Cargando…

β-Lapachone Ameliorates Lipotoxic Cardiomyopathy in Acyl CoA Synthase Transgenic Mice

Lipotoxic cardiomyopathy is caused by myocardial lipid accumulation and often occurs in patients with diabetes and obesity. This study investigated the effects of β-lapachone (β-lap), a natural compound that activates Sirt1 through elevation of the intracellular NAD(+) level, on acyl CoA synthase (A...

Descripción completa

Detalles Bibliográficos
Autores principales: Jeong, Moon Hee, Tran, Nguyen Khoi Song, Kwak, Tae Hwan, Park, Byung Keon, Lee, Chul Soon, Park, Tae-Sik, Lee, Young-Hoon, Park, Woo Jin, Yang, Dong Kwon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3948739/
https://www.ncbi.nlm.nih.gov/pubmed/24614171
http://dx.doi.org/10.1371/journal.pone.0091039
_version_ 1782306825115271168
author Jeong, Moon Hee
Tran, Nguyen Khoi Song
Kwak, Tae Hwan
Park, Byung Keon
Lee, Chul Soon
Park, Tae-Sik
Lee, Young-Hoon
Park, Woo Jin
Yang, Dong Kwon
author_facet Jeong, Moon Hee
Tran, Nguyen Khoi Song
Kwak, Tae Hwan
Park, Byung Keon
Lee, Chul Soon
Park, Tae-Sik
Lee, Young-Hoon
Park, Woo Jin
Yang, Dong Kwon
author_sort Jeong, Moon Hee
collection PubMed
description Lipotoxic cardiomyopathy is caused by myocardial lipid accumulation and often occurs in patients with diabetes and obesity. This study investigated the effects of β-lapachone (β-lap), a natural compound that activates Sirt1 through elevation of the intracellular NAD(+) level, on acyl CoA synthase (ACS) transgenic (Tg) mice, which have lipotoxic cardiomyopathy. Oral administration of β-lap to ACS Tg mice significantly attenuated heart failure and inhibited myocardial accumulation of triacylglycerol. Electron microscopy and measurement of mitochondrial complex II protein and mitochondrial DNA revealed that administration of β-lap restored mitochondrial integrity and biogenesis in ACS Tg hearts. Accordingly, β-lap administration significantly increased the expression of genes associated with mitochondrial biogenesis and fatty acid metabolism that were down-regulated in ACS Tg hearts. β-lap also restored the activities of Sirt1 and AMP-activated protein kinase (AMPK), the two key regulators of metabolism, which were suppressed in ACS Tg hearts. In H9C2 cells, β-lap-mediated elevation of AMPK activity was retarded when the level of Sirt1 was reduced by transfection of siRNA against Sirt1. Taken together, these results indicate that β-lap exerts cardioprotective effects against cardiac lipotoxicity through the activation of Sirt1 and AMPK. β-lap may be a novel therapeutic agent for the treatment of lipotoxic cardiomyopathy.
format Online
Article
Text
id pubmed-3948739
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-39487392014-03-13 β-Lapachone Ameliorates Lipotoxic Cardiomyopathy in Acyl CoA Synthase Transgenic Mice Jeong, Moon Hee Tran, Nguyen Khoi Song Kwak, Tae Hwan Park, Byung Keon Lee, Chul Soon Park, Tae-Sik Lee, Young-Hoon Park, Woo Jin Yang, Dong Kwon PLoS One Research Article Lipotoxic cardiomyopathy is caused by myocardial lipid accumulation and often occurs in patients with diabetes and obesity. This study investigated the effects of β-lapachone (β-lap), a natural compound that activates Sirt1 through elevation of the intracellular NAD(+) level, on acyl CoA synthase (ACS) transgenic (Tg) mice, which have lipotoxic cardiomyopathy. Oral administration of β-lap to ACS Tg mice significantly attenuated heart failure and inhibited myocardial accumulation of triacylglycerol. Electron microscopy and measurement of mitochondrial complex II protein and mitochondrial DNA revealed that administration of β-lap restored mitochondrial integrity and biogenesis in ACS Tg hearts. Accordingly, β-lap administration significantly increased the expression of genes associated with mitochondrial biogenesis and fatty acid metabolism that were down-regulated in ACS Tg hearts. β-lap also restored the activities of Sirt1 and AMP-activated protein kinase (AMPK), the two key regulators of metabolism, which were suppressed in ACS Tg hearts. In H9C2 cells, β-lap-mediated elevation of AMPK activity was retarded when the level of Sirt1 was reduced by transfection of siRNA against Sirt1. Taken together, these results indicate that β-lap exerts cardioprotective effects against cardiac lipotoxicity through the activation of Sirt1 and AMPK. β-lap may be a novel therapeutic agent for the treatment of lipotoxic cardiomyopathy. Public Library of Science 2014-03-10 /pmc/articles/PMC3948739/ /pubmed/24614171 http://dx.doi.org/10.1371/journal.pone.0091039 Text en © 2014 Jeong et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Jeong, Moon Hee
Tran, Nguyen Khoi Song
Kwak, Tae Hwan
Park, Byung Keon
Lee, Chul Soon
Park, Tae-Sik
Lee, Young-Hoon
Park, Woo Jin
Yang, Dong Kwon
β-Lapachone Ameliorates Lipotoxic Cardiomyopathy in Acyl CoA Synthase Transgenic Mice
title β-Lapachone Ameliorates Lipotoxic Cardiomyopathy in Acyl CoA Synthase Transgenic Mice
title_full β-Lapachone Ameliorates Lipotoxic Cardiomyopathy in Acyl CoA Synthase Transgenic Mice
title_fullStr β-Lapachone Ameliorates Lipotoxic Cardiomyopathy in Acyl CoA Synthase Transgenic Mice
title_full_unstemmed β-Lapachone Ameliorates Lipotoxic Cardiomyopathy in Acyl CoA Synthase Transgenic Mice
title_short β-Lapachone Ameliorates Lipotoxic Cardiomyopathy in Acyl CoA Synthase Transgenic Mice
title_sort β-lapachone ameliorates lipotoxic cardiomyopathy in acyl coa synthase transgenic mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3948739/
https://www.ncbi.nlm.nih.gov/pubmed/24614171
http://dx.doi.org/10.1371/journal.pone.0091039
work_keys_str_mv AT jeongmoonhee blapachoneameliorateslipotoxiccardiomyopathyinacylcoasynthasetransgenicmice
AT trannguyenkhoisong blapachoneameliorateslipotoxiccardiomyopathyinacylcoasynthasetransgenicmice
AT kwaktaehwan blapachoneameliorateslipotoxiccardiomyopathyinacylcoasynthasetransgenicmice
AT parkbyungkeon blapachoneameliorateslipotoxiccardiomyopathyinacylcoasynthasetransgenicmice
AT leechulsoon blapachoneameliorateslipotoxiccardiomyopathyinacylcoasynthasetransgenicmice
AT parktaesik blapachoneameliorateslipotoxiccardiomyopathyinacylcoasynthasetransgenicmice
AT leeyounghoon blapachoneameliorateslipotoxiccardiomyopathyinacylcoasynthasetransgenicmice
AT parkwoojin blapachoneameliorateslipotoxiccardiomyopathyinacylcoasynthasetransgenicmice
AT yangdongkwon blapachoneameliorateslipotoxiccardiomyopathyinacylcoasynthasetransgenicmice