Simultaneous determination of 5 components in Physochlaina infundibularis Kuang by QAMS*

ZHANG Yu-ru, ZHANG Hong, MENG Xue, ZHANG Yu, WANG Di, CHEN Juan

Chinese Journal of Pharmaceutical Analysis ›› 2024, Vol. 44 ›› Issue (9) : 1604-1612.

PDF(1601 KB)
PDF(1601 KB)
Chinese Journal of Pharmaceutical Analysis ›› 2024, Vol. 44 ›› Issue (9) : 1604-1612. DOI: 10.16155/j.0254-1793.2023-0816
Standard Deliberation

Simultaneous determination of 5 components in Physochlaina infundibularis Kuang by QAMS*

  • ZHANG Yu-ru, ZHANG Hong, MENG Xue, ZHANG Yu, WANG Di, CHEN Juan**
Author information +
History +

Abstract

Objective: To establish a quantitative analysis of multi-components by single marker (QAMS) method to simultaneously determine the contents of scopolamine, anisodamine, scopolin, hyoscyamine and scopoletin in Physochlaina infundibularis Kuang. Methods: Agilent 5 TC-C18 (250 mm×4.6 mm, 5 μm) column was used with methanol-0.1% phosphoric acid aqueous solution as mobile phase for gradient elution at a flow rate of 1.0 mL·min-1.The detection wavelengths were 210 nm and 344 nm, the column temperature was 30 °C, and the injection volume was 10 μL. The relative correction factors for scopolamine, scopolin, hyoscyamine and scopoletin and anisodamine were calculated by using anisodamine as the internal reference substance. The contents were determined and compared with the results of external standard method (ESM). Results: The five components had good linear relationship in their respective ranges(r=1.000). The relative correction factors of scopolamine, anisodamine, scopolin, hyoscyamine and scopoletin were 0.951 8, 0.562 6, 0.830 4 and 0.433 9, respectively, with good repeatability. The contents of scopolamine, anisodamine, scopolin, hyoscyamine and scopoletin in P. infundibularis from 10 habitats calculated by QAMS method were not significantly different from those determined by ESM. Conclusion: The method is accurate, stable and reproducible, and can be used for the quality control of P. infundibularis.

Key words

Physochlaina infundibularis Kuang / alkaloid / multi-components by single marker (QAMS) / content determination / relative correction factors (RCF)

Cite this article

Download Citations
ZHANG Yu-ru, ZHANG Hong, MENG Xue, ZHANG Yu, WANG Di, CHEN Juan. Simultaneous determination of 5 components in Physochlaina infundibularis Kuang by QAMS*[J]. Chinese Journal of Pharmaceutical Analysis, 2024, 44(9): 1604-1612 https://doi.org/10.16155/j.0254-1793.2023-0816

