色谱 ›› 2026, Vol. 44 ›› Issue (8): 889-899.DOI: 10.3724/SP.J.1123.2025.08024

• 专论与综述 • 上一篇    下一篇

中药降解寡糖制备和结构表征的研究进展

刘俊佚1, 郑义1,2, 闫竞宇1,2,*()   

  1. 1.赣江中药创新中心,江西 南昌 330100
    2.植物化学与天然药物全国重点实验室,中国科学院大连化学物理研究所,辽宁 大连 116023
  • 收稿日期:2025-08-30 出版日期:2026-08-08 发布日期:2026-07-30
  • 通讯作者: *E-mail:yanjingyu@dicp.ac.cn.
  • 基金资助:
    江西省自然科学基金(20242BAB25354);江西省“双千计划”项目;国家自然科学基金项目(32501137)

Research advances in the preparation and structural characterization of depolymerized oligosaccharides from traditional Chinese medicine

LIU Junyi1, ZHENG Yi1,2, YAN Jingyu1,2,*()   

  1. 1.Ganjiang Chinese Medicine Innovation Center,Nanchang 330100,China
    2.State Key Laboratory of Phytochemistry and Natural Medicines,Dalian Institute of Chemical Physics,Chinese Academy of Sciences,Dalian 116023,China
  • Received:2025-08-30 Online:2026-08-08 Published:2026-07-30
  • Supported by:
    Jiangxi Provincial Natural Science Foundation(20242BAB25354);National Natural Science Foundation of China(32501137);Jiangxi “Double Thousand Plan”

摘要:

中药多糖因具有免疫调节、抗肿瘤等优异生物活性而广受关注,但多糖存在分子质量大、单糖组成复杂、支链结构多样的问题,导致其生物利用度偏低、构效关系难以解析,进而限制了其应用。而寡糖分子质量低、结构相对简单且易于纯化与解析,成为揭示中药多糖构效关系的理想模型,其制备、分离纯化及结构表征是该领域的研究核心。本文以中药降解寡糖为核心研究对象,首先从降解策略层面,系统探讨了化学水解、氧化降解、生物酶解及辅助降解等方法,对比分析了不同方法的降解机理、产物分布特征及适用范围,同时阐述了各类方法对寡糖聚合度、端基及支链结构的改造效应,以及对其生物活性的潜在调控作用;随后针对降解寡糖常用的分离纯化色谱技术(凝胶过滤色谱、离子交换色谱、亲水作用色谱及多孔石墨化炭色谱)展开系统评述,详细介绍了各类色谱技术的分离原理、适用场景及在降解寡糖分离中的具体应用;最后针对单糖组成分析、甲基化分析及核磁共振波谱等寡糖结构表征技术,阐明了不同技术间的互补性与各自的局限性。相信随着中药降解寡糖在分离纯化与结构解析领域的持续突破,以及人工智能与多组学等新技术的深度融合,其构效关系将日趋明朗,在功能性食品开发、新药研发及成果转化领域也将发挥更为重要的作用。

关键词: 中药多糖, 降解寡糖, 结构表征, 分离纯化, 结构-活性关系

Abstract:

Polysaccharides derived from traditional Chinese medicine (TCM) have attracted widespread attention due to their excellent bioactivities, such as immunomodulatory, anti-inflammatory, and anti-tumor effects. However, these polysaccharides exhibit inherent characteristics including large molecular weights, complex monosaccharide compositions, and diverse branched structures. These features result in low bioavailability and difficulties in unraveling their structure-activity relationships (SARs), thereby imposing significant limitations on their practical applications. In contrast, oligosaccharides possess distinct advantages: they have low molecular weights, relatively simple structures, and are easy to purify and characterize structurally. Owing to these properties, oligosaccharides serve as ideal models for deciphering the SARs of TCM polysaccharides. Consequently, the preparation, separation and purification, and structural characterization of TCM oligosaccharides have become the core research focuses in this field.This paper firstly reviews various degradation strategies from the perspective of degradation approaches. These strategies include chemical hydrolysis, oxidative degradation, enzymatic hydrolysis, and assisted degradation methods. For each method, a comparative analysis of their degradation mechanisms, product distribution characteristics, and applicable scopes is conducted. Meanwhile, it elaborates on the modification effects of different methods on the degree of polymerization (DP), anomeric configuration, and branched structure of oligosaccharides, as well as their potential regulatory roles in the bioactivities of oligosaccharides. Subsequently, this paper carries out a systematic review on the chromatographic techniques commonly used for the separation and purification of degraded oligosaccharides, including gel filtration chromatography (GFC), ion-exchange chromatography (IEC), hydrophilic interaction chromatography (HILIC), and porous graphitized carbon chromatography (PGC). For each chromatographic technique, this paper provides a detailed account of its separation principle, applicable scenarios, and specific applications in the separation of degraded oligosaccharides. Finally, regarding the oligosaccharide structural characterization techniques-such as monosaccharide composition analysis, methylation analysis, and nuclear magnetic resonance (NMR) spectroscopy-the paper clarifies the complementarity between different techniques and their respective limitations.In summary, this paper focuses on the application of combined strategies-such as chemical hydrolysis, enzymatic hydrolysis, and physicochemical hybrid methods—in the preparation of degraded oligosaccharides derived from TCM, as well as the roles and key points of separation techniques and characterization techniques in structural elucidation. Looking ahead, the preparation, separation and purification, and structural analysis of TCM oligosaccharides require the further establishment of standardized protocols. Additionally, the integrated application of artificial intelligence and multi-omics technologies should be actively promoted in this research field. It is believed that with the continuous in-depth exploration of degraded oligosaccharides, their SARs will become increasingly explicit. It is anticipated that progress in the purification and structural elucidation of TCM-degraded oligosaccharides, together with the convergence of artificial intelligence and multi-omics approaches, will bring clarity to their structure-activity relationships. This will, in turn, enable their more precise and impactful application in functional food design and pharmaceutical development.

Key words: traditional Chinese medicine polysaccharides, degradated oligosaccharide, structural characterization, separation and purification, structure-activity relationship

中图分类号: