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Role of Kir6.2 subunits of ATP-sensitive potassium channels in endotoxemia-induced cardiac dysfunction

BACKGROUND: Cardiac dysfunction is well-described in endotoxemia and diagnosed in up to 60% of patients with endotoxic shock. ATP-sensitive potassium (K(ATP)) channels are critical to cardiac function. This study investigates the role of Kir6.2 subunits of K(ATP) channels on cardiac dysfunction in l...

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Autores principales: Yang, Zhong-Wei, Chen, Ji-Kuai, Ni, Min, Zhao, Ting, Deng, Ya-Ping, Tao, Xia, Jiang, Guo-Jun, Shen, Fu-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3654940/
https://www.ncbi.nlm.nih.gov/pubmed/23659427
http://dx.doi.org/10.1186/1475-2840-12-75
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author Yang, Zhong-Wei
Chen, Ji-Kuai
Ni, Min
Zhao, Ting
Deng, Ya-Ping
Tao, Xia
Jiang, Guo-Jun
Shen, Fu-Ming
author_facet Yang, Zhong-Wei
Chen, Ji-Kuai
Ni, Min
Zhao, Ting
Deng, Ya-Ping
Tao, Xia
Jiang, Guo-Jun
Shen, Fu-Ming
author_sort Yang, Zhong-Wei
collection PubMed
description BACKGROUND: Cardiac dysfunction is well-described in endotoxemia and diagnosed in up to 60% of patients with endotoxic shock. ATP-sensitive potassium (K(ATP)) channels are critical to cardiac function. This study investigates the role of Kir6.2 subunits of K(ATP) channels on cardiac dysfunction in lipopolysaccharide (LPS)-induced endotoxemia. METHODS: Kir6.2 subunits knockout (Kir6.2(−/−)) and wild-type (WT) mice were injected with LPS to induce endotoxemia. Cardiac function was monitored by echocardiography. Left ventricles were taken for microscopy (both light and electron) and TUNEL examination. Serum lactate dehydrogenase (LDH) and creatine kinase (CK) activities, and tumor necrosis factor-α (TNF-α) levels in both serum and left ventricular tissues were determined. RESULTS: Compared to WT, Kir6.2(−/−) mice showed significantly declined cardiac function 360 min after LPS administration, aggravated myocardial damage and elevated serum LDH and CK activities. Apoptotic cells were obviously increased in heart tissues from Kir6.2(−/−) mice at 90, 180 and 360 min. TNF-α expression in both serum and heart tissues of Kir6.2(−/−) mice was significantly increased. CONCLUSIONS: We conclude that Kir6.2 subunits are critical in resistance to endotoxemia-induced cardiac dysfunction through reducing myocardial damage by inhibition of apoptosis and inflammation. K(ATP) channels blockers are extensively used in the treatment of diabetes, their potential role should therefore be considered in the clinic when patients treated with antidiabetic sulfonylureas are complicated by endotoxemia.
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spelling pubmed-36549402013-05-16 Role of Kir6.2 subunits of ATP-sensitive potassium channels in endotoxemia-induced cardiac dysfunction Yang, Zhong-Wei Chen, Ji-Kuai Ni, Min Zhao, Ting Deng, Ya-Ping Tao, Xia Jiang, Guo-Jun Shen, Fu-Ming Cardiovasc Diabetol Original Investigation BACKGROUND: Cardiac dysfunction is well-described in endotoxemia and diagnosed in up to 60% of patients with endotoxic shock. ATP-sensitive potassium (K(ATP)) channels are critical to cardiac function. This study investigates the role of Kir6.2 subunits of K(ATP) channels on cardiac dysfunction in lipopolysaccharide (LPS)-induced endotoxemia. METHODS: Kir6.2 subunits knockout (Kir6.2(−/−)) and wild-type (WT) mice were injected with LPS to induce endotoxemia. Cardiac function was monitored by echocardiography. Left ventricles were taken for microscopy (both light and electron) and TUNEL examination. Serum lactate dehydrogenase (LDH) and creatine kinase (CK) activities, and tumor necrosis factor-α (TNF-α) levels in both serum and left ventricular tissues were determined. RESULTS: Compared to WT, Kir6.2(−/−) mice showed significantly declined cardiac function 360 min after LPS administration, aggravated myocardial damage and elevated serum LDH and CK activities. Apoptotic cells were obviously increased in heart tissues from Kir6.2(−/−) mice at 90, 180 and 360 min. TNF-α expression in both serum and heart tissues of Kir6.2(−/−) mice was significantly increased. CONCLUSIONS: We conclude that Kir6.2 subunits are critical in resistance to endotoxemia-induced cardiac dysfunction through reducing myocardial damage by inhibition of apoptosis and inflammation. K(ATP) channels blockers are extensively used in the treatment of diabetes, their potential role should therefore be considered in the clinic when patients treated with antidiabetic sulfonylureas are complicated by endotoxemia. BioMed Central 2013-05-09 /pmc/articles/PMC3654940/ /pubmed/23659427 http://dx.doi.org/10.1186/1475-2840-12-75 Text en Copyright © 2013 Yang et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Investigation
Yang, Zhong-Wei
Chen, Ji-Kuai
Ni, Min
Zhao, Ting
Deng, Ya-Ping
Tao, Xia
Jiang, Guo-Jun
Shen, Fu-Ming
Role of Kir6.2 subunits of ATP-sensitive potassium channels in endotoxemia-induced cardiac dysfunction
title Role of Kir6.2 subunits of ATP-sensitive potassium channels in endotoxemia-induced cardiac dysfunction
title_full Role of Kir6.2 subunits of ATP-sensitive potassium channels in endotoxemia-induced cardiac dysfunction
title_fullStr Role of Kir6.2 subunits of ATP-sensitive potassium channels in endotoxemia-induced cardiac dysfunction
title_full_unstemmed Role of Kir6.2 subunits of ATP-sensitive potassium channels in endotoxemia-induced cardiac dysfunction
title_short Role of Kir6.2 subunits of ATP-sensitive potassium channels in endotoxemia-induced cardiac dysfunction
title_sort role of kir6.2 subunits of atp-sensitive potassium channels in endotoxemia-induced cardiac dysfunction
topic Original Investigation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3654940/
https://www.ncbi.nlm.nih.gov/pubmed/23659427
http://dx.doi.org/10.1186/1475-2840-12-75
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