成分分析

改进的微型化QuEChERS-GC/GC-MS法测定疏风解毒胶囊中4个挥发单萜含量*

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  • 1.云南民族大学化学与环境学院,昆明 650500;
    2.生物基材料绿色制备技术国家地方联合工程研究中心,昆明 650500
第一作者 Tel:18468057641;E-mail:2912331435@ qq.com
**Tel:13888610792;E-mail:2314972096@ qq.com

收稿日期: 2023-07-17

  网络出版日期: 2024-06-24

基金资助

*国家自然基金(21367025);云南省科技计划项目(2017FD118)

Determination of four monoterpenes in Shufeng Jiedu capsules by miniaturized QuEChERS-GC/GC-MS*

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  • 1. Yunnan Minzu University School of Chemistry and Environment, Kunming 650500, China;
    2. National Local Joint Engineering Research Center of Bio Based Materials Green Preparation Technology, Kunming 650500, China

Received date: 2023-07-17

  Online published: 2024-06-24

摘要

目的: 针对中药挥发性成分GC-MS或气相色谱测定前提取净化需要,设计并制作了新型微型化QuEChERS装置。建立的微型化QuEChERS-GC-MS对疏风解毒胶囊进行定性半定量分析,并建立测定疏风解毒胶囊挥发油中α-蒎烯、β-蒎烯、γ-松油烯和(-)-萜烯-4-醇4个成分的GC定量分析方法。方法: 通过漩涡提取中药挥发性成分,采用新型微型化QuEChERS净化装置进行净化,结合GC-MS对疏风解毒胶囊的化学成分进行鉴定,其含量采用GC外标法测定。色谱条件:GC-MS采用DB-WAX毛细管色谱柱(30 m×0.25 m,0.25 μm);GC采用SH-Rtx-1毛细管色谱柱(30.0 m×0.25 mm,0.25 μm),进样口温度为250 ℃,流速为1.0 mL·min-1,分流比为10∶1;载气为高纯度氦气(纯度>99.999%),进样量为1.0 μL;升温程序:初始温度为80 ℃,保持3 min,后以10 ℃·min-1速率升至250 ℃,保留为5 min。结果: 从疏风解毒胶囊共鉴定出24个挥发性成分,单萜类物质占50%以上。含量测定中选择4个主要活性单萜成分,4个成分进样浓度在测定范围内线性关系良好,精密度、稳定性和重复性良好,平均回收率(n=3)为80%~120%。3份样品中α-蒎烯、β-蒎烯、γ-松油烯和(-)-萜烯-4-醇的含量(n=3)分别为0.007 5、0.096 0、0.021 4和0.049 7 mg·g-1结论: 本文的微型化QuEChERS装置避免了过程挥发性成分损失,净化性能高,微量化速度快,有效改善中药挥发成分分析结果的准确性和精密性。

本文引用格式

尹金芳, 周琴, 苏万宝, 海潇平, 腾金梅, 扎史永宗, 熊华斌, 李晓芬, 高云涛 . 改进的微型化QuEChERS-GC/GC-MS法测定疏风解毒胶囊中4个挥发单萜含量*[J]. 药物分析杂志, 2023 , 43(8) : 1343 -1351 . DOI: 10.16155/j.0254-1793.2023.08.10

Abstract

Objective: To designe and manufacture a new miniaturized device of QuEChERS for the needs of extraction and purification during the pretreatment of volatile components of Chinese medicines. The established of miniaturized QuEChERS-GC-MS was applied for qualitative and semi quantitative analysis of Shufeng Jiedu capsules. On this basis, to establish a quantitative analysis method for the four components (α-Pinene, β-Pinene, γ-terpinene and (-)-terpene-4-alcohol) in the volatile oil of Shufeng Jiedu capsules. Methods: Extraction of volatile components from traditional Chinese medicine was by vortex. Purification was performed by using a novel miniaturized device of QuEChERS. The chemical constituents of Shufeng Jiedu capsules were identified by GC-MS. The content of Shufeng Jiedu capsules was determined by external standard method by GC. GC-MS was performed on a DB-WAX Capillary column (30 m×0.25 m, 0.25 μm film thickness). GC was performed on a SH-Rtx-1 Capillary column (30 m×0.25 m, 0.25 μm film thickness). The injector temperature was 250 ℃. The carrier gas flow rate was 1.0 mL·min-1. The split ratio was 10∶1, and high purity helium (purity > 99.999%) was used. The injection volume was 1.0 μL. The oven temperature procedure: the initial temperature was maintained at 80 ℃ for 3 min, after 250 ℃ at the rate of 10 ℃·min-1 for 5 min. Results: A total of 24 volatile components were identified in Shufeng Jiedu capsules. Monoterpene account for more than 50%, and four main active monoterpenes were selected in the content determination. The injection concentration of the 4 ingredients had a good linear relationship within the determination range. The precision, stability and repeatability of the experiment were well. And the average recovery rate (n=3) was within 80%-120%. The contents of α-pinene in three samples was 0.007 5 mg·g-1, the content of β-pinene in three samples was 0.096 0 mg·g-1, the content of γ-terpinene in three samples was 0.021 4 mg·g-1, and the content of (-)-terpene-4-alcohol in three samples was 0.049 7 mg·g-1. Conclusion: The miniaturized device of QuEChERS avoids the loss of volatile components during the process in this paper, which has high purification performance, miniaturized and fast. The accuracy and precision of volatile components analysis results of traditional Chinese medicine is effectively improve.

