Repository of Research and Investigative Information

Repository of Research and Investigative Information

Bam University of Medical Sciences

Ascorbic acid antagonizes the sedative effect of diazepam possibly through inhibition of GABA(Aρ1) and GABA(B1) receptors

(2020) Ascorbic acid antagonizes the sedative effect of diazepam possibly through inhibition of GABA(Aρ1) and GABA(B1) receptors. Cellular and Molecular Biology. pp. 15-19. ISSN 01455680 (ISSN)

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Official URL: https://www.scopus.com/inward/record.uri?eid=2-s2....

Abstract

Gamma-aminobutyric acid (GABA) receptors belong to a ligand-gated ion channels family and are markedly expressed at the axon terminals of retinal bipolar cells. Ascorbic acid (AA), a known and vital antioxidant in the brain can modulate GABA receptors. We postulate that AA would antagonize benzodiazepines' effect via GABA receptor(s) interacting pathway. Here, we evaluated the modulatory sedative effect of AA on diazepam (DZP)'s anxiolytic effects in Swiss albino mice. The anxiolytic study was accomplished by using open-field, hole-board, and by swing and light-dark tests taking DZP as a standard anxiolytic drug. To understand the possible modulatory effects of AA, animals were co-administered with AA and DZP and/or its antagonist flumazenil (FLU). Additionally, an in-silico study was undertaken against GABA(A1), GABA(B1), and GABA(Aρ1) receptors. Data suggest that AA at 25 mg/kg (i.p.) increased (p<0.05) the number of field cross, rearing, number of hole cross, and swing and residence, while decreased grooming and dark residence parameters as compared to the control and DZP groups. In addition, AA and/or FLU combined with DZP (2 mg/kg, i.p.) reversed DZP-mediated sedative effects in mice. Results from in silico study suggest that AA has good interactions with GABA(Aρ1) and GABA(B1) receptors. In conclusion, DZP is a GABA receptor agonist and AA may reverse DZP-mediated sedative effects in a non-competitive binding fashion in mice through inhibition of GABA(Aρ1) and GABA(B1) receptors. Copyright: © 2020 by the C.M.B. Association. All rights reserved.

Item Type: Article
Keywords: Anxiety Ascorbic acid Docking GABA receptors Mus musculus 4 aminobutyric acid A receptor alpha1 4 aminobutyric acid A receptor beta1 diazepam distilled water flumazenil 4 aminobutyric acid receptor hypnotic sedative agent albino mouse animal cell animal experiment Article controlled study grooming hole board test light-dark test locomotion molecular docking mouse nonhuman number of rearings open field test protein interaction tranquilizing activity animal chemistry computer simulation metabolism Animals Hypnotics and Sedatives Mice Receptors, GABA
Divisions:
Page Range: pp. 15-19
Journal or Publication Title: Cellular and Molecular Biology
Journal Index: Scopus
Volume: 66
Number: 4
Identification Number: https://doi.org/10.14715/cmb/2020.66.4.3
ISSN: 01455680 (ISSN)
Depositing User: مهندس مهدی شریفی
URI: http://eprints.mubam.ac.ir/id/eprint/1233

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