Cargando…

Dietary Zinc Differentially Regulates the Effects of the GPR39 Receptor Agonist, TC-G 1008, in the Maximal Electroshock Seizure Test and Pentylenetetrazole-Kindling Model of Epilepsy

The G-protein coupled receptor 39 (GPR39) is gaining increasing attention as a target for future drugs, yet there are gaps in the understanding of its pharmacology. Zinc is an endogenous agonist or an allosteric modulator, while TC-G 1008 is a synthetic, small molecule agonist. Zinc is also a positi...

Descripción completa

Detalles Bibliográficos
Autores principales: Doboszewska, Urszula, Socała, Katarzyna, Pieróg, Mateusz, Nieoczym, Dorota, Sawicki, Jan, Sajnóg, Adam, Szewczyk, Bernadeta, Mlyniec, Katarzyna, Sowa, Ireneusz, Barałkiewicz, Danuta, Wlaź, Piotr
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9856893/
https://www.ncbi.nlm.nih.gov/pubmed/36672199
http://dx.doi.org/10.3390/cells12020264
_version_ 1784873741012959232
author Doboszewska, Urszula
Socała, Katarzyna
Pieróg, Mateusz
Nieoczym, Dorota
Sawicki, Jan
Sajnóg, Adam
Szewczyk, Bernadeta
Mlyniec, Katarzyna
Sowa, Ireneusz
Barałkiewicz, Danuta
Wlaź, Piotr
author_facet Doboszewska, Urszula
Socała, Katarzyna
Pieróg, Mateusz
Nieoczym, Dorota
Sawicki, Jan
Sajnóg, Adam
Szewczyk, Bernadeta
Mlyniec, Katarzyna
Sowa, Ireneusz
Barałkiewicz, Danuta
Wlaź, Piotr
author_sort Doboszewska, Urszula
collection PubMed
description The G-protein coupled receptor 39 (GPR39) is gaining increasing attention as a target for future drugs, yet there are gaps in the understanding of its pharmacology. Zinc is an endogenous agonist or an allosteric modulator, while TC-G 1008 is a synthetic, small molecule agonist. Zinc is also a positive allosteric modulator for the activity of TC-G 1008 at GPR39. Activation of GPR39 by TC-G 1008 facilitated the development of epileptogenesis in the pentylenetetrazole (PTZ)-induced kindling model of epilepsy. Congruently, TC-G 1008 decreased the seizure threshold in the maximal electroshock seizure threshold (MEST) test. Here, we investigated the effects of TC-G 1008 under the condition of zinc deficiency. Mice were fed a zinc-adequate diet (ZnA, 50 mg Zn/kg) or a zinc-deficient diet (ZnD, 3 mg Zn/kg) for 4 weeks. Following 4 weeks of dietary zinc restriction, TC-G 1008 was administered as a single dose and the MEST test was performed. Additional groups of mice began the PTZ-kindling model during which TC-G 1008 was administered repeatedly and the diet was continued. TC-G 1008 administered acutely decreased the seizure threshold in the MEST test in mice fed the ZnD diet but not in mice fed the ZnA diet. TC-G 1008 administered chronically increased the maximal seizure severity and the percentage of fully kindled mice in those fed the ZnA diet, but not in mice fed the ZnD diet. Our data showed that the amount of zinc in a diet is a factor contributing to the effects of TC-G 1008 in vivo.
format Online
Article
Text
id pubmed-9856893
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-98568932023-01-21 Dietary Zinc Differentially Regulates the Effects of the GPR39 Receptor Agonist, TC-G 1008, in the Maximal Electroshock Seizure Test and Pentylenetetrazole-Kindling Model of Epilepsy Doboszewska, Urszula Socała, Katarzyna Pieróg, Mateusz Nieoczym, Dorota Sawicki, Jan Sajnóg, Adam Szewczyk, Bernadeta Mlyniec, Katarzyna Sowa, Ireneusz Barałkiewicz, Danuta Wlaź, Piotr Cells Article The G-protein coupled receptor 39 (GPR39) is gaining increasing attention as a target for future drugs, yet there are gaps in the understanding of its pharmacology. Zinc is an endogenous agonist or an allosteric modulator, while TC-G 1008 is a synthetic, small molecule agonist. Zinc is also a positive allosteric modulator for the activity of TC-G 1008 at GPR39. Activation of GPR39 by TC-G 1008 facilitated the development of epileptogenesis