Chang Xing, Zhang Wenjin, Zhao Zhenyu, Ma Chunxia, Zhang Tian, Meng Qingyan, Yan Peizheng, Zhang Lei, Zhao Yuping
China Academy of Chinese Medical Sciences, Beijing, China.
Guang'anmen Hospital of Chinese Academy of Traditional Chinese Medicine, Beijing, China.
Front Cell Dev Biol. 2020 Dec 23;8:616139. doi: 10.3389/fcell.2020.616139. eCollection 2020.
Mitochondria are double-membraned cellular organelles that provide the required energy and metabolic intermediates to cardiomyocytes. Mitochondrial respiratory chain defects, structure abnormalities, and DNA mutations can affect the normal function of cardiomyocytes, causing an imbalance in intracellular calcium ion homeostasis, production of reactive oxygen species, and apoptosis. Mitochondrial quality control (MQC) is an important process that maintains mitochondrial homeostasis in cardiomyocytes and involves multi-level regulatory mechanisms, such as mitophagy, mitochondrial fission and fusion, mitochondrial energy metabolism, mitochondrial antioxidant system, and mitochondrial respiratory chain. Furthermore, MQC plays a role in the pathological mechanisms of various cardiovascular diseases (CVDs). In recent years, the regulatory effects of natural plants, drugs, and active ingredients on MQC in the context of CVDs have received significant attention. Effective active ingredients in natural drugs can influence the production of energy-supplying substances in the mitochondria, interfere with the expression of genes associated with mitochondrial energy requirements, and regulate various mechanisms of MQC modulation. Thus, these ingredients have therapeutic effects against CVDs. This review provides useful information about novel treatment options for CVDs and development of novel drugs targeting MQC.
线粒体是具有双层膜的细胞器,为心肌细胞提供所需能量和代谢中间体。线粒体呼吸链缺陷、结构异常和DNA突变会影响心肌细胞的正常功能,导致细胞内钙离子稳态失衡、活性氧生成及细胞凋亡。线粒体质量控制(MQC)是维持心肌细胞线粒体稳态的重要过程,涉及多层次调控机制,如线粒体自噬、线粒体分裂与融合、线粒体能量代谢、线粒体抗氧化系统和线粒体呼吸链。此外,MQC在各种心血管疾病(CVD)的病理机制中发挥作用。近年来,天然植物、药物及活性成分在CVD背景下对MQC的调控作用受到了广泛关注。天然药物中的有效活性成分可影响线粒体中能量供应物质的产生,干扰与线粒体能量需求相关基因的表达,并调节MQC调控的各种机制。因此,这些成分对CVD具有治疗作用。本综述为CVD的新型治疗方案及靶向MQC的新药开发提供了有用信息。