This work was supported by a grant from The National Natural Science Foundation of China (31600682)
植物甾醇是一类在植物中广泛存在的生物活性物质,在食品、医药、化妆品等领域具有广阔应用前景.植物甾醇作为胆固醇类似物可抑制胆固醇肠道吸收进而降低血液中胆固醇水平、降低心血管疾病风险;此外,植物甾醇还具有抑癌、抗炎退热、抗氧化和类激素等多种功能.从亚细胞及分子水平深入探究植物甾醇的生物作用机制有助于充分开发植物甾醇的应用价值.线粒体是细胞能量物质代谢最重要的场所,胆固醇代谢、癌细胞增殖与凋亡、氧化应激和炎症反应等都与线粒体功能密切相关.近年来研究提示植物甾醇可在多种模型中调控线粒体功能,这可能是植物甾醇发挥各种生物学功能的重要潜在机制.本文将首先整理归纳植物甾醇生物学功能,并在此基础上详细讨论其线粒体相关调控机制,以期为领域内基础研究者提供前沿思路和进展报告,并为植物甾醇的应用提供参考依据.
Phytosterols are a type of bioactive substances widely found in plants and have broad application prospects in food, medicine, cosmetics and other fields. Phytosterols, as cholesterol analogues, can inhibit the absorption of cholesterol in the intestine and decrease serum cholesterol level and thus reduce the risk of cardiovascular diseases. In addition, phytosterols have many other functions such as cancer suppression, anti-inflammation or anti-fever, anti-oxidation and hormone-like effects. In-depth exploration of the subcellular and molecular mechanism of phytosterols’ biological functions contributes to the full development of the application value of phytosterols. Mitochondria are the most important sites for cellular energy metabolism. Cholesterol metabolism, cancer cell proliferation and apoptosis, oxidative stress, and inflammatory response are all closely related to mitochondrial function. Recent studies have suggested that phytosterols can regulate mitochondrial function in various models, which potentially may be a pivotal mechanism underlying phytosterols’ various biological functions. This article will first summarize the biological functions of phytosterols and then discuss its mitochondria-related regulatory mechanisms in detail, hoping to provide frontier insights and progress report for researchers in the field as well as to provide reference for the application of phytosterols.
楼静,崔亚娟,刘健康,赵琳.植物甾醇生理功能的线粒体调控机制[J].生物化学与生物物理进展,2018,45(12):1240-1249
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