参考文献

[1] 中华人民共和国国家卫生健康委员会. 新型冠状病毒肺炎诊疗方案(试行第八版修订版)[J].中华临床感染病杂志, 2021, 14(2): 81
National Health Commission of the People's Republic of China. Diagnosis and treatment plan for novel coronavirus pneumonia (trial version of the eighth revision)[J].Chin J Clin infect Dis, 2021, 14(2): 81
[2] LI Y, LI J, ZHONG D, et al. Clinical practice guidelines and experts' consensuses of traditional Chinese herbal medicine for novel coronavirus (COVID-19):protocol of a systematic review[J].System Rev, 2020, 9(1): 1
[3] GAO L Q, XU J, CHEN SD. In silico screening of potential Chinese herbal medicine against COVID-19 by targeting SARS-CoV-2 3CLpro and angiotensin converting enzyme II using molecular docking[J].Chin J Integr Med, 2020, 26(7): 527
[4] LUO X, NI X, LIN J, et al. The add-on effect of Chinese herbal medicine on COVID-19: a systematic review and meta-analysis[J].Phytomedicine, 2020: 153282
[5] 陈春宇,董汉玉,纪瑞锋,等. 基于中医药理论的芳香类中药防治新型冠状病毒肺炎(COVID-19)的作用探讨[J].中草药, 2020, 51(11): 3051
CHEN CY, DONG HY, JI RF, et al. Discussion on role of aromatic Chinese herbs in prevention and treatment of COVID-19 based on theory of traditional Chinese medicine[J].Chin Tradit Herb Drugs, 2020, 51(11): 3051
[6] 张询,万娜,黄小英,等. 芳香中药在抗新型冠状病毒肺炎(COVID-19)中的应用[J].中草药, 2021,52(11): 3408
ZHANG X, WAN N, HUANG XY, et al. Application of aromatic Chinese materia medica in corona virus disease 2019 (COVID-19)[J].Chin Tradit Herb Drugs, 2021, 52(11): 3408
[7] 罗晶,殷宁,黄小英,等. 芳香中药防治新型冠状病毒肺炎作用机制探究[J].江西中医药大学学报, 2020, 32(3): 66
LUO J, YIN N, HUANG XY, et al. Study on the mechanism of aromatic traditional Chinese medicine compound on prevention and treatment of new coronavirus pneumonia[J].J Jiangxi Univ TCM, 2020, 32(3): 66
[8] 齐佳龙,李静,黄一楠,等. 基于文献的含挥发性成分中药防治新型冠状病毒肺炎作用探究[J].中医文献杂志, 2020, 38(2): 18
QI JL, LI J, HUANG YN, et al. Literature-based inquiry into the role of TCM volatile compounds in the prevention and treatment of COVID-19[J].J Tradit Chin Med Literat, 2020, 38(2): 18
[9] 王雅琪,杨园珍,伍振峰,等. 中药挥发油传统功效与现代研究进展[J].中草药, 2018, 49(2): 455
WANG YQ, YANG YZ, WU ZF, et al. Traditional function and modern research progress on volatile oil in Chinese materia medica[J].Chin Tradit Herb Drugs, 2018, 49(2): 455
[10] 中华人民共和国药典2020年版.一部[S]. 2020: 179
ChP 2020.Vol Ⅰ [S]. 2020: 179
[11] 秦艳,翁静艳,庞英明,等. 针捕集法、静态顶空法和水蒸气蒸馏法结合GC-MS对紫花地丁挥发性成分的比较[J].中国实验方剂学杂志, 2019, 25(4): 153
QIN Y, WENG JY, PANG YM, et al. Comparative analysis of volatile organic compounds in Viola yedoensis by needle trap,static headspace and hydrodistillation methods coupled with GC-MS[J].Chin J Exp Tradit Med Form, 2019, 25(4): 153
[12] 邹俊波,张小飞,史亚军,等. 水蒸气蒸馏法提取姜黄挥发性成分的提取动力学考察[J].中华中医药杂志, 2020, 35(3): 1175
