Penry Jason T, Manore Melinda M
Department of Nutrition and Exercise Sciences, Oregon State University, Corvallis, OR 97331, USA.
Int J Sport Nutr Exerc Metab. 2008 Apr;18(2):191-203. doi: 10.1123/ijsnem.18.2.191.
Choline plays a central role in many physiological pathways, including neurotransmitter synthesis (acetylcholine), cell-membrane signaling (phospholipids), lipid transport (lipoproteins), and methyl-group metabolism (homocysteine reduction). Endurance exercise might stress several of these pathways, increasing the demand for choline as a metabolic substrate. This review examines the current literature linking endurance exercise and choline demand in the human body. Also reviewed are the mechanisms by which exercise might affect blood choline levels, and the links between methyl metabolism and the availability of free choline are highlighted. Finally, the ability of oral choline supplements to augment endurance performance is assessed. Most individuals consume adequate amounts of choline, although there is evidence that current recommendations might be insufficient for some adult men. Only strenuous and prolonged physical activity appears sufficient to significantly decrease circulating choline stores. Moreover, oral choline supplementation might only increase endurance performance in activities that reduce circulating choline levels below normal.
胆碱在许多生理途径中发挥着核心作用,包括神经递质合成(乙酰胆碱)、细胞膜信号传导(磷脂)、脂质运输(脂蛋白)和甲基代谢(同型半胱氨酸还原)。耐力运动可能会给这些途径中的几个带来压力,增加对作为代谢底物的胆碱的需求。本综述研究了目前将耐力运动与人体胆碱需求联系起来的文献。还综述了运动可能影响血液胆碱水平的机制,并强调了甲基代谢与游离胆碱可用性之间的联系。最后,评估了口服胆碱补充剂增强耐力表现的能力。大多数人摄入了足够量的胆碱,尽管有证据表明目前的建议对一些成年男性可能不足。只有剧烈和长时间的体力活动似乎足以显著降低循环胆碱储备。此外,口服胆碱补充剂可能只会在使循环胆碱水平降至正常以下的活动中提高耐力表现。