in the pentylenetetrazole (PTZ)-induced kindling model of epilepsy. Congruently, TC-G 1008 decreased the seizure threshold in the maximal electroshock seizure threshold (MEST) test. Here, we investigated the effects of TC-G 1008 under the condition of zinc deficiency. Mice were fed a zinc-adequate diet (ZnA, 50 mg Zn/kg) or a zinc-deficient diet (ZnD, 3 mg Zn/kg) for 4 weeks. Following 4 weeks of dietary zinc restriction, TC-G 1008 was administered as a single dose and the MEST test was performed. Additional groups of mice began the PTZ-kindling model during which TC-G 1008 was administered repeatedly and the diet was continued. TC-G 1008 administered acutely decreased the seizure threshold in the MEST test in mice fed the ZnD diet but not in mice fed the ZnA diet. TC-G 1008 administered chronically increased the maximal seizure severity and the percentage of fully kindled mice in those fed the ZnA diet, but not in mice fed the ZnD diet. Our data showed that the amount of zinc in a diet is a factor contributing to the effects of TC-G 1008 in vivo. MDPI 2023-01-09 /pmc/articles/PMC9856893/ /pubmed/36672199 http://dx.doi.org/10.3390/cells12020264 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
Doboszewska, Urszula
Socała, Katarzyna
Pieróg, Mateusz
Nieoczym, Dorota
Sawicki, Jan
Sajnóg, Adam
Szewczyk, Bernadeta
Mlyniec, Katarzyna
Sowa, Ireneusz
Barałkiewicz, Danuta
Wlaź, Piotr
Dietary Zinc Differentially Regulates the Effects of the GPR39 Receptor Agonist, TC-G 1008, in the Maximal Electroshock Seizure Test and Pentylenetetrazole-Kindling Model of Epilepsy
title Dietary Zinc Differentially Regulates the Effects of the GPR39 Receptor Agonist, TC-G 1008, in the Maximal Electroshock Seizure Test and Pentylenetetrazole-Kindling Model of Epilepsy
title_full Dietary Zinc Differentially Regulates the Effects of the GPR39 Receptor Agonist, TC-G 1008, in the Maximal Electroshock Seizure Test and Pentylenetetrazole-Kindling Model of Epilepsy
title_fullStr Dietary Zinc Differentially Regulates the Effects of the GPR39 Receptor Agonist, TC-G 1008, in the Maximal Electroshock Seizure Test and Pentylenetetrazole-Kindling Model of Epilepsy
title_full_unstemmed Dietary Zinc Differentially Regulates the Effects of the GPR39 Receptor Agonist, TC-G 1008, in the Maximal Electroshock Seizure Test and Pentylenetetrazole-Kindling Model of Epilepsy
title_short Dietary Zinc Differentially Regulates the Effects of the GPR39 Receptor Agonist, TC-G 1008, in the Maximal Electroshock Seizure Test and Pentylenetetrazole-Kindling Model of Epilepsy
title_sort dietary zinc differentially regulates the effects of the gpr39 receptor agonist, tc-g 1008, in the maximal electroshock seizure test and pentylenetetrazole-kindling model of epilepsy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9856893/
https://www.ncbi.nlm.nih.gov/pubmed/36672199
http://dx.doi.org/10.3390/cells12020264
work_keys_str_mv AT doboszewskaurszula dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy
AT socałakatarzyna dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy
AT pierogmateusz dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy
AT nieoczymdorota dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy
AT sawickijan dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy
AT sajnogadam dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy
AT szewczykbernadeta dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy
AT mlynieckatarzyna dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy
AT sowaireneusz dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy
AT barałkiewiczdanuta dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy
AT wlazpiotr dietaryzincdifferentiallyregulatestheeffectsofthegpr39receptoragonisttcg1008inthemaximalelectroshockseizuretestandpentylenetetrazolekindlingmodelofepilepsy