ZOU JB, ZHANG XF, SHI YJ, et al. Kinetic study of extraction of volatile components from turmeric by steam distillation[J].China J Tradit Chin Med Pharm, 2020, 35(3): 1175
[13] 安彦. 固相微萃取技术及其在药物分析中的应用[J].天津药学, 2009, 21(6): 52
AN Y. Solid phase microextraction technology and its application to drug analysis [J].Tianjin Pharm, 2009, 21(6): 52
[14] 刘军锋,昝俊峰,陈家春,等. 固相微萃取技术在中药挥发性成分分析中的应用[J].湖北中医学院学报, 2006(3): 29
LIU JF, ZAN JF, CHEN JC, et al. Application of solid phase microextraction for volatile components analysis of traditional Chinese medicines[J].J Hubei Coll Tradit Chin Med, 2006(3): 29
[15] 王琦,齐美玲,傅若农. 固相微萃取气质联用测定中药辛夷挥发性成分[J].世界科学技术(中医药现代化), 2009, 11(1): 168
WANG Q, QI ML, FU RN. Determination of volatile components in Flos Magnoliae by solid phase microextraction GC/MS[J].World Sci Technol Mod Tradit Chin Med, 2009, 11(1): 168
[16] 刘相文,田景振,袁琦,等. 中药金樱子不同溶剂萃取物抗病毒活性分析[J].药物分析杂志, 2017, 37(12): 2196
LIU XW, TIAN JZ, YUAN Q, et al. Antiviral activity of different solvent extractionsof Rosa laevigata Michx[J].Chin J Pharm Anal, 2017, 37(12):2196
[17] 万强. 微波辅助-多相溶剂萃取-多元多维指纹图谱技术在决明子质量控制中的应用[D]. 广州: 广东药学院, 2015
WAN Q. Application of Microwave-assisted Multiphase Extraction Combined with Polynary Multidimensional Fingerprint in Quality Control of Cassia obtusifolia L[D]. Guangzhou: Guangdong Pharmaceutical University, 2015
[18] 马杰,罗疆南,李瑞莲,等. QuEChERS联合GC-MS/MS法测定心可宁胶囊中的17种有机氯农药残留量[J].中南药学, 2020, 18(7): 1156
MA J, LUO JG, LI RL, et al. Determination of 17 organochlorine pesticide residuesin Xinkening capsules by QuEChERS combined with GC-MS/MS[J].Central South Pharm, 2020, 18(7): 1156
[19] 王晗,汤一铸,赵晓亚,等. QuEChERS与液相色谱-串联质谱联用检测中药、调味品及外敷药物中去甲乌药碱的含量[J].色谱, 2019, 37(10): 1036
WANG H, TANG YZ, ZHAO XY, et al. Determination of higenamine in Chinese herbal medicine, condiments,and topical medicine by QuEChERS combined with liquid chromatography-tandem mass spectrometry[J].Chin J Chromatogr, 2019, 37(10):1036
[20] 赵庄,许杨彪,刘向红,等. 改进的QuEChERS结合气相色谱-三重四极杆质谱法快速测定酸肉中10种挥发性N-亚硝胺类化合物[J].色谱, 2017, 35(10): 1086
ZHAO Z, XU YB, LIU XH, et al. Rapid determination of 10 volatile N-nitrosamines in sour meats by modified QuEChERS and gas chromatography-triple quadrupole mass spectrometry[J].Chin J Chromatogr, 2017, 35(10):1086
[21] 戴裕杰,关荣发,黄海智,等. 改进的QuEChERS-气相色谱-质谱法测定中式腊肉中8种挥发性N-亚硝胺[J].食品科学, 2021, 42(20): 266
DAI YJ, GUAN RF, HUANG HZ, et al. Determination of eight volatile N-nitrosamines in Chinese bacon by modifified QuEChERS and gas chromatography-mass spectrometry[J].Food Sci, 2021, 42(20): 266
[22] 谢平,王晨情,叶雅惠,等. 基于网络药理学及分子对接虚拟筛选疏风解毒胶囊治疗新冠病毒肺炎(COVID-19)活性成分研究[J].药学研究, 2021, 40(9): 590
XIE P, WANG CQ, YE YH, et al. The potential targets and mechanisms of Shufeng Jiedu capsule for novel coronavirus pneumonia (COVID-19) based on network pharmacology and molecular docking[J].Pharm Res, 2021, 40(9): 590
