色谱 ›› 2026, Vol. 44 ›› Issue (8): 911-923.DOI: 10.3724/SP.J.1123.2025.11008

• 研究论文 • 上一篇    下一篇

基于超高效液相色谱-四极杆-飞行时间质谱的玉屏风颗粒化学成分及入血成分分析

卢文森1, 肖观林2, 邬旻珊1, 吴佳滢1, 刘权1, 胥爱丽2,*()   

  1. 1.广州中医药大学第五临床医学院,广东 广州 510405
    2.广东省中医药工程技术研究院,广东省中医药研究开发重点实验室,广东 广州 510095
  • 收稿日期:2025-11-19 出版日期:2026-08-08 发布日期:2026-07-30
  • 通讯作者: *Tel:020-83482098,E-mail:xal555@163.com.
  • 基金资助:
    广东省基础与应用基础研究基金项目(2024A1515011249)

Analysis of chemical constituents and bioavailable components in Yupingfeng Granules using ultra performance liquid chromatography-quadrupole-time-of-flight mass spectrometry

LU Wensen1, XIAO Guanlin2, WU Minshan1, WU Jiaying1, LIU Quan1, XU Aili2,*()   

  1. 1.The School of the Fifth Clinical Medicine,Guangzhou University of Chinese Medicine,Guangzhou 510405,China
    2.Guangdong Province Engineering Technology Research Institute of Traditional Chinese Medicine,Guangdong Provincial Key Laboratory of Research and Development in Traditional Chinese Medicine,Guangzhou 510095,China
  • Received:2025-11-19 Online:2026-08-08 Published:2026-07-30
  • Supported by:
    Guangdong Province Basic and Applied Basic Research Fund Program(2024A1515011249)

摘要:

玉屏风颗粒作为中医经典名方,在免疫调节方面具有广泛应用,然而其复杂的化学组成及体内发挥药效的具体物质基础尚未完全阐明,尤其在病理状态下的入血成分研究相对缺乏。本研究旨在系统鉴定玉屏风颗粒的化学物质组,并进一步探究其在免疫缺陷模型大鼠体内的入血成分,以揭示其潜在的药效物质,为深入阐释该制剂的作用机制提供科学依据。研究采用超高效液相色谱-四极杆-飞行时间质谱(UPLC-Q-TOF MS)技术对玉屏风颗粒的化学成分及免疫缺陷模型大鼠给药后的入血成分进行分析。制剂和血清样本经处理,采用 Waters CORTECS UPLC C18色谱柱(150 mm×2.1 mm,1.6 μm),以0.1%甲酸水溶液-乙腈为流动相梯度洗脱,流速0.3 mL/min,柱温35 ℃,进样量3 µL,在电喷雾离子源正、负离子模式下采集数据后,通过与对照品保留时间、精确相对分子质量、二级碎片离子进行比对,并参照相关文献,完成化学成分的鉴定。从玉屏风颗粒中共鉴定出52种化学成分,包括11个黄酮类、13个有机酸类、13个苯丙素类、12个萜类成分、3个其他成分(醛类、核苷、氨基酸)。在此基础上,从给药大鼠的血清中鉴定出11个入血成分 。该研究在免疫缺陷病理模型条件下系统分析了玉屏风颗粒的入血成分,不仅明确了其体外化学物质基础,更进一步筛选出潜在的体内直接作用物质,为后续开展药效关联研究及作用机制探索提供了关键线索和依据

关键词: 玉屏风颗粒, 超高效液相色谱-四极杆-飞行时间质谱, 化学成分, 入血成分

Abstract:

Yupingfeng Granules, a classical and widely prescribed formula in traditional Chinese medicine, is extensively employed in clinical practice for its well-documented immunomodulatory and preventive activities. However, the highly complex chemical composition of this multi-herb formula and the specific material basis responsible for its therapeutic effects in vivo remain inadequately characterized and systematically elucidated. Research on its pharmacokinetically critical blood-entering components, which are indicative of systemic exposure and potential direct activity, particularly under representative pathological conditions, remains notably scarce and insufficient. This study therefore aims to systematically characterize the comprehensive chemical profile of Yupingfeng Granules by employing advanced analytical techniques such as HPLC-MS. Furthermore, it seeks to comprehensively investigate and characterize its blood-entering components specifically in cyclophosphamide-induced immunodeficient rat models, comparing them with normal physiological conditions where applicable. The overarching objective is to identify, quantify, and shed light on the formula′s potential active constituents that reach the systemic circulation. This work is expected to provide a more solid and detailed scientific basis for a deeper, molecular-level understanding of the pharmacodynamic mechanism of this important traditional Chinese medicine preparation and to inform its future rational clinical application and quality control. An ultra performance liquid chromatography-quadrupole-time-of-flight mass spectrometry (UPLC-Q-TOF MS) technology was used to identify the chemical composition of Yupingfeng Granules and the plasma-entering components after administration to immunodeficient model rats. The prepared granule and serum samples were analyzed using a Waters CORTECS UPLC C18 column (150 mm×2.1 mm, 1.6 μm) with gradient elution of 0.1% formic acid aqueous solution and acetonitrile as the mobile phases. The flow rate was set at 0.3 mL/min, the column temperature was maintained at 35 ℃, and the injection volume was 3 µL. Data were acquired in both positive and negative ion modes using an electrospray ionization source. The identification of chemical constituents was performed by comparing retention times, accurate relative molecular masses, and MS/MS fragment ions with those of reference standards, along with reference to relevant literature. Through a systematic analysis involving comparison of retention times, accurate molecular weights, and MS/MS fragment ions, combined with cross-referencing against relevant literature and authenticated reference standards, the chemical profile of Yupingfeng Granules and the bioactive components absorbed in vivo were comprehensively characterized. The investigation successfully identified a total of 52 chemical constituents in Yupingfeng Granules. Furthermore, 11 bioavailable components were detected in rat plasma after administration. These compounds encompass a diverse range of chemical classes, specifically including 11 flavonoids, 13 organic acids, 13 phenylpropanoids, 12 terpenoids, and 3 additional components categorized as aldehydes, nucleosides, and amino acids. This detailed identification provides a thorough overview of the chemical composition of the granules and elucidates the key constituents that are systemically absorbed. This study systematically analyzed the blood-entering components of Yupingfeng Granules under immunodeficient pathological conditions. This distinction is critically important, as the altered internal environment in a disease model may significantly influence the absorption, metabolism, and distribution of herbal compounds. The research not only clarifies the comprehensive chemical material basis of the formula in vitro by establishing a detailed chromatographic fingerprint but also, more significantly, bridges the gap to in vivo pharmacology by identifying which specific compounds from the complex mixture actually enter the systemic circulation. By correlating the in vitro chemical profile with the in vivo exposure data, the study effectively pinpoints a refined set of potential direct-acting substances that are most likely to contribute to the observed therapeutic effects. Consequently, these findings provide crucial experimental clues and a reliable analytical foundation for subsequent, more targeted research. This includes in-depth investigations into efficacy correlation—linking specific blood components to immunomodulatory activities—and the detailed exploration of its molecular mechanisms of action, thereby significantly advancing the scientific understanding of this classic formula.

Key words: Yupingfeng Granules, ultra performance liquid chromatography-quadrupole-time-of-flight mass spectrometry (UPLC-Q-TOF MS), chemical constituents, bioavailable components

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