湖北农业科学 ›› 2026, Vol. 65 ›› Issue (9): 135-139.doi: 10.14088/j.cnki.issn0439-8114.2026.09.022

• 药用植物 • 上一篇    下一篇

黄精蒸制过程中美拉德反应底物的消长规律及其炮制工艺启示

周天祥, 唐莲, 谢少锋, 陈裕凤, 黎文杏, 李金秀, 刘晓兰   

  1. 玉林市食品药品检验检测中心,广西 玉林 537000
  • 收稿日期:2026-05-11 出版日期:2026-09-25 发布日期:2026-09-17
  • 通讯作者: 刘晓兰,女,主管药师,主要从事中药及中成药质量控制研究,(电子信箱)2370924909@qq.com。
  • 作者简介:周天祥(1975-),男,广西容县人,副主任药师,主要从事中药质量控制研究
  • 基金资助:
    广西科技重大专项(桂科AA24263055)

The dynamic variation pattern of Maillard reaction substrates during the steaming process of Polygonatum sibiricum and its implications for processing technology

ZHOU Tian-xiang, TANG Lian, XIE Shao-feng, CHEN Yu-feng, LI Wen-xing, LI Jin-xiu, LIU Xiao-lan   

  1. Yulin Food and Drug Inspection and Testing Center, Yulin 537000, Guangxi, China
  • Received:2026-05-11 Published:2026-09-25 Online:2026-09-17

摘要: 黄精(Polygonatum sibiricum Red.)经蒸制炮制后“减毒增效”,其核心化学驱动力是美拉德反应。从美拉德反应的3类核心底物——糖类(羰基供体)、氨基酸与核苷(氨基供体)出发,系统梳理了3类核心底物的化学基础及其在美拉德反应中的角色,总结其蒸制全过程动态演化规律与相互关联的完整化学链条,阐释3类底物参与反应所带来的黄精色泽、风味、刺激性消除等感官品质改变。结合成分变化规律,提出蒸制参数确定、炮制终点量化、分基原差异化加工、平衡“增效”与“减毒”及多指标联合验证等工艺优化思路,剖析5-羟甲基糠醛(5-HMF)兼具反应进程指示物与潜在毒性物质的内在矛盾。梳理已有研究存在机制探讨不足、试验数据可比性差、5-HMF安全限量缺失、多组学与药效关联薄弱等问题,从核苷与氨基酸反应机制、5-HMF安全限量、多组学联用、工艺-成分-药效关联模型4个方面提出研究展望。

关键词: 黄精(Polygonatum sibiricum Red.), 蒸制, 炮制工艺, 美拉德反应, 核苷, 氨基酸, 糖类, 5-羟甲基糠醛

Abstract: After steaming processing, Polygonatum sibiricum Red. underwent "toxicity reduction and efficacy enhancement", with the Maillard reaction as its core chemical driving force. Focusing on the three core substrate classes of the Maillard reaction—sugars (carbonyl donors), amino acids, and nucleosides (amino donors)—their chemical basis and their respective roles in the reaction were systematically elaborated on; the dynamic evolution patterns and the interconnected complete chemical chains throughout the entire steaming process were further summarized, and the consequent changes in sensory properties (e.g., color, flavor, and irritation elimination) brought about by the participation of these substrates were explained. Based on the patterns of compositional changes, ideas for process optimization were proposed, including determination of steaming parameters, quantification of processing endpoints, species-differentiated processing, balancing "efficacy enhancement" and "toxicity reduction," and multi-index combined verification. The inherent contradiction of 5-hydroxymethylfurfural(5-HMF) serving as both a reaction progress indicator and a potential toxicant was analyzed. The existing research gaps were reviewed, including insufficient mechanistic exploration, poor comparability of experimental data, the absence of safety limits for 5-HMF, and weak correlation between multi-omics and pharmacological efficacy. Finally, research prospects were presented from four aspects: Reaction mechanisms between nucleosides and amino acids, safety limits of 5-HMF, multi-omics integration, and a process-composition-efficacy correlation model.

Key words: Polygonatum sibiricum Red., steaming, processing technology, Maillard reaction, nucleosides, amino acids, sugars, 5-hydroxymethylfurfural

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