[23] XIA RY, HU XY, FEI YT, et al. Shufeng Jiedu capsules for treating acute exacerbations of chronic obstructive pulmonary disease:a systematic review and meta-analysis[J].BMC Complement Med Ther, 2020,(20):151
[24] HAI JX, ZHAO WD, GUAN HL, et al. Analysis of the mechanism of Shufeng Jiedu capsule prevention and treatment for COVID-19 by network pharmacology tools[J].Eur J Integr Med, 2020,(40)101241
[25] YING YZ, RU YX, SHI BL, et al. Chinese patent herbal medicine (Shufeng Jiedu capsules) for a cute upper respiratory tract infections: a systematic review and meta-analysis[J].Integr Med Res, 2021, 10(3):100726
[26] 欧强,宁惠明. 疏风解毒胶囊在临床疾病治疗中的应用[J].世界中医药, 2017, 12(10):2539
OU Q, NING HM. The clinical effect of the treatment of diseases associated with wind dispelling and detoxicating capsule[J].World Chin Med, 2017, 12(10): 2539
[27] 师玥,任小巧. 芳香类中药在疫病防治中的应用[J].中国民族民间医药, 2021, 30(14): 66
SHI Y, REN XQ. Application of aromatic traditional Chinese medicine in plague prevention and control[J].Chin J Ethnomed Ethnopharm, 2021, 30(14): 66
[28] 姜立娟,魏岩,张文风. 芳香中药防治疫病应用探析[J].长春中医药大学学报, 2021, 37(6): 1181
JIANG LJ, WEI Y, ZHANG WF. An exploration of the application of aromatic Chinese medicines in preventing and treating pestilences[J].J Changchun Univ Chin Med, 2021, 37(6): 1181
[29] 李申. 浅析板蓝根在病毒感染性疾病中的防治价值[J].光明中医, 2022, 37(3): 536
LI S. Analysis on the prevention and treatment value of Radix Isatidis in viral infectious diseases[J].Guangming Tradit Chin Med, 2022, 37(3): 536
[30] 惠和平,李晓东,史彦斌,等. 败酱草多糖的脱色工艺和抗氧化活性研究[J].现代化工, 2021, 41(S1): 2310
HUI HP, LI XD, SHI YB, et al. Study on decolorization process for polysaccharide from Herba Patriniae and antioxidation activity[J].Mod Chem Ind, 2021, 41(S1): 2310
[31] 陈鸿平,王福,尤强,等. 中药抗病毒活性成分研究进展[J].中药与临床, 2020, 11(1): 6
CHEN HP, WANG F, YOU Q, et al. Research advances of antiviral active ingredients of traditional Chinese medicine[J].Pharm Clin Chin Mater Med, 2020, 11(1): 6
[32] 白桂昌,罗轶,陆敏仪. 岗松油特征图谱的研究及多组分含量测定[J].药物分析杂志, 2017, 37(7)1240
BAI GC, LUO Y, LU MY. Study on specific chromatogram and determination of chemical components in Baeckea frutescens essential oil[J].Chin J Pharm Anal, 2017, 37(7): 1240
[33] 刘玉红,李青苗,黄志芳,等. GC法测定鱼腥草挥发油中α-蒎烯,β-蒎烯等7种成分的含量[J].药物分析杂志, 2015, 35(10): 1810
LIU YH, LI QM, HUANG ZF, et al. GC simultaneous determination of the contentsof seven constituents in volatile oil from Houttuyniae Herba[J].Chin J Pharm Anal, 2015, 35(10): 1810
[34] 梁可,姬巍,闫小玉,等. GC法同时测定桂枝挥发油中α-蒎烯,β-蒎烯和柠檬烯的含量[J].中国药房, 2012, 23(39): 3694
LIANG K, JI W, YAN XY, et al. Simultaneous determination of α-pinene, β-pinene and limonene in volatile oil from Cinnamomi Ramulus by GC[J].China pharm, 2012, 23(39): 3694
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