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Compound K Attenuates the Development of Atherosclerosis in ApoE(−/−) Mice via LXRα Activation

Background: Atherosclerosis is a fundamental pathological process responded to some serious cardiovascular events. Although the cholesterol-lowering drugs are widely prescribed for atherosclerosis therapy, it is still the leading cause of death in the developed world. Here we measured the effects of...

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Autores principales: Zhou, Li, Zheng, Yu, Li, Zhuoying, Bao, Lingxia, Dou, Yin, Tang, Yuan, Zhang, Jianxiang, Zhou, Jianzhi, Liu, Ya, Jia, Yi, Li, Xiaohui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4964430/
https://www.ncbi.nlm.nih.gov/pubmed/27399689
http://dx.doi.org/10.3390/ijms17071054
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author Zhou, Li
Zheng, Yu
Li, Zhuoying
Bao, Lingxia
Dou, Yin
Tang, Yuan
Zhang, Jianxiang
Zhou, Jianzhi
Liu, Ya
Jia, Yi
Li, Xiaohui
author_facet Zhou, Li
Zheng, Yu
Li, Zhuoying
Bao, Lingxia
Dou, Yin
Tang, Yuan
Zhang, Jianxiang
Zhou, Jianzhi
Liu, Ya
Jia, Yi
Li, Xiaohui
author_sort Zhou, Li
collection PubMed
description Background: Atherosclerosis is a fundamental pathological process responded to some serious cardiovascular events. Although the cholesterol-lowering drugs are widely prescribed for atherosclerosis therapy, it is still the leading cause of death in the developed world. Here we measured the effects of compound K in atherosclerosis formation and investigated the probably mechanisms of the anti-antherosclerosis roles of compound K. Methods: We treated the atherosclerotic model animals (apoE(−/−) mice on western diet) with compound K and measured the size of atherosclerotic lesions, inflammatory cytokine levels and serum lipid profile. Peritoneal macrophages were collected in vitro for the foam cell and inflammasome experiments. Results: Our results show that treatment with compound K dose-dependently attenuates the formation of atherosclerotic plaques by 55% through activation of reverse cholesterol transport pathway, reduction of systemic inflammatory cytokines and inhibition of local inflammasome activity. Compound K increases the cholesterol efflux of macrophage-derived foam cells, and reduces the inflammasome activity in cholesterol crystal stimulated macrophages. The activation of LXRα may contribute to the athero-protective effects of compound K. Conclusion: These observations provide evidence for an athero-protective effect of compound K via LXRα activation, and support its further evaluation as a potential effective modulator for the prevention and treatment of atherosclerosis.
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spelling pubmed-49644302016-08-03 Compound K Attenuates the Development of Atherosclerosis in ApoE(−/−) Mice via LXRα Activation Zhou, Li Zheng, Yu Li, Zhuoying Bao, Lingxia Dou, Yin Tang, Yuan Zhang, Jianxiang Zhou, Jianzhi Liu, Ya Jia, Yi Li, Xiaohui Int J Mol Sci Article Background: Atherosclerosis is a fundamental pathological process responded to some serious cardiovascular events. Although the cholesterol-lowering drugs are widely prescribed for atherosclerosis therapy, it is still the leading cause of death in the developed world. Here we measured the effects of compound K in atherosclerosis formation and investigated the probably mechanisms of the anti-antherosclerosis roles of compound K. Methods: We treated the atherosclerotic model animals (apoE(−/−) mice on western diet) with compound K and measured the size of atherosclerotic lesions, inflammatory cytokine levels and serum lipid profile. Peritoneal macrophages were collected in vitro for the foam cell and inflammasome experiments. Results: Our results show that treatment with compound K dose-dependently attenuates the formation of atherosclerotic plaques by 55% through activation of reverse cholesterol transport pathway, reduction of systemic inflammatory cytokines and inhibition of local inflammasome activity. Compound K increases the cholesterol efflux of macrophage-derived foam cells, and reduces the inflammasome activity in cholesterol crystal stimulated macrophages. The activation of LXRα may contribute to the athero-protective effects of compound K. Conclusion: These observations provide evidence for an athero-protective effect of compound K via LXRα activation, and support its further evaluation as a potential effective modulator for the prevention and treatment of atherosclerosis. MDPI 2016-07-08 /pmc/articles/PMC4964430/ /pubmed/27399689 http://dx.doi.org/10.3390/ijms17071054 Text en © 2016 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
Zhou, Li
Zheng, Yu
Li, Zhuoying
Bao, Lingxia
Dou, Yin
Tang, Yuan
Zhang, Jianxiang
Zhou, Jianzhi
Liu, Ya
Jia, Yi
Li, Xiaohui
Compound K Attenuates the Development of Atherosclerosis in ApoE(−/−) Mice via LXRα Activation
title Compound K Attenuates the Development of Atherosclerosis in ApoE(−/−) Mice via LXRα Activation
title_full Compound K Attenuates the Development of Atherosclerosis in ApoE(−/−) Mice via LXRα Activation
title_fullStr Compound K Attenuates the Development of Atherosclerosis in ApoE(−/−) Mice via LXRα Activation
title_full_unstemmed Compound K Attenuates the Development of Atherosclerosis in ApoE(−/−) Mice via LXRα Activation
title_short Compound K Attenuates the Development of Atherosclerosis in ApoE(−/−) Mice via LXRα Activation
title_sort compound k attenuates the development of atherosclerosis in apoe(−/−) mice via lxrα activation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4964430/
https://www.ncbi.nlm.nih.gov/pubmed/27399689
http://dx.doi.org/10.3390/ijms17071054
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