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Codonopsis Radix (CR) is recorded as the roots of Codonopsis pilosula, C. pilosula var. modesta and Codonopsis tangshen. It is difficult to evaluate the quality of CR because of the existence of many original plants. In this paper, a strategy integrating chromatographic analysis and chemometrics for the quality control of CR is proposed. Systematic analysis of the chemical composition of CR was achieved through high performance liquid chromatography (HPLC) fingerprinting. Based on the HPLC fingerprinting data, chemometrics, including unsupervised principal component analysis (PCA) and supervised orthogonal partial least squares-discrimination analysis (OPLS-DA), were applied to classify all CR samples. Components with variable importance in projection values higher than 1 in the OPLS-DA model were selected as potential chemical markers for distinguishing the origins of CR. Finally, an HPLC method was validated for determining the five characteristic ingredients in the CR samples. HPLC characteristic fingerprints showed 17 common peaks for C. pilosula, 13 for C. pilosula var. modesta, and 9 for C. tangshen, and all of them showed good similarity (>0.9). Additionally, there were 9 common peaks for all CR samples with relatively poor similarity, ranging from 0.607 to 0.970. PCA could differentiate CR from the three origins, except for a partial overlap between C. pilosula and C. pilosula var. Modesta, and the OPLS-DA model achieved excellent classification results. Eight components (peaks 12, 8, lobetyolin, 10, codonopsin І, syringin, 3, and 11) were selected as potential chemical markers. There was a large discrepancy in the contents of the five characteristic ingredients in all samples, with the relative standard deviation ranging from 36.0% (lobetyolin) to 85.9% (atractylenolide Ⅲ). The average contents of the five characteristic ingredients were similar between C. pilosula and C. pilosula var. modesta samples and notably higher than those of C. tangshen samples. Consequently, a rapid, precise, and feasible strategy was established for the discrimination and quality control of CR with different origins.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
247--258
Opis fizyczny
Bibliogr. 26 poz., rys., tab., wykr.
Twórcy
autor
- School of Pharmacy, Shanxi Health Vocational College, 100 Wenjin Street, Jinzhong 030619, Shanxi Province, PR China
autor
- School of Pharmacy, Shanxi Health Vocational College, 100 Wenjin Street, Jinzhong 030619, Shanxi Province, PR China
autor
- School of Pharmacy, Shanxi Health Vocational College, 100 Wenjin Street, Jinzhong 030619, Shanxi Province, PR China
autor
- School of Pharmacy, Shanxi Health Vocational College, 100 Wenjin Street, Jinzhong 030619, Shanxi Province, PR China
autor
- School of Pharmacy, Shanxi Health Vocational College, 100 Wenjin Street, Jinzhong 030619, Shanxi Province, PR China
Bibliografia
- 1. China Pharmacopoeia Committee. Pharmacopoeia of the People’s Republic of China (I); China Medical Science Press: Beijing, 2020; pp. 293–4.
- 2. Yang, D. D.; Chen, Y.; Guo, F. X.; Huang, B. T.; Okyere, S. A.; Wang, H. Ind. Crops Prod. 2019, 142, 111844.
- 3. Gu, C.; Cao, L. Y.; Su, Q.; Guan, L. J.; Yang, J.; Gao, J. P. J. Chin. Med. Mate. 2016, 39(8), 1716–22.
- 4. Gao, S. M.; Liu, J. S.; Wang, M.; Cao, T. T.; Qi, Y. D.; Zhang, B. G.; Liu, H. T.; Sun, X. B.; Xiao, P. G. Chin. Herb. Med. 2019, 11, 160–8.
- 5. Zhang, X.; Li, J. K.; Zhao, Y. J.; Gao, J. P. Chin. J. Exp. Tradit. Med. Form. 2018, 24(24), 53–9.
- 6. Zhang, J.; Xu, X. J.; Xu, W.; Huang, J.; Bai, J. Q.; Zhu, D. Y.; Qiu, X. H. Chin. J. Exp. Tradit. Med. Form. 2015, 21(9), 59–63.
- 7. Li, Z. Y.; Wang, A. N.; Liu, X. J.; Xue, S. Y.; Qin, X. M.; Guo, X. Q.; Zhang L. Z. J. Shanxi Med. Univ. 2011, 42(1), 56–62.
