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Involvement of TREK-1 Channel in Cell Viability of H9c2 Rat Cardiomyoblasts Affected by Bupivacaine and Lipid Emulsion

Lipid emulsion (LE) therapy has been used to reduce overdose of bupivacaine (BPV)-induced cardiotoxicity. The TWIK-related potassium channel-1 (TREK-1) is inhibited by BPV and activated by polyunsaturated fatty acids, which are the main component in LE. These pharmacological properties inspired us t...

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Autores principales: Yang, Jun Ho, Siregar, Adrian S., Kim, Eun-Jin, Nyiramana, Marie Merci, Shin, Eui-Jung, Han, Jaehee, Sohn, Ju-Tae, Kim, Jong Woo, Kang, Dawon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6563050/
https://www.ncbi.nlm.nih.gov/pubmed/31091801
http://dx.doi.org/10.3390/cells8050454
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author Yang, Jun Ho
Siregar, Adrian S.
Kim, Eun-Jin
Nyiramana, Marie Merci
Shin, Eui-Jung
Han, Jaehee
Sohn, Ju-Tae
Kim, Jong Woo
Kang, Dawon
author_facet Yang, Jun Ho
Siregar, Adrian S.
Kim, Eun-Jin
Nyiramana, Marie Merci
Shin, Eui-Jung
Han, Jaehee
Sohn, Ju-Tae
Kim, Jong Woo
Kang, Dawon
author_sort Yang, Jun Ho
collection PubMed
description Lipid emulsion (LE) therapy has been used to reduce overdose of bupivacaine (BPV)-induced cardiotoxicity. The TWIK-related potassium channel-1 (TREK-1) is inhibited by BPV and activated by polyunsaturated fatty acids, which are the main component in LE. These pharmacological properties inspired us to investigate whether the TREK-1 channel is associated with cell viability of H9c2 cardiomyoblasts affected by BPV and LE. Consistent with previous studies, BPV-induced cell death was reduced by LE treatment. The reduction in the TREK-1 expression level by BPV was alleviated by LE. The BPV cytotoxicity highly decreased in TREK-1 overexpressed cells but was the opposite in TREK-1 knocked-down cells. TREK-1 channel activators and inhibitors increased and decreased cell viability, respectively. BPV-induced depolarization of the plasma and mitochondrial membrane potential and increase in intracellular Ca(2+) level were blocked by LE treatment. BPV-induced depolarization of membrane potential was reduced in TREK-1 overexpressed cells, indicating that TREK-1 channels mediate setting the resting membrane potentials as a background K(+) channel in H9c2 cells. These results show that TREK-1 activity is involved in the BPV cytotoxicity and the antagonistic effect of LE in H9c2 cells and suggest that TREK-1 could be a target for action of BPV and LE.
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spelling pubmed-65630502019-06-17 Involvement of TREK-1 Channel in Cell Viability of H9c2 Rat Cardiomyoblasts Affected by Bupivacaine and Lipid Emulsion Yang, Jun Ho Siregar, Adrian S. Kim, Eun-Jin Nyiramana, Marie Merci Shin, Eui-Jung Han, Jaehee Sohn, Ju-Tae Kim, Jong Woo Kang, Dawon Cells Article Lipid emulsion (LE) therapy has been used to reduce overdose of bupivacaine (BPV)-induced cardiotoxicity. The TWIK-related potassium channel-1 (TREK-1) is inhibited by BPV and activated by polyunsaturated fatty acids, which are the main component in LE. These pharmacological properties inspired us to investigate whether the TREK-1 channel is associated with cell viability of H9c2 cardiomyoblasts affected by BPV and LE. Consistent with previous studies, BPV-induced cell death was reduced by LE treatment. The reduction in the TREK-1 expression level by BPV was alleviated by LE. The BPV cytotoxicity highly decreased in TREK-1 overexpressed cells but was the opposite in TREK-1 knocked-down cells. TREK-1 channel activators and inhibitors increased and decreased cell viability, respectively. BPV-induced depolarization of the plasma and mitochondrial membrane potential and increase in intracellular Ca(2+) level were blocked by LE treatment. BPV-induced depolarization of membrane potential was reduced in TREK-1 overexpressed cells, indicating that TREK-1 channels mediate setting the resting membrane potentials as a background K(+) channel in H9c2 cells. These results show that TREK-1 activity is involved in the BPV cytotoxicity and the antagonistic effect of LE in H9c2 cells and suggest that TREK-1 could be a target for action of BPV and LE. MDPI 2019-05-14 /pmc/articles/PMC6563050/ /pubmed/31091801 http://dx.doi.org/10.3390/cells8050454 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yang, Jun Ho
Siregar, Adrian S.
Kim, Eun-Jin
Nyiramana, Marie Merci
Shin, Eui-Jung
Han, Jaehee
Sohn, Ju-Tae
Kim, Jong Woo
Kang, Dawon
Involvement of TREK-1 Channel in Cell Viability of H9c2 Rat Cardiomyoblasts Affected by Bupivacaine and Lipid Emulsion
title Involvement of TREK-1 Channel in Cell Viability of H9c2 Rat Cardiomyoblasts Affected by Bupivacaine and Lipid Emulsion
title_full Involvement of TREK-1 Channel in Cell Viability of H9c2 Rat Cardiomyoblasts Affected by Bupivacaine and Lipid Emulsion
title_fullStr Involvement of TREK-1 Channel in Cell Viability of H9c2 Rat Cardiomyoblasts Affected by Bupivacaine and Lipid Emulsion
title_full_unstemmed Involvement of TREK-1 Channel in Cell Viability of H9c2 Rat Cardiomyoblasts Affected by Bupivacaine and Lipid Emulsion
title_short Involvement of TREK-1 Channel in Cell Viability of H9c2 Rat Cardiomyoblasts Affected by Bupivacaine and Lipid Emulsion
title_sort involvement of trek-1 channel in cell viability of h9c2 rat cardiomyoblasts affected by bupivacaine and lipid emulsion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6563050/
https://www.ncbi.nlm.nih.gov/pubmed/31091801
http://dx.doi.org/10.3390/cells8050454
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