A Liya, Li Zihua, Lü Jinyan, Yu Liusong, Situ Wei, Xue Lingyun, Wang Hui, Chen Guoqiang
MedPHA Bioscience Co. Ltd., Zhuhai 519031, Guangdong, China.
School of Pharmaceutical Sciences, Tsinghua University, Beijing 100084, China.
Sheng Wu Gong Cheng Xue Bao. 2022 Mar 25;38(3):976-989. doi: 10.13345/j.cjb.210343.
Human body can obtain energy from either carbohydrate or fat digestion. Although glucose metabolism derived from carbohydrate-based diets has long been utilized for energy supply, it has been recently discovered that shifting from glucose to fatty acid metabolism may become a novel way for improving human health especially when carbohydrate is deprived. In recent years, intermittent fasting and ketogenic diets have received a lot of attention in respect to favoring fatty acid metabolism. In all cases, fatty acid metabolism produces D-β-hydroxybutyrate (D3HB), which is a natural ketone body, as well as, a monomer of microbial poly-D-β-hydroxybutyrate (PHB). D3HB can be utilized by different cells of the body as an alternative energy fuel or an intracellular signaling molecule with multiple downstream signaling pathways. Usually, the serum level of D3HB is increased during ketogenic diets, however, requires a very long period of adaptation (over 3-months) and exhibits unwanted adverse effects. Hence, exogenous ketone supplements using D3HB have become a more effective approach to induce and maintain nutritional ketosis for subsequent functional effects. This review describes how D3HB is produced and metabolized within the body, the functional roles played by D3HB, and a detailed summary of the different applications of exogenous ketones that have been explored to date in both nutritional and therapeutical context.
人体可以从碳水化合物或脂肪的消化中获取能量。尽管基于碳水化合物的饮食所产生的葡萄糖代谢长期以来一直被用于能量供应,但最近发现,从葡萄糖代谢转变为脂肪酸代谢可能成为改善人类健康的一种新方法,尤其是在碳水化合物缺乏的情况下。近年来,间歇性禁食和生酮饮食在促进脂肪酸代谢方面受到了广泛关注。在所有情况下,脂肪酸代谢都会产生D-β-羟基丁酸(D3HB),它是一种天然酮体,也是微生物聚-D-β-羟基丁酸(PHB)的单体。D3HB可以被身体的不同细胞用作替代能量燃料或具有多个下游信号通路的细胞内信号分子。通常,生酮饮食期间血清D3HB水平会升高,然而,这需要很长一段时间的适应(超过3个月),并且会产生不良副作用。因此,使用D3HB的外源性酮补充剂已成为诱导和维持营养性酮症以获得后续功能效应的更有效方法。这篇综述描述了D3HB在体内的产生和代谢方式、D3HB所发挥的功能作用,以及迄今为止在营养和治疗背景下探索的外源性酮的不同应用的详细总结。