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中国精品科技期刊2020

美拉德反应中间体ARPs/HRPs的定向制备及其呈味特性研究进展

Targeted Preparation and Taste Properties of Maillard Reaction Intermediates ARPs/HRPs: A Review

  • 摘要: Amadori/Heyns重排产物(ARPs/HRPs)作为美拉德反应早期的关键活性中间体,兼具风味与健康潜力,也是实现低盐食品“减钠不减味”的天然核心原料。针对传统水相体系副反应多、定向转化率受限等瓶颈,本文系统综述了ARPs/HRPs的定向合成策略与呈味作用的最新研究进展。重点总结了基于天然低共熔溶剂(NADES)的氢键网络调控及机械化学球磨法等新兴绿色合成技术,阐明其在打破晶格能垒、抑制高级副反应及显著提升靶向合成效率方面的反应机制与制造优势;深入探讨了ARPs/HRPs对鲜、咸及厚味的多维协同增效作用,揭示了氨基酸残基决定特征滋味、糖基骨架主导加工稳定性的分子构效关系。未来仍需进一步突破其在复杂基质中的稳态化调控与低成本富集纯化工艺,并深入解析味觉受体互作机制,以实现工业化精准应用。

     

    Abstract: Amadori and Heyns rearrangement products (ARPs and HRPs) are pivotal active early-stage intermediates in the Maillard reaction. Endowed with both flavor and health potentials, they serve as core natural ingredients for achieving ''sodium reduction without flavor loss'' in low-sodium foods. To tackle the bottlenecks of extensive side reactions and limited directional conversion efficiency in traditional aqueous systems, this paper systematically reviews the latest research advances in the directional synthesis strategies and taste properties of ARPs/HRPs. It focuses on summarizing emerging green synthesis technologies, namely hydrogen bond network regulation mediated by natural deep eutectic solvents (NADESs) and mechanochemical ball-milling method, and elucidates their reaction mechanisms and manufacturing advantages in breaking crystalline lattice energy barriers, inhibiting advanced side reactions, and significantly boosting targeted synthesis efficiency. Meanwhile, the multi-dimensional synergistic enhancement effects of ARPs/HRPs on umami, saltiness and kokumi are thoroughly discussed, and the molecular structure-activity relationship is revealed: amino acid residues determine characteristic taste profiles, while glycosyl skeletons dominate processing stability. Looking forward, further breakthroughs remain to be made in steady-state regulation and low-cost enrichment and purification processes in complex matrices, along with in-depth elucidation of taste receptor interaction mechanisms, to realize precise industrial application.

     

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