References

[1] 赵森淼, 侴桂新, 王峥涛. 华山参化学成分研究[J]. 中草药, 2013, 44(8): 938
ZHAO SM, CHOU GX, WANG ZT. Chemical constituents from roots and rhizomes of Physochlaina infundibularis [J]. Chin Tradit Herb Drugs, 2013, 44(8): 938
[2] 李松武, 赵云荣, 庆伟霞, 等. 华山参的研究进展[J]. 济源职业技术学院学报, 2005 (2): 8
LI SW, ZHAO YR, QING WX, et al. Research development of physochlaina infundibularis kuang[J]. J Jiyuan Vocat Technol Coll, 2005 (2): 8
[3] 娄玉霞, 聂桂华, 李振国. 华山参中东莨菪内酯的含量测定方法研究[J]. 药物分析杂志, 2011, 31(6): 1137
LOU YX, NIE GH, LI ZG. HPLC determination of scopoletin in Physochlainae Radix[J]. Chin J Pharm Anal, 2011, 31(6): 1137
[4] 陈妤, 闫晓楠, 杨晓宏. HPLC法同时测定华山参中山莨菪碱、东莨菪碱、阿托品的含量[J]. 药学研究, 2015, 34(4): 209
CHEN Y, YAN XN, YANG XH. Determination of anisodamine, scopolamine and atropine in Huashanshen by HPLC[J]. J Pharm Res, 2015, 34(4): 209
[5] 中华人民共和国药典2020年版. 一部[S]. 2020: 215
ChP 2020. Vol Ⅰ [S]. 2020: 215
[6] 张文婷, 张春阳, 黄伟, 等. 湖南产颠茄草不同生长期8个成分的动态变化及不同部位分布特征[J]. 中草药, 2016, 47(22): 4072
ZHANG WT, ZHANG CY, HUANG W, et al. Dynamic accumulations and distributions of eight chemical constituents of Hunan Belladonnae Herba in various parts and different growing periods [J]. Chin Tradit Herb Drugs, 2016, 47(22): 4072
[7] 康志欣, 袁雪琴, 张春阳, 等. UPLC-MS/MS同时测定宁夏枸杞中香豆素类和苯丙酸类9个成分的含量[J]. 中国现代中药, 2022, 24(10): 1861
KANG ZX, YUAN XQ, ZHANG CY, et al. Simultaneous determination of the contents of 9 components including coumarin and phenylpropionic acid in Lycium barbarum L. by UPLC-MS/MS [J]. Mod Chin Med, 2022, 24(10): 1861
[8] 胡静, 杨媛媛, 任慧, 等. 光叶丁公藤中化学成分的UPLC-Q-Exactive Focus-MS/MS鉴定[J]. 中国实验方剂学杂志, 2020, 26(18): 124
HU J, YANG YY, REN H, et al. Identification of chemical constituents in caulis of Erycibe schmidtii by UPLC-Q-Exactive Focus-MS/MS[J]. Chin J Exp Tradit Med Form, 2020, 26(18): 124
[9] 冯亚茹,周荣荣,耿佳乐, 等. 一测多评法同时测定大黄药材中8个结合型蒽醌含量的系统研究[J]. 药物分析杂志, 2022, 42(11): 1884
FENG YR, ZHOU RR, GENG JL, et al. Systematic study on simultaneous determination of eight anthraquinone glycosides in Rhei Radix et Rhizoma by QAMS [J]. Chin J Pharm Anal, 2022, 42(11): 1884
[10] 梁国嫔, 袁铭铭, 熊晓丽, 等. 一测多评法同时测定大青叶中4个黄酮类成分[J]. 药物分析杂志, 2023, 43(4): 582
LIANG GP, YUAN MM, XIONG XL, et al. Simultaneous determination of four flavonoids in Folium Isatidis by QAMS [J]. Chin J Pharm Anal, 2023, 43(4): 582
[11] 王旭芳, 魏敬东, 刘伦, 等. 基于HPLC-QAMS同时测定荷叶水提物中6个成分的含量[J]. 药物分析杂志, 2023, 43(2): 227
WANG XF, WEI JD, LIU L, et al. Simultaneous determination of six components in aqueous extract of lotus leaf by HPLC-QAMS [J]. Chin J Pharm Anal, 2023, 43(2): 227
[12] 魏真真, 陈姿伊, 叶春颖, 等. 一测多评法同时测定白芍药材及制剂中9个成分含量[J]. 中华中医药学刊, 2023, 41(10): 218
WEI ZZ, CHEN ZY, YE CY, et al. Simultaneous quantitative determination of 9 components in crude drugs and preparations of Baishao (Paeoniae Radix Alba) by QAMS method [J]. Chin Arch Tradit Chin Med, 2023, 41(10): 218
