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The morbidity and mortality of cardiovascular diseases (CVDs) are increasing worldwide and seriously threaten human life and health. Fibroblast growth factor 21 (FGF21), a metabolic regulator, regulates glucose and lipid metabolism and may exert beneficial effects on the cardiovascular system. In recent years, FGF21 has been found to act directly on the cardiovascular system and may be used as an early biomarker of CVDs. The present review highlights the recent progress in understanding the relationship between FGF21 and CVDs including coronary heart disease, myocardial ischemia, cardiomyopathy, and heart failure and also explores the related mechanism of the cardioprotective effect of FGF21. FGF21 plays an important role in the prediction, treatment, and improvement of prognosis in CVDs. This cardioprotective effect of FGF21 may be achieved by preventing endothelial dysfunction and lipid accumulating, inhibiting cardiomyocyte apoptosis and regulating the associated oxidative stress, inflammation and autophag

作者:Ying Zhang;Dan Liu;Xiao-Xue Long;Qi-Chen Fang;Wei-Ping Jia;Hua-Ting Li

来源:中华医学杂志英文版 2021 年 134卷 24期

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收藏
| 浏览:62 | 下载:1
作者:
Ying Zhang;Dan Liu;Xiao-Xue Long;Qi-Chen Fang;Wei-Ping Jia;Hua-Ting Li
来源:
中华医学杂志英文版 2021 年 134卷 24期
标签:
Atherosclerosis Cardiomyopathy Cardiovascular disease Fibroblast growth factor 21 Heart failure Myocardial infarction Atherosclerosis Cardiomyopathy Cardiovascular disease Fibroblast growth factor 21 Heart failure Myocardial infarction
The morbidity and mortality of cardiovascular diseases (CVDs) are increasing worldwide and seriously threaten human life and health. Fibroblast growth factor 21 (FGF21), a metabolic regulator, regulates glucose and lipid metabolism and may exert beneficial effects on the cardiovascular system. In recent years, FGF21 has been found to act directly on the cardiovascular system and may be used as an early biomarker of CVDs. The present review highlights the recent progress in understanding the relationship between FGF21 and CVDs including coronary heart disease, myocardial ischemia, cardiomyopathy, and heart failure and also explores the related mechanism of the cardioprotective effect of FGF21. FGF21 plays an important role in the prediction, treatment, and improvement of prognosis in CVDs. This cardioprotective effect of FGF21 may be achieved by preventing endothelial dysfunction and lipid accumulating, inhibiting cardiomyocyte apoptosis and regulating the associated oxidative stress, inflammation and autophag