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The role of glycolytic metabolic pathways in cardiovascular disease and potential therapeutic approaches

糖酵解 代谢途径 磷酸戊糖途径 己糖激酶 氧化磷酸化 磷酸果糖激酶 葡萄糖-6-磷酸异构酶 生物 磷酸果糖激酶1 磷酸甘油酸变位酶 细胞生物学 生物化学
作者
Shuxian Chen,Yuanming Zou,Chunyu Song,Kexin Cao,Kexin Cai,Yanjiao Wu,Zhaobo Zhang,Danxi Geng,Wei Sun,Nanxiang Ouyang,Naijin Zhang,Li Zhao,Guozhe Sun,Yixiao Zhang,Yingxian Sun,Ying Zhang
出处
期刊:Basic Research in Cardiology [Springer Nature]
卷期号:118 (1) 被引量:3
标识
DOI:10.1007/s00395-023-01018-w
摘要

Cardiovascular disease (CVD) is a major threat to human health, accounting for 46% of non-communicable disease deaths. Glycolysis is a conserved and rigorous biological process that breaks down glucose into pyruvate, and its primary function is to provide the body with the energy and intermediate products needed for life activities. The non-glycolytic actions of enzymes associated with the glycolytic pathway have long been found to be associated with the development of CVD, typically exemplified by metabolic remodeling in heart failure, which is a condition in which the heart exhibits a rapid adaptive response to hypoxic and hypoxic conditions, occurring early in the course of heart failure. It is mainly characterized by a decrease in oxidative phosphorylation and a rise in the glycolytic pathway, and the rise in glycolysis is considered a hallmark of metabolic remodeling. In addition to this, the glycolytic metabolic pathway is the main source of energy for cardiomyocytes during ischemia-reperfusion. Not only that, the auxiliary pathways of glycolysis, such as the polyol pathway, hexosamine pathway, and pentose phosphate pathway, are also closely related to CVD. Therefore, targeting glycolysis is very attractive for therapeutic intervention in CVD. However, the relationship between glycolytic pathway and CVD is very complex, and some preclinical studies have confirmed that targeting glycolysis does have a certain degree of efficacy, but its specific role in the development of CVD has yet to be explored. This article aims to summarize the current knowledge regarding the glycolytic pathway and its key enzymes (including hexokinase (HK), phosphoglucose isomerase (PGI), phosphofructokinase-1 (PFK1), aldolase (Aldolase), phosphoglycerate metatase (PGAM), enolase (ENO) pyruvate kinase (PKM) lactate dehydrogenase (LDH)) for their role in cardiovascular diseases (e.g., heart failure, myocardial infarction, atherosclerosis) and possible emerging therapeutic targets.
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