agonist pentobarbitone.
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Keywords
Keywords: 4 aminobutyric acid A receptor; bicuculline; chloride channel; chloride ion; diazepam; pentobarbital; 4 aminobutyric acid; 4 aminobutyric acid A receptor; 4 aminobutyric acid receptor blocking agent; benzodiazepine receptor affecting agent; allosterism; a
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Source
Journal of Physiology
Type
Journal article