Regulations of the key mediators in inflammation and atherosclerosis by Aspirin in human macrophages

<p>Abstract</p> <p>Although its role to prevent secondary cardiovascular complications has been well established, how acetyl salicylic acid (ASA, aspirin) regulates certain key molecules in the atherogenesis is still not known. Considering the role of matrix metalloproteinase-9 (MM...

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Main Authors: Zhang Li, Li Liangpeng, Zhang Qian, Shen Lili, Gan Lin, Peng Jiahe, Liu Hong, Lu Li, Su Chang, Jiang Yu
Format: Article
Language:English
Published: BMC 2010-02-01
Series:Lipids in Health and Disease
Online Access:http://www.lipidworld.com/content/9/1/16
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spelling doaj-96325eddf61a4798b30a85cb9f9422d12020-11-24T21:53:37ZengBMCLipids in Health and Disease1476-511X2010-02-01911610.1186/1476-511X-9-16Regulations of the key mediators in inflammation and atherosclerosis by Aspirin in human macrophagesZhang LiLi LiangpengZhang QianShen LiliGan LinPeng JiaheLiu HongLu LiSu ChangJiang Yu<p>Abstract</p> <p>Although its role to prevent secondary cardiovascular complications has been well established, how acetyl salicylic acid (ASA, aspirin) regulates certain key molecules in the atherogenesis is still not known. Considering the role of matrix metalloproteinase-9 (MMP-9) to destabilize the atherosclerotic plaques, the roles of the scavenger receptor class BI (SR-BI) and ATP-binding cassette transporter A1 (ABCA1) to promote cholesterol efflux in the foam cells at the plaques, and the role of NF-κB in the overall inflammation related to the atherosclerosis, we addressed whether these molecules are all related to a common mechanism that may be regulated by acetyl salicylic acid. We investigated the effect of ASA to regulate the expressions and activities of these molecules in THP-1 macrophages. Our results showed that ASA inhibited MMP-9 mRNA expression, and caused the decrease in the MMP-9 activities from the cell culture supernatants. In addition, it inhibited the nuclear translocation of NF-κB p65 subunit, thus the activity of this inflammatory molecule. On the contrary, acetyl salicylic acid induced the expressions of ABCA1 and SR-BI, two molecules known to reduce the progression of atherosclerosis, at both mRNA and protein levels. It also stimulated the cholesterol efflux out of macrophages. These data suggest that acetyl salicylic acid may alleviate symptoms of atherosclerosis by two potential mechanisms: maintaining the plaque stability via inhibiting activities of inflammatory molecules MMP-9 and NF-κB, and increasing the cholesterol efflux through inducing expressions of ABCA1 and SR-BI.</p> http://www.lipidworld.com/content/9/1/16
collection DOAJ
language English
format Article
sources DOAJ
author Zhang Li
Li Liangpeng
Zhang Qian
Shen Lili
Gan Lin
Peng Jiahe
Liu Hong
Lu Li
Su Chang
Jiang Yu
spellingShingle Zhang Li
Li Liangpeng
Zhang Qian
Shen Lili
Gan Lin
Peng Jiahe
Liu Hong
Lu Li
Su Chang
Jiang Yu
Regulations of the key mediators in inflammation and atherosclerosis by Aspirin in human macrophages
Lipids in Health and Disease
author_facet Zhang Li
Li Liangpeng
Zhang Qian
Shen Lili
Gan Lin
Peng Jiahe
Liu Hong
Lu Li
Su Chang
Jiang Yu
author_sort Zhang Li
title Regulations of the key mediators in inflammation and atherosclerosis by Aspirin in human macrophages
title_short Regulations of the key mediators in inflammation and atherosclerosis by Aspirin in human macrophages
title_full Regulations of the key mediators in inflammation and atherosclerosis by Aspirin in human macrophages
title_fullStr Regulations of the key mediators in inflammation and atherosclerosis by Aspirin in human macrophages
title_full_unstemmed Regulations of the key mediators in inflammation and atherosclerosis by Aspirin in human macrophages
title_sort regulations of the key mediators in inflammation and atherosclerosis by aspirin in human macrophages
publisher BMC
series Lipids in Health and Disease
issn 1476-511X
publishDate 2010-02-01
description <p>Abstract</p> <p>Although its role to prevent secondary cardiovascular complications has been well established, how acetyl salicylic acid (ASA, aspirin) regulates certain key molecules in the atherogenesis is still not known. Considering the role of matrix metalloproteinase-9 (MMP-9) to destabilize the atherosclerotic plaques, the roles of the scavenger receptor class BI (SR-BI) and ATP-binding cassette transporter A1 (ABCA1) to promote cholesterol efflux in the foam cells at the plaques, and the role of NF-κB in the overall inflammation related to the atherosclerosis, we addressed whether these molecules are all related to a common mechanism that may be regulated by acetyl salicylic acid. We investigated the effect of ASA to regulate the expressions and activities of these molecules in THP-1 macrophages. Our results showed that ASA inhibited MMP-9 mRNA expression, and caused the decrease in the MMP-9 activities from the cell culture supernatants. In addition, it inhibited the nuclear translocation of NF-κB p65 subunit, thus the activity of this inflammatory molecule. On the contrary, acetyl salicylic acid induced the expressions of ABCA1 and SR-BI, two molecules known to reduce the progression of atherosclerosis, at both mRNA and protein levels. It also stimulated the cholesterol efflux out of macrophages. These data suggest that acetyl salicylic acid may alleviate symptoms of atherosclerosis by two potential mechanisms: maintaining the plaque stability via inhibiting activities of inflammatory molecules MMP-9 and NF-κB, and increasing the cholesterol efflux through inducing expressions of ABCA1 and SR-BI.</p>
url http://www.lipidworld.com/content/9/1/16
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