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Medicine and Health Sciences Commons

Open Access. Powered by Scholars. Published by Universities.®

2014

Animals

Department of Emergency Medicine Faculty Papers

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Full-Text Articles in Medicine and Health Sciences

Aging Aggravates Nitrate-Mediated Ros/Rns Changes., Qian Fan, Lifen Chen, Shujuan Cheng, Fang Li, Wayne Bond Lau, Le Feng Wang, Jing Hua Liu Mar 2014

Aging Aggravates Nitrate-Mediated Ros/Rns Changes., Qian Fan, Lifen Chen, Shujuan Cheng, Fang Li, Wayne Bond Lau, Le Feng Wang, Jing Hua Liu

Department of Emergency Medicine Faculty Papers

Nitrates are the most frequently prescribed and utilized drugs worldwide. The elderly are a major population receiving nitrate therapy. Both nitrates and aging can increase in vivo reactive oxygen species (ROS) and reactive nitrogen species (RNS). To date, the effects of aging upon nitrate-induced ROS/RNS alteration are unknown. The present study tested the effects of aging upon nitrate-induced ROS/RNS alteration in vivo. 32 adults and 43 elderly unstable angina (UA) patients were subjected to 48 hours of isosorbide dinitrate intravenous injection (50  μg/minutes) in this clinical study. Blood samples were obtained at baseline and conclusion. Outcome measures of oxidative stress …


Irf8 Suppresses Pathological Cardiac Remodelling By Inhibiting Calcineurin Signalling., Ding-Sheng Jiang, Xiang Wei, Xiao-Fei Zhang, Yu Liu, Yan Zhang, Ke Chen, Lu Gao, Heng Zhou, Xue-Hai Zhu, Peter P. Liu, Wayne Bond Lau, Xin-Liang Ma, Yunzeng Zou, Xiao-Dong Zhang, Guo-Chang Fan, Hongliang Li Feb 2014

Irf8 Suppresses Pathological Cardiac Remodelling By Inhibiting Calcineurin Signalling., Ding-Sheng Jiang, Xiang Wei, Xiao-Fei Zhang, Yu Liu, Yan Zhang, Ke Chen, Lu Gao, Heng Zhou, Xue-Hai Zhu, Peter P. Liu, Wayne Bond Lau, Xin-Liang Ma, Yunzeng Zou, Xiao-Dong Zhang, Guo-Chang Fan, Hongliang Li

Department of Emergency Medicine Faculty Papers

Interferon regulatory factor 8 (IRF8) is known to affect the innate immune response, for example, by regulating the differentiation and function of immune cells. However, whether IRF8 can influence cardiac hypertrophy is unknown. Here we show that IRF8 levels are decreased in human dilated/hypertrophic cardiomyopathic hearts and in murine hypertrophic hearts. Mice overexpressing Irf8 specifically in the heart are resistant to aortic banding (AB)-induced cardiac hypertrophy, whereas mice lacking IRF8 either globally or specifically in cardiomyocytes develop an aggravated phenotype induced by pressure overload. Mechanistically, we show that IRF8 directly interacts with NFATc1 to prevent NFATc1 translocation and thus inhibits …