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Inhibition of smooth muscle cell proliferation by ezetimibe via the cyclin D1-MAPK pathway
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نویسنده
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li q. ,yang y.-b. ,yang y.-x. ,gong y.-z. ,li x.-l. ,li g.-y. ,luo h.-d. ,xie x.-j. ,zheng x.-l. ,liao d.-f.
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منبع
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journal of pharmacological sciences - 2014 - دوره : 125 - شماره : 3 - صفحه:283 -291
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چکیده
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Proliferation of vascular smooth muscle cells (vsmcs) contributes to the development of atherosclerosis. ezetimibe is a new lipid lowering agent that inhibits cholesterol absorption. in the present study we attempted to investigate whether ezetimibe has any effect on vsmc proliferation and the potential mechanisms involved. our data showed ezetimibe abrogated the proliferation and migration of primary rat vsmcs induced by chol:mβcd. mechanically,we found that ezetimibe was capable of abolishing cyclin d1,cdk2,phospho-rb (p-rb),and e2f protein expressions that were upregulated by chol:mβcd treatment. in addition,ezetimibe was able to reverse cell cycle progression induced by chol:mβcd,which was further supported by its down-regulation of cyclin d1 promoter activity in the presence of chol:mβcd. furthermore,ezetimibe abrogated the increment of phospho-erk1/2 (p-erk1/2) and nuclear accumulation of erk1/2 in vsmcs induced by chol:mβcd. inhibition of the mapk pathway by using erk1/2 inhibitor pd98059 attenuated the reduction effect of ezetimibe on the expressions of phosphor-mek1 (p-mek1),p-erk1/2,and cyclin d1. taken together our data suggest that ezetimibe inhibits chol:mβcd-induced vsmcs proliferation and leads to cell cycle arrest at the g0/g1 phase by suppressing cyclin d1 expression via the mapk signaling pathway. these novel findings support the potential pleiotropic effect of ezetimibe in cardiovascular disease. © the japanese pharmacological society.
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کلیدواژه
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Cell cycle; Cell proliferation; Cyclin d1; Ezetimibe; MAPK pathway
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آدرس
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division of stem cell regulation and application,school of pharmacy,hunan university of chinese medicine,changsha,hunan 410208,china,institute of pharmacy and pharmacology,south china university,hengyang,hunan 421001, China, matthew mailing centre for translational transplantation studies,london health sciences centre,western university,london,on n6a 5a5,canada,second xiang-ya hospital,central south university,changsha,hunan 410011, China, matthew mailing centre for translational transplantation studies,london health sciences centre,western university,london,on n6a 5a5, Canada, division of stem cell regulation and application,school of pharmacy,hunan university of chinese medicine,changsha,hunan 410208, China, cancer research institute,central south university,changsha,hunan 410078, China, cancer research institute,central south university,changsha,hunan 410078, China, division of stem cell regulation and application,school of pharmacy,hunan university of chinese medicine,changsha,hunan 410208, China, division of stem cell regulation and application,school of pharmacy,hunan university of chinese medicine,changsha,hunan 410208, China, division of stem cell regulation and application,school of pharmacy,hunan university of chinese medicine,changsha,hunan 410208,china,department of biochemistry and molecular biology,libin cardiovascular institute of alberta,university of calgary,calgary,ab t2n 4n1, Canada, division of stem cell regulation and application,school of pharmacy,hunan university of chinese medicine,changsha,hunan 410208, China
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Authors
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