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Facilitation of Insulin Effects by Ranolazine in Astrocytes in Primary Culture

Ranolazine (Rn) is a drug used to treat persistent chronic coronary ischemia. It has also been shown to have therapeutic benefits on the central nervous system and an anti-diabetic effect by lowering blood glucose levels; however, no effects of Rn on cellular sensitivity to insulin (Ins) have been d...

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Autores principales: Jordá, Adrián, Aldasoro, Martin, Campo-Palacio, Ignacio, Vila, Jose M., Aldasoro, Constanza, Campos-Campos, Juan, Colmena, Carlos, Singh, Sandeep Kumar, Obrador, Elena, Valles, Soraya L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9569909/
https://www.ncbi.nlm.nih.gov/pubmed/36233271
http://dx.doi.org/10.3390/ijms231911969
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author Jordá, Adrián
Aldasoro, Martin
Campo-Palacio, Ignacio
Vila, Jose M.
Aldasoro, Constanza
Campos-Campos, Juan
Colmena, Carlos
Singh, Sandeep Kumar
Obrador, Elena
Valles, Soraya L.
author_facet Jordá, Adrián
Aldasoro, Martin
Campo-Palacio, Ignacio
Vila, Jose M.
Aldasoro, Constanza
Campos-Campos, Juan
Colmena, Carlos
Singh, Sandeep Kumar
Obrador, Elena
Valles, Soraya L.
author_sort Jordá, Adrián
collection PubMed
description Ranolazine (Rn) is a drug used to treat persistent chronic coronary ischemia. It has also been shown to have therapeutic benefits on the central nervous system and an anti-diabetic effect by lowering blood glucose levels; however, no effects of Rn on cellular sensitivity to insulin (Ins) have been demonstrated yet. The present study aimed to investigate the permissive effects of Rn on the actions of Ins in astrocytes in primary culture. Ins (10(−8) M), Rn (10(−6) M), and Ins + Rn (10(−8) M and 10(−6) M, respectively) were added to astrocytes for 24 h. In comparison to control cells, Rn and/or Ins caused modifications in cell viability and proliferation. Rn increased protein expression of Cu/Zn-SOD and the pro-inflammatory protein COX-2 was upregulated by Ins. On the contrary, no significant changes were found in the protein expression of NF-κB and IκB. The presence of Rn produced an increase in p-ERK protein and a significant decrease in COX-2 protein expression. Furthermore, Rn significantly increased the effects of Ins on the expression of p-AKT, p-eNOS, p-ERK, Mn-SOD, and PPAR-γ. In addition, Rn + Ins produced a significant decrease in COX-2 expression. In conclusion, Rn facilitated the effects of insulin on the p-AKT, p-eNOS, p-ERK, Mn-SOD, and PPAR-γ signaling pathways, as well as on the anti-inflammatory and antioxidant effects of the hormone.
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spelling pubmed-95699092022-10-17 Facilitation of Insulin Effects by Ranolazine in Astrocytes in Primary Culture Jordá, Adrián Aldasoro, Martin Campo-Palacio, Ignacio Vila, Jose M. Aldasoro, Constanza Campos-Campos, Juan Colmena, Carlos Singh, Sandeep Kumar Obrador, Elena Valles, Soraya L. Int J Mol Sci Article Ranolazine (Rn) is a drug used to treat persistent chronic coronary ischemia. It has also been shown to have therapeutic benefits on the central nervous system and an anti-diabetic effect by lowering blood glucose levels; however, no effects of Rn on cellular sensitivity to insulin (Ins) have been demonstrated yet. The present study aimed to investigate the permissive effects of Rn on the actions of Ins in astrocytes in primary culture. Ins (10(−8) M), Rn (10(−6) M), and Ins + Rn (10(−8) M and 10(−6) M, respectively) were added to astrocytes for 24 h. In comparison to control cells, Rn and/or Ins caused modifications in cell viability and proliferation. Rn increased protein expression of Cu/Zn-SOD and the pro-inflammatory protein COX-2 was upregulated by Ins. On the contrary, no significant changes were found in the protein expression of NF-κB and IκB. The presence of Rn produced an increase in p-ERK protein and a significant decrease in COX-2 protein expression. Furthermore, Rn significantly increased the effects of Ins on the expression of p-AKT, p-eNOS, p-ERK, Mn-SOD, and PPAR-γ. In addition, Rn + Ins produced a significant decrease in COX-2 expression. In conclusion, Rn facilitated the effects of insulin on the p-AKT, p-eNOS, p-ERK, Mn-SOD, and PPAR-γ signaling pathways, as well as on the anti-inflammatory and antioxidant effects of the hormone. MDPI 2022-10-09 /pmc/articles/PMC9569909/ /pubmed/36233271 http://dx.doi.org/10.3390/ijms231911969 Text en © 2022 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
Jordá, Adrián
Aldasoro, Martin
Campo-Palacio, Ignacio
Vila, Jose M.
Aldasoro, Constanza
Campos-Campos, Juan
Colmena, Carlos
Singh, Sandeep Kumar
Obrador, Elena
Valles, Soraya L.
Facilitation of Insulin Effects by Ranolazine in Astrocytes in Primary Culture
title Facilitation of Insulin Effects by Ranolazine in Astrocytes in Primary Culture
title_full Facilitation of Insulin Effects by Ranolazine in Astrocytes in Primary Culture
title_fullStr Facilitation of Insulin Effects by Ranolazine in Astrocytes in Primary Culture
title_full_unstemmed Facilitation of Insulin Effects by Ranolazine in Astrocytes in Primary Culture
title_short Facilitation of Insulin Effects by Ranolazine in Astrocytes in Primary Culture
title_sort facilitation of insulin effects by ranolazine in astrocytes in primary culture
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9569909/
https://www.ncbi.nlm.nih.gov/pubmed/36233271
http://dx.doi.org/10.3390/ijms231911969
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