Towards differentiation of Panax vietnamensis and Panax vietnamensis var. fuscidiscus by UPLC-QTOF-MS
Authors
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Long Huynh Kim Vu
Ton Duc Thang University, Ho Chi Minh City, Viet Namhttps://orcid.org/0000-0003-3888-4174
- Duc Minh Nguyen
Ton Duc Thang University, Ho Chi Minh City, Viet Nam- Long Ke Phan
Vietnam National Museum of Nature, Vietnam Academy of Science and Technology, Hanoi, Viet Namhttps://orcid.org/0000-0003-4998-260X- Yen Trang Hai Nguyen
Ton Duc Thang University, Ho Chi Minh City, Viet Nam- Huy Truong Nguyen nguyentruonghuy@tdtu.edu.vn
Ton Duc Thang University, Ho Chi Minh City, Viet NamDOI:
10.46223/HCMCOUJS.tech.en.14.2.3047.2024Keywords:
Lai Chau ginseng; Panax vietnamensis; Panax vietnamensis var. fuscidiscus; UPLC-ToF-MS; Vietnamese ginsengAbstract
Vietnamese ginseng (Panax vietnamensis Ha et Grusvh., Araliaceae - PV) is a high-value medicinal plant of Vietnam. Recently, a new variety of this plant P. vietnamensis var fuscidiscus (PVF), so-called Lai Chau ginseng, was discovered and circulated on the Vietnam market along with PV. PV and PVF rhizomes and roots are preliminarily reported to possess similar saponin composition. However, PV is much more expensive than PVF due to the higher regard of the consumer, which consequently leads to the inattentive misuse or intentional adulteration of PV by PVF. In this study, a UPLC-ToF-MS method was developed to distinguish PV and PVF based on their saponin profiles. The UPLC qualitative result showed that the saponin constituent of PVF is more complex than that of PV. The significant differences in the chromatogram of PV and PVF extracts are the peaks eluted from 32 - 48 min. Vina-ginsenoside R2 (9), chikusetsusaponin L8 (10), and notoginsenoside R4 (12) are characterized for PVF, while notoginsenoside Fa (13), quinquenoside R1 (16), and pseudoginsenoside Rs1 (19) are specialized for PV. The preliminary quantitative determination result showed that the content of majonoside R2, ginsenoside Rg1, ginsenoside Rb1, and ginsenoside Rd in PV is higher than in PVF. In contrast, the content of majonoside R1 and vina-ginsenoside R2 in PVF is significantly higher than in PV. The developed method could be used as an effective method to distinguish PV and PVF.Downloads
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Konoshima, T., Takasaki, M., Ichiishi, E., Murakami, T., Tokuda, H., Nishino, H., … Yamasaki, K. (1999). Cancer chemopreventive activity of majonoside-R2 from Vietnamese ginseng, Panax vietnamensis. Cancer Letters, 147(1), 11-16. doi:10.1016/S0304-3835(99)00257-8
Nguyen, H. T. T., Matsumoto, K., Kasai, R., Yamasaki, K., & Watanabe, H. (1998). In vitro antioxidant activity of Vietnamese ginseng saponin and its components. Biological Pharmaceutical Bulletin, 21(9), 978-981.
Nguyen, H. T. T., Matsumoto, K., Yamasaki, K., Nguyen, M. D., Nguyen, N. T., & Watanabe, H. (1996). Effects of Vietnamese ginseng on opioid agonist - and conditioned fear stress -induced antinociception. Phytomedicine, 3(1), 33-39. doi:10.1016/S0944-7113(96)80007-9
Nguyen, M. D., Nguyen, N. T., Kasai, R., Ito, A., Yamasaki, K., & Tanaka, O. (1993). Saponins from Vietnamese ginseng, Panax vietnamensis Ha et Grushv. Collected in central Vietnam. I. Chemical and Pharmaceutical Bulletin, 41(11), 2010-2014.
Nguyen, M. D., Nguyen, N. T., Kasai, R., Ito, A., Yamasaki, K., & Tanaka, O. (1994a). Saponins from Vietnamese Ginseng, Panax vietnamensis Ha et Grushv. Collected in central Vietnam. II. Chemical and Pharmaceutical Bulletin, 42(1), 115-122.
Nguyen, M. D., Nguyen, N. T., Kasai, R., Ito, A., Yamasaki, K., & Tanaka, O. (1994b). Saponins from Vietnamese ginseng, Panax vietnamensis Ha et Grushv. Collected in central Vietnam. III. Chemical and Pharmaceutical Bulletin, 42(3), 634-640.
Nguyen, T. D., Villard, P. H., Barlatier, A., Elsisi, A. E., Jouve, E., Nguyen, M. D., . . . Lacarelle, B. (2000). Panax vietnamensis protects mice against carbon tetrachloride-induced hepatotoxicity without any modification of CYP2E1 gene expression. Planta Medica, 66(08), 714-719.
Phan, L. K., Vu, D. D., Phan, L. K., Nguyen, S. G., Nguyen, T. T. P., Le, L. T. M., & Le, S. T. (2014). Phylogenetic relationships of the Panax samples collected in Lai Chau Province based on MATK and ITS-rDNA sequences. Journal of Biotechnology, 12(2), 327-337.
Vu, L. K. H., Le, V. T. H., Nguyen, H. T., Kim, H. M., Kang, K. S., Park, J. H., & Nguyen, M. D. (2019). Increase in protective effect of Panax vietnamensis by heat processing on cisplatin-induced kidney cell toxicity. Molecules, 24(24), Article 4627.
Zhu, S., Fushimi, H., Cai, S., Chen, H., & Komatsu, K. (2003). A new variety of the genus Panax from southern Yunnan, China and its nucleotide sequences of 18S ribosomal RNA gene and matK gene. Journal of Japanese Botany, 78(2), 86-94.
Zhu, S., Zou, K., Cai, S., Meselhy, M. R., & Komatsu, K (2004). Simultaneous determination of triterpene saponins in ginseng drugs by high-performance liquid chromatography. Chemical and Pharmaceutical Bulletin, 52(8), 995-998. doi:10.1248/cpb.52.995
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Received: 02-11-2023Accepted: 28-11-2023Published: 19-04-2024Statistics Views
Abstract: 811 PDF: 341How to Cite
Vu, L. H. K., Nguyen, D. M., Phan, L. K., Nguyen, Y. T. H., & Nguyen, H. T. (2024). Towards differentiation of Panax vietnamensis and Panax vietnamensis var. fuscidiscus by UPLC-QTOF-MS. HO CHI MINH CITY OPEN UNIVERSITY JOURNAL OF SCIENCE - ENGINEERING AND TECHNOLOGY, 14(2), 19–27. https://doi.org/10.46223/HCMCOUJS.tech.en.14.2.3047.2024License
Copyright (c) 2024 Long Huynh Kim Vu; Duc Minh Nguyen; Long Ke Phan; Yen Trang Hai Nguyen; Huy Truong Nguyen

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- Duc Minh Nguyen
