期刊简介
本刊是中国科学技术协会主管、中国病理生理学会主办、暨南大学承办的国家级综合性病理生理学高级学术刊物。杂志刊登有关病理生理学理论研究(包括实验研究和临床研究)方面的论著、专题综述、教学研究、科研仪器和药品评价介绍等,注重介绍疾病发病机制和临床病理生理学研究。适合医药院校教学科研人员、研究生、临床医务工作者和高年级医学生阅读。
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首页>中国病理生理杂志

- 杂志名称:中国病理生理杂志
- 主管单位:中国科学技术协会
- 主办单位:中国病理生理学会
- 国际刊号:1000-4718
- 国内刊号:44-1187/R
- 出版周期:月刊
期刊荣誉:2008和2011年分别被评为第一届和第二届中国精品科技期刊;2008~2011年连续4次荣获“百种中国杰出学术期刊”奖;2011年被评为RCCSE(武汉大学中国科学评价研究中心)中国权威期刊;2010年荣获广东省期刊评选最高奖——品牌期刊奖;2011年荣获广东省优秀科技期刊一等奖。期刊收录:万方收录(中), JST 日本科学技术振兴机构数据库(日), 北大核心期刊(中国人文社会科学核心期刊), CA 化学文摘(美), 上海图书馆馆藏, 维普收录(中), 统计源核心期刊(中国科技论文核心期刊), 知网收录(中), CSCD 中国科学引文数据库来源期刊(含扩展版), 国家图书馆馆藏
关键词:Left ventricular hypertrophy, cardiomyocyte hypertrophy, Ventricular arrhythmia, mouse model, ventricular myocytes, cardiac hypertrophy, RNA interference, neonatal rat, patch clamp
摘要:AIM:To investigate the regulation mechanism for insufficient KChIP 2 expression induces Ito,f downregulation and arrhythmogene-sis in cardiac hypertrophy .METHODS:Bidirectional manipulations of MG 53 expression were performed by adenoviral overexpression of MG53 or knockdown of MG53 with RNA interference in neonatal rat ventricular myocytes with or without PE stimulation .Ito,f was re-corded with patch clamp in whole-cell mode 48 h after adenoviral transfection .Then the WT or MG53 knockout ( MG53 -/-) mouse model of left ventricular hypertrophy induced by transverse aortic constriction ( TAC) were used to detect the susceptibility to ventricu-lar arrhythmia.RESULTS: Here, we show muscle-specific MG53 regulates KChIP2 expression and Ito,f densities, where they are downregulated in hearts from MG53 knockout mice and MG53 knockdown rat cardiomyocytes , but upregulated in MG53 overexpressed cells.MG53 expression is decreased in phenylephrine ( PE)-induced cardiomyocyte hypertrophy and restoration of MG 53 rescues PE-induced downregulation of KChIP2 and Ito,f.Furthermore, MG53 is decreased in a mouse model of hypertrophy induced by transverse aortic constriction and ablation of MG 53 increases the susceptibility to ventricular arrhythmia by exaggerating Ito,f remodeling.CON-CLUSION:These findings establish MG53 as a novel regulator of Ito,f and its central role in arrhythmogenesis in hypertrophy .
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