- 8. Gao, S. M.; Liu, J. S.; Sun, T.; Liu, F. S.; Jing, H.; Qi, Y. D.; Zhang, B. G.; Liu, H. T.; Xiao, P. G. China J. Chin. Mater. Med. 2016, 41(20), 3753–60.
- 9. Li, R. Y.; Lai, L. N.; Nie, L.; Yan, X. X. Chin. J. Exp. Tradit. Med. Form. 2019, 25(11), 133–8.
- 10. Huang, Y. Y.; Zhang, Y.; Kang, L. P.; Yu, Y.; Guo, L. P. Chin. Tradit. Herbal Drugs 2018, 79(1), 239–50.
- 11. Feng, P. P.; Li, Z. X.; Yuan, Z. J. Shenyang Pharm. Univ. 2012, 29(4), 307–11.
- 12. Wang, X. X.; Zhuang, P. Y.; Chen, J. M.; Yang, Y. K.; Lin, X. Y.; Zhang, D. Y. Chin. Tradit. Herbal Drugs 2017, 48(9), 1719–23.
- 13. Feng, Y. J.; Wang, X. X.; Zhuang, P. Y.; Zhang, D. Y.; Gao, L.; Chen, J. M.; Han, G. J. Chin. Med. Mate. 2017, 42(1), 135–9.
- 14. Chen, Q. F.; Deng, X. Y.; Zhu, H. F. Sci. Technol. Food Ind. 2016, 37(6), 64–7.
- 15. Gong, D, J.; Chen, P. Y.; Pang, Y. P.; Wang, X. Y. Linshizhen Med. Mater. Med. Res. 2015, 26(1), 70–2.
- 16. Yang, J.; Su, Q.; Liu, E. L.; Gao, J. P. J. Shanxi Med. Univ. 2010, 41(8), 698–702.
- 17. Duan, Q. M.; Liang, Z. S.; Yang, D. F. Chin. Tradit. Herbal Drugs 2012, 43(5), 995–9.
- 18. Wang, R. S.; Liu, Y. Q.; Guo, J. L.; Pang, W. R.; Zhao P. Chin. J. Pharm. Anal. 2007, 27(8), 1229–31.
- 19. Du, Y. Y.; Li, Q.; Liu, J. J.; Yin, Y. D.; Bi K. S. Anal. Methods 2014, 6, 5891.
- 20. Song, J.; Chen, F.; Liu, J.; Zou, Y.; Luo, Y.; Yi, X.; Meng, J.; Chen, X. Phcog. Mag. 2017, 13, 180–7.
- 21. Lei, Y.; Wang, Y.; Sun, Z.; Lin, M. Y.; Cai, X.; Huang, D.; Luo, K.; Tan S.H.; Zhang Y.; Yan J. Y.; Xia, X. H. J. Sep. Sci. 2020, 43, 1382–92.
- 22. Lin, L.; Li, H. H.; Xie, H.; Yan, G. J.; Hu, Y. T.; Lu, T. L.; Mao, C. Q. Chin. Tradit. Herbal Drugs 2021, 52(6), 1751–8.
- 23. Nurfarhana, H.; Tahir, A.; Norhidayu, M. Z. J. Food Sci. 2018, 83(12), 2903–11.
- 24. Ren, M. J.; Hu, Y. F.; Zhu, Y. B.; Qiu, P.; Li, Z.; Li, W. L. Chin. Tradit. Herbal Drugs 2022, 53(5), 1338–44.
- 25. Liao, Y. J.; Ao, M. Y.; Peng, Y.; Hu, C. J.; Chen, Z. M.; Xu, R. C. Chin. Tradit. Herbal Drugs 2021, 52(11), 3224–33.
- 26. Liu, H.; Chen, X. C.; Zhao, X. P.; Zhao, B. C.; Qian, K.; Shi, Y.; Baruscotti, M.; Wang, Y. Front. Pharmacol. 2018, 9, 1288. https://doi.org/10.3389/fphar.2018.01288.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2bac5bcd-7368-4f30-bfad-63fc7812cff7