食品科学 ›› 2025, Vol. 46 ›› Issue (11): 364-374.doi: 10.7506/spkx1002-6630-20241121-155

• 专题论述 • 上一篇    

含硫氨基酸对代谢健康的影响及其检测方法研究进展

杨浩,崔桂芳,鲁嫚嫚,王亚新,谢岩黎,杨玉辉   

  1. (河南工业大学粮油食品学院,河南 郑州 450001)
  • 发布日期:2025-05-14
  • 基金资助:
    中国博士后科学基金面上资助项目(2023M730977);河南省重点研发与推广专项(科技攻关)(232102110154); 河南省科技研发计划联合基金项目(222103810062)

Research Progress in the Effects of Sulfur-Containing Amino Acids on Metabolic Health and a Review of the Methods for Their Detection

YANG Hao, CUI Guifang, LU Manman, WANG Yaxin, XIE Yanli, YANG Yuhui   

  1. (College of Food Science and Engineering, Henan University of Technology, Zhengzhou 450001, China)
  • Published:2025-05-14

摘要: 含硫氨基酸(sulfur-containing amino acids,SAA)主要包括蛋氨酸、半胱氨酸和胱氨酸,在食物中含量丰富,对人体代谢健康至关重要。本文首先总结不同SAA摄入量对机体代谢健康的影响,主要包括适量限制SAA摄入产生的降脂降糖、减少氧化应激和延长寿命等益处,过量限制SAA摄入产生的生长迟缓、增加氧化应激和降低骨量等害处,适量额外增加SAA摄入产生的促进蛋白质合成、改善肝脏糖脂代谢和调节氧化还原稳态的益处,过量额外增加SAA摄入产生的糖脂代谢紊乱、引起氧化应激和增加心血管疾病风险等害处。随后综述目前国内外已报道的方法中采用酸水解法、氧化水解法、二硫苏糖醇氧化水解法等样品前处理方法以及衍生化间接分析法和分光光度分析法等测定方法对食物中SAA含量进行检测,并分析这些样品前处理方法和测定方法的优缺点。最后分析SAA精准营养的实现方法及应用。通过了解SAA摄入量对机体代谢健康的影响及其检测方法,有望为后续食物中SAA的检测以及通过精准调控人体SAA摄入量改善机体代谢健康相关的研究提供理论参考。

关键词: 含硫氨基酸;蛋氨酸;半胱氨酸;代谢健康;检测方法;精准营养

Abstract: Sulfur-containing amino acids (SAA), primarily including methionine, cysteine and cystine, are abundant in foods and play important roles in maintaining metabolic health. This article begins with a summary of the effects of varying levels of SAA intake on metabolic health. It discusses the benefits associated with moderate SAA restriction, such as lipid- and glucose-lowering effects, mitigation of oxidative stress, and extension of lifespan. It also covers the detrimental effects of excessive SAA restriction, such as growth retardation, increased oxidative stress, and reduced bone mass. Additionally, it explores the benefits of moderate additional SAA intake, such as promoting protein synthesis, improving liver glucose and lipid metabolism, and regulating redox homeostasis. It highlights the detrimental effects of excessive additional SAA intake, such as glucose and lipid metabolic disorders, increased oxidative stress, and an increased risk of cardiovascular diseases. Subsequently, this article reviews the sample pre-treatments (acid hydrolysis, oxidative hydrolysis, and dithiothreitol oxidative hydrolysis) and analytical methods (indirect analysis after derivatization and spectrophotometry) currently used to detect the SAA content in foods, with a discussion about their advantages and disadvantages. Finally, the methods for achieving SAA precision nutrition and their applications are examined. This review is expected to provide theoretical references for SAA detection in foods and the improvement of metabolic health through precision regulation of dietary SAA intake.

Key words: sulfur-containing amino acids; methionine; cysteine; metabolic health; detection method; precision nutrition

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