[13] 周洪旭, 张毅, 杨新勇, 等. 一测多评法测定川射干中8个异黄酮类成分的含量[J]. 药物分析杂志, 2022, 42(6): 1072
ZHOU HX, ZHANG Y, YANG XY, et al. Simultaneous determination of 8 isoflavones in Iris tectorum Maxim by quantitative analysis of multi-components with single marker [J]. Chin J Pharm Anal, 2022, 42(6): 1072
[14] 任慧, 崔小敏, 胡静, 等. 一测多评法对金铃子散中来源于延胡索的5个生物碱成分含量的同时测定[J]. 西部中医药, 2022, 35(11): 73
REN H. CUI XM, HU J, et al. Simultaneous determination of five alkaloids from Corydalis Rhizoma in Jinlingzi powder by QAMS [J]. West J Tradit Chin Med, 2022, 35(11): 73
[15] 薛显妹, 梁智科, 何翠敏, 等. 基于一测多评法测定相思子叶总黄酮部位中5种成分含量[J]. 中药新药与临床药理, 2023, 34(2): 249
XUE XM, LIANG ZK, HE CM, et al. Simultaneous determination of 5 components in total flavonoids fraction of Abrus precatorious leaves based on quantitative analysis of multi-components by single marker[J]. Tradit Chin Drug Res Clin Pharmacol, 2023, 34(2): 249
[16] 郭敏, 梁德颖, 黄蓉, 等. 一测多评法在四神丸中9种成分含量的测定及质量评价中的应用[J]. 中南民族大学学报(自然科学版), 2023, 42(2): 174
GUO M, LIANG DY, HUANG R, et al. The application of one test and multiple evaluation method in the content determination and quality evaluation of 9 components in Sishen pills [J]. J South Cent Univ Nat ( Nat Sci Ed), 2023, 42(2): 174
[17] 辛晓芳, 刘特津, 张公安. 一测多评法测定槐花颗粒中7种有效成分含量[J]. 广西中医药, 2022, 45(6): 61
XIN XF, LIU TJ, ZHANG GA. Determination of 7 active ingredients concentration in Huaihua granules by QAMS [J]. Guangxi J Tradit Chin Med, 2022, 45(6): 61
[18] SU C, LI C, SUN K, et al. Quantitative analysis of bioactive components in walnut leaves by UHPLC-Q-Orbitrap HRMS combined with QAMS [J]. Food Chem, 2020, 331: 127180
[19] REN R, LI Y, CHEN H, et al. Carotenoid contents of Lycium barbarum: a novel QAMS analyses, geographical origins discriminant evaluation, and storage stability assessment[J]. Molecules, 2021, 26(17): 5374
[20] 孙金洪, 卢柳衣, 潘万龙. 莨菪提取物中生物碱抗肿瘤作用机理的研究进展[J]. 大众科技, 2023, 25(10): 61
SUN JH, LU LY, PAN WL. Research progress on the anti-tumor mechanism of alkaloids in scopolamine extract [J]. Popul Sci Technol, 2023, 25(10): 61
[21] 臧二欢, 李沁瑜, 许谨帆, 等. 茄科含莨菪烷类生物碱类群药用植物亲缘学初探[J]. 中国中药杂志, 2021, 46(17): 4344
ZANG EH, LI QY, XU JF, et al. A preliminary pharmacophylogenetic study of Solanaceae medicinal plants containing tropane alkaloids [J]. China J Chin Mater Med, 2021, 46(17): 4344
[22] YANG T, HUANG Y, LI Q, et al. Determination of ten flavonoids in the raw and fermented fructus aurantii by quantitative analysis of multicomponents via a single marker (qams) based on UPLC[J]. J Anal Methods Chem, 2023, 2023: 6067647
[23] ZHANG H, XIE W, LIU J, et al. Systematic study on a quantitative analysis of multicomponents by single marker (QAMS) method for simultaneous determination of eight constituents in pneumonia mixture by UPLC-MS/MS[J]. J Anal Methods Chem, 2021: 8311588
PDF(1601 KB)

71

Accesses

0

Citation

Detail

Sections
Recommended

/