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1.
Chinese Journal of Pathophysiology ; (12): 1499-1499, 2016.
Article in Chinese | WPRIM | ID: wpr-496232

ABSTRACT

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 .

2.
Journal of Biomedical Engineering ; (6): 1142-1148, 2006.
Article in Chinese | WPRIM | ID: wpr-320401

ABSTRACT

Alzheimer's disease (AD) has abstracted many scientists' interests with the aging of people in the world, but its mechanisms are still remaining unclear. This review will focus on some of the mediators of oxidative stress occurring in AD pathology and their possible role in the AD pathogenesis. Meanwhile, antioxidant approaches for the prevention and treatment of AD are discussed.


Subject(s)
Humans , Alzheimer Disease , Metabolism , Therapeutics , Amyloid beta-Peptides , Metabolism , Oxidative Stress
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