PHÂN TÍCH ĐỊNH LƯỢNG HỢP CHẤT ACTEOSIDE VÀ JIONOSIDE B1 TRONG RỄ CỦ LOÀI ĐỊA HOÀNG Rehmannia glutinosa BẰNG PHƯƠNG PHÁP SẮC KÝ LỎNG HIỆU NĂNG CAO
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Ngày nhận bài: 30/03/26                Ngày hoàn thiện: 28/05/26                Ngày đăng: 29/05/26Tóm tắt
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[1] R.-X. Zhang, M.-X. Li, and Z.-P. Jia, “Rehmannia glutinosa: Review of botany, chemistry and pharmacology,” Journal of Ethnopharmacology, vol. 117, pp. 199-214, 2008.
[2] C. Liu, R. Ma, L. Wang, R. Zhu, H. Liu, Y. Guo, B. Zhao, S. Zhao, J. Tang, Y. Li, J. Niu, M. Fu, D. Zhang, and S. Gao, “Rehmanniae Radix in osteoporosis: A review of traditional Chinese medicinal uses, phytochemistry, pharmacokinetics and pharmacology,” Journal of Ethnopharmacology, vol. 198, pp. 351-362, 2017.
[3] T. Y. Poon, K. L. Ong, and B. M. Cheung, “Review of the effects of the traditional Chinese medicine Rehmannia Six Formula on diabetes mellitus and its complications,” J. Diabetes, vol. 3, pp. 184-200, 2011.
[4] K. T. Vu, T. K. T. Nguyen, T. T. H. Nguyen, T. T. H. Dan, and V. K. Phan, “Iridoid glycosides link with phenylpropanoids from Rehmannia glutinosa,” Natural Product Research, vol. 36, no. 20, pp. 5370-5375, 2022.
[5] K. T. Vu, T. D. Nguyen, S. Yohan, N. Wan, H. K. Seung, V. K. Phan, T. T. H. Dan, and T. D. Cong, “Two new iridoid-sesquiterpene conjugates from Rehmannia glutinosa,” Phytochemistry Letters, vol. 43, pp. 208-211, 2021.
[6] K. T. Vu, T. H. Do, and T. H. Le, “Phenylpropanoid glycosides from Rehmannia glutinosa tuberous roots and α-glucosidase inhibitory activity,” (In Vietnamese), Journal of Analytical Sciences, vol. 27, pp. 76-82, 2022.
[7] T. H. Le and K. T. Vu, “Iridoid glycosides from Rehmannia glutinosa,” (In Vietnamese), Journal of Analytical Sciences, vol. 27, pp. 136-142, 2022.
[8] B. Magnusson and U. Örnemark (eds.), The Fitness for Purpose of Analytical Methods – A Laboratory Guide to Method Validation and Related Topics, Eurachem Guide, ISBN 978-91-87461-59-0, 2nd ed, 2014.
[9] H. Li, G. X. Chou, Z. T. Wang, and Z. B. Hu, “HPLC determination of acteoside in Radix Rehmanniae,” Zhongguo Zhong Yao Za Zhi, vol. 31, no.10, pp. 822-824, 2006.
[10] Z. Xu, X. Dai, S. Su, H. Yan, S. Guo, D. Qian, and J. A. Duan, “Investigation of dynamic accumulation and regularity of nine glycosides and saccharides in Rehmannia glutinosa by rapid quantitative analysis technology,” Journal of Separation Science, vol. 42, no. 8, pp.1489-1499, 2019.
[11] B. Zhang, L. A. Weston, M. Li, X. Zhu, P. A. Weston, F. Feng, B. Zhang, L. Zhang, L. Gu, and Z. Zhang, “Rehmannia glutinosa Replant Issues: Root Exudate-Rhizobiome Interactions Clearly Influence Replant Success,” Front. Microbiol, vol. 11, 2020, Art. no. 1413.
[12] H. Fan, G. Huang, Q. Guo, J. Ma, Y. Huang, S. Huang, M. Wei, C. Xie, B. Yan, S. Zhao, G. Chen, J. Zheng, Z. Zhou, and H. Gao, “Bioactive Phenylpropanoid Glycosides, Dimers, and Heterodimers from the Bark of Cinnamomum cassia (L.) J.Presl.,” Journal of Agricultural and Food Chemistry, vol. 72, no. 29, pp. 16263-16275, 2024.
[13] J. Feng, F. He, Y. Huang, M. Zhou, X. Liu, X. Ye, R. Yang, W. Tian, and H. Chen, “Inhibitory effects of phenolic glycosides from Trollius chinensis Bunge on α-glucosidase: inhibition kinetics and mechanisms,” Food & Function, no. 5, pp. 2377-3080, 2022.
[14] Q. V. Nguyen, V. C. Vu, T. H. Nguyen, T. H. Pham, H. N. Nguyen, V. C. Pham, and X. N. Nguyen, “One new phenylpropanoid glycoside from Myxopyrum smilacifolium with α-glucosidase inhibitory activity,” J. Asian Nat. Prod. Res., vol. 24, no. 9, pp. 891-897, 2022.
[15] L. L. Yuan, B. B. Shi, T. Feng, R. Huang, Z. H. Li, H. P. Chen, and J. K. Liu, “α-Glucosidase inhibitory phenylpropanoid-dihydrochalcone hybrids from the leaves of medicinal plant Malus hupehensis (Pamp.) Rehder,” Phytochemistry, vol. 204, 2022, Art. no. 113421.
DOI: https://doi.org/10.34238/tnu-jst.15257
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