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논문 기본 정보

자료유형
학술저널
저자정보
Mengya Zhao (Changchun University of Chinese Medicine) Yusheng Xiao (Changchun University of Chinese Medicine) Yanyan Chang (Changchun University of Chinese Medicine) Lu Tian (Changchun University of Chinese Medicine) Yujiang Zhou (Changchun University of Chinese Medicine) Shuying Liu (Changchun University of Chinese Medicine) Huanxi Zhao (Changchun University of Chinese Medicine) Yang Xiu (Changchun University of Chinese Medicine)
저널정보
고려인삼학회 Journal of Ginseng Research Journal of Ginseng Research Vol.48 No.4
발행연도
2024.7
수록면
366 - 372 (7page)

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초록· 키워드

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Background: The biological activity and pharmacological effects of rare ginsenosides have been proven to be superior to those of the major ginsenosides, but they are rarely found in ginseng.
Methods: Ginsenoside Rb1 was chemically transformed with the involvement of methanol molecules by a synthesized heterogeneous catalyst 12-HPW@MeSi, which was obtained by the immobilization of 12-phosphotungstic acid on a mesoporous silica framework. High-performance liquid chromatography coupled with mass spectrometry was used to identify the transformation products.
Results: A total of 18 transformation products were obtained and identified. Methanol was found to be involved in the formation of 8 products formed by the addition of methanol molecules to the C-24 (25), C-20 (21) or C-20 (22) double bonds of the aglycone. The transformation pathways of ginsenoside Rb1 involved deglycosylation, addition, elimination, cycloaddition, and epimerization reactions. These pathways could be elucidated in terms of the stability of the generated carbenium ion. In addition, 12-HPW@MeSi was able to maintain a 60.5% conversion rate of Rb1 after 5 cycles.
Conclusion: Tandem and high-resolution mass spectrometry analysis allowed rapid and accurate identification of the transformation products through the characteristic fragment ions and neutral loss. Rare ginsenosides with methoxyl groups grafted at the C-25 and C-20 positions were obtained for the first time by chemical transformation using the composite catalyst 12-HPW@MeSi, which also enabled cyclic heterogeneous transformation and facile centrifugal separation of ginsenosides. This work provides an efficient and recyclable strategy for the preparation of rare ginsenosides with the involvement of organic molecules.

목차

ABSTRACT
1. Introduction
2. Experimental
3. Results and discussion
4. Conclusion
References

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