Yimam Mohammed Ahmed, Andreini Martina, Carnevale Sara, Muscaritoli Maurizio
Department of Science, Technology and Society, University School for Advanced Studies IUSS Pavia, 27100 Pavia, Italy.
Department of Translational and Precision Medicine, Sapienza University of Rome, 00185 Rome, Italy.
Nutrients. 2025 Jan 8;17(2):211. doi: 10.3390/nu17020211.
There is a pressing need to expand the production and consumption of alternative protein sources from plants, fungi, insects, and algae from both nutritional and sustainability perspectives. It is well known that the postprandial rise in plasma amino acid concentrations and subsequent muscle anabolic response is greater after the ingestion of animal-derived protein sources, such as dairy, meat, and eggs, than plant-based proteins. However, emerging evidence shows that a similar muscle anabolic response is observed-despite a lower and slower postprandial aminoacidemia-after the ingestion of alternative protein sources compared with animal-derived protein sources. Therefore, a comprehensive analysis of plasma amino acid kinetics after the ingestion of alternative protein sources would play a significant role in recognizing and identifying the anabolic properties of these protein sources, allowing for the implementation of the best nutritional intervention strategies, contributing to more sustainable food production, and developing new medical nutritional products with optimal impacts on muscle mass, strength, and function, both in terms of health and disease. Therefore, this narrative review is focused on postprandial amino acid kinetics (the area under the curve, peak, and time to reach the peak concentration of amino acids) based on experimental randomized controlled trials performed in young and older adults following the ingestion of different novel, sustainable, and alternative protein sources.
从营养和可持续性角度来看,迫切需要扩大来自植物、真菌、昆虫和藻类的替代蛋白质来源的生产和消费。众所周知,摄入动物源性蛋白质来源(如乳制品、肉类和蛋类)后,餐后血浆氨基酸浓度的升高以及随后的肌肉合成代谢反应比植物性蛋白质更大。然而,新出现的证据表明,与动物源性蛋白质来源相比,摄入替代蛋白质来源后,尽管餐后氨基酸血症较低且较慢,但仍观察到类似的肌肉合成代谢反应。因此,对摄入替代蛋白质来源后血浆氨基酸动力学进行全面分析,将在识别和鉴定这些蛋白质来源的合成代谢特性方面发挥重要作用,有助于实施最佳营养干预策略,促进更可持续的食品生产,并开发对肌肉质量、力量和功能具有最佳影响的新型医学营养产品,无论是在健康还是疾病方面。因此,本叙述性综述基于在年轻人和老年人中进行的实验性随机对照试验,重点关注摄入不同新型、可持续和替代蛋白质来源后餐后氨基酸动力学(曲线下面积、峰值以及达到氨基酸峰值浓度的时间)。