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Activation of Endothelial Large Conductance Potassium Channels Protects against TNF-α-Induced Inflammation

Elevated TNF-α levels in serum and broncho-alveolar lavage fluid of acute lung injury patients correlate with mortality rates. We hypothesized that pharmacological plasma membrane potential (Em) hyperpolarization protects against TNF-α-induced CCL-2 and IL-6 secretion from human pulmonary endothelia...

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Autores principales: Zyrianova, Tatiana, Zou, Kathlyn, Lopez, Benjamin, Liao, Andy, Gu, Charles, Olcese, Riccardo, Schwingshackl, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961193/
https://www.ncbi.nlm.nih.gov/pubmed/36835507
http://dx.doi.org/10.3390/ijms24044087
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author Zyrianova, Tatiana
Zou, Kathlyn
Lopez, Benjamin
Liao, Andy
Gu, Charles
Olcese, Riccardo
Schwingshackl, Andreas
author_facet Zyrianova, Tatiana
Zou, Kathlyn
Lopez, Benjamin
Liao, Andy
Gu, Charles
Olcese, Riccardo
Schwingshackl, Andreas
author_sort Zyrianova, Tatiana
collection PubMed
description Elevated TNF-α levels in serum and broncho-alveolar lavage fluid of acute lung injury patients correlate with mortality rates. We hypothesized that pharmacological plasma membrane potential (Em) hyperpolarization protects against TNF-α-induced CCL-2 and IL-6 secretion from human pulmonary endothelial cells through inhibition of inflammatory Ca(2+)-dependent MAPK pathways. Since the role of Ca(2+) influx in TNF-α-mediated inflammation remains poorly understood, we explored the role of L-type voltage-gated Ca(2+) (Ca(V)) channels in TNF-α-induced CCL-2 and IL-6 secretion from human pulmonary endothelial cells. The Ca(V) channel blocker, Nifedipine, decreased both CCL-2 and IL-6 secretion, suggesting that a fraction of Ca(V) channels is open at the significantly depolarized resting Em of human microvascular pulmonary endothelial cells (−6 ± 1.9 mV), as shown by whole-cell patch-clamp measurements. To further explore the role of Ca(V) channels in cytokine secretion, we demonstrated that the beneficial effects of Nifedipine could also be achieved by Em hyperpolarization via the pharmacological activation of large conductance K(+) (BK) channels with NS1619, which elicited a similar decrease in CCL-2 but not IL-6 secretion. Using functional gene enrichment analysis tools, we predicted and validated that known Ca(2+)-dependent kinases, JNK-1/2 and p38, are the most likely pathways to mediate the decrease in CCL-2 secretion.
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spelling pubmed-99611932023-02-26 Activation of Endothelial Large Conductance Potassium Channels Protects against TNF-α-Induced Inflammation Zyrianova, Tatiana Zou, Kathlyn Lopez, Benjamin Liao, Andy Gu, Charles Olcese, Riccardo Schwingshackl, Andreas Int J Mol Sci Article Elevated TNF-α levels in serum and broncho-alveolar lavage fluid of acute lung injury patients correlate with mortality rates. We hypothesized that pharmacological plasma membrane potential (Em) hyperpolarization protects against TNF-α-induced CCL-2 and IL-6 secretion from human pulmonary endothelial cells through inhibition of inflammatory Ca(2+)-dependent MAPK pathways. Since the role of Ca(2+) influx in TNF-α-mediated inflammation remains poorly understood, we explored the role of L-type voltage-gated Ca(2+) (Ca(V)) channels in TNF-α-induced CCL-2 and IL-6 secretion from human pulmonary endothelial cells. The Ca(V) channel blocker, Nifedipine, decreased both CCL-2 and IL-6 secretion, suggesting that a fraction of Ca(V) channels is open at the significantly depolarized resting Em of human microvascular pulmonary endothelial cells (−6 ± 1.9 mV), as shown by whole-cell patch-clamp measurements. To further explore the role of Ca(V) channels in cytokine secretion, we demonstrated that the beneficial effects of Nifedipine could also be achieved by Em hyperpolarization via the pharmacological activation of large conductance K(+) (BK) channels with NS1619, which elicited a similar decrease in CCL-2 but not IL-6 secretion. Using functional gene enrichment analysis tools, we predicted and validated that known Ca(2+)-dependent kinases, JNK-1/2 and p38, are the most likely pathways to mediate the decrease in CCL-2 secretion. MDPI 2023-02-17 /pmc/articles/PMC9961193/ /pubmed/36835507 http://dx.doi.org/10.3390/ijms24044087 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
Zyrianova, Tatiana
Zou, Kathlyn
Lopez, Benjamin
Liao, Andy
Gu, Charles
Olcese, Riccardo
Schwingshackl, Andreas
Activation of Endothelial Large Conductance Potassium Channels Protects against TNF-α-Induced Inflammation
title Activation of Endothelial Large Conductance Potassium Channels Protects against TNF-α-Induced Inflammation
title_full Activation of Endothelial Large Conductance Potassium Channels Protects against TNF-α-Induced Inflammation
title_fullStr Activation of Endothelial Large Conductance Potassium Channels Protects against TNF-α-Induced Inflammation
title_full_unstemmed Activation of Endothelial Large Conductance Potassium Channels Protects against TNF-α-Induced Inflammation
title_short Activation of Endothelial Large Conductance Potassium Channels Protects against TNF-α-Induced Inflammation
title_sort activation of endothelial large conductance potassium channels protects against tnf-α-induced inflammation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961193/
https://www.ncbi.nlm.nih.gov/pubmed/36835507
http://dx.doi.org/10.3390/ijms24044087
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