Morgan Paul T, Breen Leigh
School of Sport, Exercise and Rehabilitation Sciences, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.
Nutr Metab (Lond). 2021 Apr 21;18(1):44. doi: 10.1186/s12986-021-00574-z.
The protein supplement industry is expanding rapidly and estimated to have a multi-billion market worth. Recent research has centred on understanding how the manufacturing processes of protein supplements may impact muscle recovery and remodeling. The hydrolysed forms of protein undergo a further heating extraction process during production which may contribute to amino acids (AA) appearing in circulation at a slightly quicker rate, or greater amplitude, than the intact form. Whilst the relative significance of the rate of aminoacidemia to muscle protein synthesis is debated, it has been suggested that protein hydrolysates, potentially through the more rapid delivery and higher proportion of di-, tri- and smaller oligo-peptides into circulation, are superior to intact non-hydrolysed proteins and free AAs in promoting skeletal muscle protein remodeling and recovery. However, despite these claims, there is currently insufficient evidence to support superior muscle anabolic properties compared with intact non-hydrolysed proteins and/or free AA controls. Further research is warranted with appropriate protein controls, particularly in populations consuming insufficient amounts of protein, to support and/or refute an important muscle anabolic role of protein hydrolysates. The primary purpose of this review is to provide the reader with a current perspective on the potential anabolic effects of protein hydrolysates in individuals wishing to optimise recovery from, and maximise adaptation to, exercise training.
蛋白质补充剂行业正在迅速扩张,估计拥有价值数十亿美元的市场。最近的研究集中在了解蛋白质补充剂的生产过程如何影响肌肉恢复和重塑。蛋白质的水解形式在生产过程中会经历进一步的加热提取过程,这可能导致氨基酸(AA)在循环中出现的速度略快,或幅度更大,比完整形式的蛋白质更快。虽然氨基酸血症的速度对肌肉蛋白质合成的相对重要性存在争议,但有人认为,蛋白质水解物可能通过更快地将二肽、三肽和更小的寡肽输送到循环中,并且比例更高,在促进骨骼肌蛋白质重塑和恢复方面优于完整的非水解蛋白质和游离氨基酸。然而,尽管有这些说法,但目前尚无足够的证据支持与完整的非水解蛋白质和/或游离氨基酸对照相比,蛋白质水解物具有更好的肌肉合成代谢特性。有必要进行进一步的研究,并设置适当的蛋白质对照,特别是在蛋白质摄入量不足的人群中,以支持和/或反驳蛋白质水解物在肌肉合成代谢中的重要作用。本综述的主要目的是为读者提供一个关于蛋白质水解物对希望优化运动训练恢复和最大化运动训练适应能力的个体潜在合成代谢作用的当前观点。