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Extra-Synaptic GABA(A) Receptor Potentiation and Neurosteroid-Induced Learning Deficits Are Inhibited by GR3027, a GABA(A) Modulating Steroid Antagonist

Objectives In Vitro: To study the effects of GR3027 (golexanolone) on neurosteroid-induced GABA-mediated current responses under physiological GABAergic conditions with recombinant human α5β3γ2L and α1β2γ2L GABA(A) receptors expressed in human embryonic kidney cells, using the response patch clamp t...

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Autores principales: Bengtsson, Sara K. S., Sjöstedt, Jessica, Malinina, Evgenya, Das, Roshni, Doverskog, Magnus, Johansson, Maja, Haage, David, Bäckström, Torbjörn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10604444/
https://www.ncbi.nlm.nih.gov/pubmed/37892178
http://dx.doi.org/10.3390/biom13101496
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author Bengtsson, Sara K. S.
Sjöstedt, Jessica
Malinina, Evgenya
Das, Roshni
Doverskog, Magnus
Johansson, Maja
Haage, David
Bäckström, Torbjörn
author_facet Bengtsson, Sara K. S.
Sjöstedt, Jessica
Malinina, Evgenya
Das, Roshni
Doverskog, Magnus
Johansson, Maja
Haage, David
Bäckström, Torbjörn
author_sort Bengtsson, Sara K. S.
collection PubMed
description Objectives In Vitro: To study the effects of GR3027 (golexanolone) on neurosteroid-induced GABA-mediated current responses under physiological GABAergic conditions with recombinant human α5β3γ2L and α1β2γ2L GABA(A) receptors expressed in human embryonic kidney cells, using the response patch clamp technique combined with the Dynaflow™ application system. With α5β3γ2L receptors, 0.01–3 μM GR3027, in a concentration-dependent manner, reduced the current response induced by 200 nM THDOC + 0.3 µM GABA, as well as the THDOC-induced direct gated effect. GR3027 (1 μM) alone had no effect on the GABA-mediated current response or current in the absence of GABA. With α1β2γ2L receptors, GR3027 alone had no effect on the GABA-mediated current response or did not affect the receptor by itself. Meanwhile, 1–3 µM GR3027 reduced the current response induced by 200 nM THDOC + 30 µM GABA and 3 µM GR3027 that induced by 200 nM THDOC when GABA was not present. Objectives In Vivo: GR3027 reduces allopregnanolone (AP)-induced decreased learning and anesthesia in male Wistar rats. Rats treated i.v. with AP (2.2 mg/kg) or vehicle were given GR3027 in ratios of 1:0.5 to 1:5 dissolved in 10% 2-hydroxypropyl-beta-cyclodextrin. A dose ratio of AP:GR3027 of at least 1:2.5 antagonized the AP-induced decreased learning in the Morris Water Mase (MWM) and 1:7.5 antagonized the loss of righting reflex (LoR). GR3027 treatment did not change other functions in the rat compared to the vehicle group. Conclusions: GR3027 functions in vitro as an inhibitor of GABA(A) receptors holding α5β3γ2L and α1β2γ2L, in vivo, in the rat, as a dose-dependent inhibitor toward AP’s negative effects on LoR and learning in the MWM.
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spelling pubmed-106044442023-10-28 Extra-Synaptic GABA(A) Receptor Potentiation and Neurosteroid-Induced Learning Deficits Are Inhibited by GR3027, a GABA(A) Modulating Steroid Antagonist Bengtsson, Sara K. S. Sjöstedt, Jessica Malinina, Evgenya Das, Roshni Doverskog, Magnus Johansson, Maja Haage, David Bäckström, Torbjörn Biomolecules Article Objectives In Vitro: To study the effects of GR3027 (golexanolone) on neurosteroid-induced GABA-mediated current responses under physiological GABAergic conditions with recombinant human α5β3γ2L and α1β2γ2L GABA(A) receptors expressed in human embryonic kidney cells, using the response patch clamp technique combined with the Dynaflow™ application system. With α5β3γ2L receptors, 0.01–3 μM GR3027, in a concentration-dependent manner, reduced the current response induced by 200 nM THDOC + 0.3 µM GABA, as well as the THDOC-induced direct gated effect. GR3027 (1 μM) alone had no effect on the GABA-mediated current response or current in the absence of GABA. With α1β2γ2L receptors, GR3027 alone had no effect on the GABA-mediated current response or did not affect the receptor by itself. Meanwhile, 1–3 µM GR3027 reduced the current response induced by 200 nM THDOC + 30 µM GABA and 3 µM GR3027 that induced by 200 nM THDOC when GABA was not present. Objectives In Vivo: GR3027 reduces allopregnanolone (AP)-induced decreased learning and anesthesia in male Wistar rats. Rats treated i.v. with AP (2.2 mg/kg) or vehicle were given GR3027 in ratios of 1:0.5 to 1:5 dissolved in 10% 2-hydroxypropyl-beta-cyclodextrin. A dose ratio of AP:GR3027 of at least 1:2.5 antagonized the AP-induced decreased learning in the Morris Water Mase (MWM) and 1:7.5 antagonized the loss of righting reflex (LoR). GR3027 treatment did not change other functions in the rat compared to the vehicle group. Conclusions: GR3027 functions in vitro as an inhibitor of GABA(A) receptors holding α5β3γ2L and α1β2γ2L, in vivo, in the rat, as a dose-dependent inhibitor toward AP’s negative effects on LoR and learning in the MWM. MDPI 2023-10-09 /pmc/articles/PMC10604444/ /pubmed/37892178 http://dx.doi.org/10.3390/biom13101496 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bengtsson, Sara K. S.
Sjöstedt, Jessica
Malinina, Evgenya
Das, Roshni
Doverskog, Magnus
Johansson, Maja
Haage, David
Bäckström, Torbjörn
Extra-Synaptic GABA(A) Receptor Potentiation and Neurosteroid-Induced Learning Deficits Are Inhibited by GR3027, a GABA(A) Modulating Steroid Antagonist
title Extra-Synaptic GABA(A) Receptor Potentiation and Neurosteroid-Induced Learning Deficits Are Inhibited by GR3027, a GABA(A) Modulating Steroid Antagonist
title_full Extra-Synaptic GABA(A) Receptor Potentiation and Neurosteroid-Induced Learning Deficits Are Inhibited by GR3027, a GABA(A) Modulating Steroid Antagonist
title_fullStr Extra-Synaptic GABA(A) Receptor Potentiation and Neurosteroid-Induced Learning Deficits Are Inhibited by GR3027, a GABA(A) Modulating Steroid Antagonist
title_full_unstemmed Extra-Synaptic GABA(A) Receptor Potentiation and Neurosteroid-Induced Learning Deficits Are Inhibited by GR3027, a GABA(A) Modulating Steroid Antagonist
title_short Extra-Synaptic GABA(A) Receptor Potentiation and Neurosteroid-Induced Learning Deficits Are Inhibited by GR3027, a GABA(A) Modulating Steroid Antagonist
title_sort extra-synaptic gaba(a) receptor potentiation and neurosteroid-induced learning deficits are inhibited by gr3027, a gaba(a) modulating steroid antagonist
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10604444/
https://www.ncbi.nlm.nih.gov/pubmed/37892178
http://dx.doi.org/10.3390/biom13101496
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