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一种从防风根中快速发现和鉴定多糖潜在有效片段的综合策略。

An integrated strategy for rapid discovery and identification of the potential effective fragments of polysaccharides from Saposhnikoviae Radix.

机构信息

School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing, 102488, China.

School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing, 102488, China; The Key Research Laboratory of "Exploring Effective Substance in Classic and Famous Prescriptions of Traditional Chinese Medicine", The State Administration of Traditional Chinese Medicine of the People's Republic of China, Beijing, 102488, China.

出版信息

J Ethnopharmacol. 2024 Jan 30;319(Pt 1):117099. doi: 10.1016/j.jep.2023.117099. Epub 2023 Aug 26.

Abstract

ETHNOPHARMACOLOGICAL RELEVANCE

Saposhnikoviae Radix (SR) is a traditional Chinese medicine, known as "Fangfeng". As one of the main active components, Saposhnikoviae Radix polysaccharides (SP) demonstrated a range of biological activities, especially immunity regulation activity.

AIMS OF THE STUDY

This study aimed at exploring whether polysaccharides have activity after degradation, then discovering the potential effective fragments of SP.

MATERIALS AND METHODS

Here we establish the chromatographic fingerprints method for 32 batches of 1-phenyl-3-methyl-5-pyrazolone (PMP) derivatives of oligosaccharides by HPLC, meanwhile evaluating its immunomodulatory activity in vivo. Then, the potential effective fragments of SP were screened out based on the spectrum-effect relationship analysis between fingerprints and the pharmacological results. Besides, liquid chromatography ion trap-time of flight mass spectrometry (LC-IT-TOF MS) coupled with multiple data-mining techniques was used to identify the potential effective oligosaccharides.

RESULTS

These findings showed that the hydrolysate of SP have significant immunomodulatory, and the immunity regulation activity varies under different hydrolysis conditions. The 4 potential effective peaks of the hydrolysate of SP were mined by spectrum-effect relationship. Finally, the chemical structure of 4 potential effective oligosaccharide fragments of SP was elucidated based on LC-IT-TOF MS. F10 was inferred tentatively to be Hex→Hex→Hex→Hex→Hex→Gal; F18 was confirmed to be Rhamnose; F14 was inferred tentatively to be Hex→Hex→ Hex→Gal and F25 was tentatively inferred to be Ara→Gal.

CONCLUSIONS

This study may provide a sound experimental foundation in the exploration of the active fragments from macromolecular components with relatively complex structures such as polysaccharides.

摘要

民族药理学相关性

防风(Saposhnikoviae Radix)是一种传统中药,又称“防風”。作为其主要活性成分之一,防风多糖(SP)表现出多种生物活性,特别是免疫调节活性。

研究目的

本研究旨在探讨多糖降解后是否具有活性,然后发现 SP 的潜在有效片段。

材料与方法

本研究采用高效液相色谱法(HPLC)建立了 32 批 1-苯基-3-甲基-5-吡唑啉酮(PMP)衍生物寡糖的色谱指纹图谱方法,同时评估其体内免疫调节活性。然后,基于指纹图谱与药理结果的谱效关系分析,筛选出 SP 的潜在有效片段。此外,采用液相色谱离子阱飞行时间质谱(LC-IT-TOF MS)结合多种数据挖掘技术,鉴定潜在有效的寡糖。

结果

研究结果表明,SP 的水解产物具有显著的免疫调节作用,且在不同水解条件下,其免疫调节活性存在差异。通过谱效关系挖掘出 SP 水解产物的 4 个潜在有效峰。最后,基于 LC-IT-TOF MS 阐明了 SP 的 4 个潜在有效寡糖片段的化学结构。F10 被推测为 Hex→Hex→Hex→Hex→Hex→Gal;F18 被确认为鼠李糖;F14 被推测为 Hex→Hex→Hex→Gal,F25 被推测为 Ara→Gal。

结论

本研究可能为探索多糖等结构较为复杂的大分子成分的活性片段提供良好的实验基础。

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