Development and Validation of a UPLC-MS/MS Method for the Quantification of Components in the Ancient Classical Chinese Medicine Formula of Guyinjian
Abstract
:1. Introduction
2. Results and Discussion
2.1. Optimisation of Sample Extraction Conditions
2.2. Optimisation of UPLC-MS/MS Condition
2.3. Validation of UPLC-MS Method
2.4. Simultaneous Quantitation of Fourteen Compounds in 15 Batches of GYJ Samples
2.5. Quality Evaluation by Cluster Analysis and Multivariate Statistical Analysis
2.6. Overview of the Pharmacological Activities of Each Component
3. Conclusions
4. Materials and Methods
4.1. Reagents and Materials
4.2. Preparation of Standard Solutions
4.3. Preparation of Sample Solutions
4.4. Apparatus and Conditions
4.5. Method Validation
4.6. Cluster Analysis and Multivariate Statistical Analysis
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Sample Availability
References
- Zhang, J. Jingyue Quanshu; China Traditional Chinese Medicine Press: Beijing, China, 1994. [Google Scholar]
- Liu, Y.; Zhou, Y.; Zhang, X.C.; Zeng, X.; Chen, L.Y.; Li, X. Effect of Gu Yin Decoction plus reduction on ovarian reserve function in patients with ovarian hyporesponsiveness and kidney yin deficiency in the reproductive age. Chin. J. Exp. Formul. 2019, 25, 87–92. [Google Scholar] [CrossRef]
- Wan, L.; Huang, J.M.; Liu, L.; Yang, Y.Z.; Ding, C.F. Treatment of ovulation disorders in polycystic ovary syndrome based on the theory of yin and yang by applying Gu Yin Decoction from Jing Yue Quan Shu. Zhejiang J. Integr. Chin. West. Med. 2020, 30, 336–337. [Google Scholar] [CrossRef]
- Chen, X.; Chen, D.; Dong, G. Guyin decoction in the treatment of immuno-sterility and its effect on humoral immunity. J. Tradit. Chin. Med. 1995, 15, 259–261. [Google Scholar] [PubMed]
- Hong, L. Clinical effect analysis of Gouyin decoction plus reduction in the treatment of kidney deficiency type menorrhagia. Med. Theory Pract. 2019, 32, 1207–1209. [Google Scholar] [CrossRef]
- Ji, X. Clinical Observation on the Treatment of Oligomenorrhea Due to Kidney Deficiency with Modified Guyin Decoction; Changchun University of Traditional Chinese Medicine: Changchun, China, 2014; Available online: https://kns.cnki.net/KCMS/detail/detail.aspx?dbname=CMFD201501&filename=1015502116.nh (accessed on 19 March 2022).
- Zhu, Y. Treatment of 38 cases of menopausal syndrome with Gouyin Decoction plus reduction. New Chin. Med. 2009, 41, 72–73. [Google Scholar] [CrossRef]
- Zhu, W.; Lv, M. Treatment of 47 cases of intermenstrual bleeding with addition of guyin decoction. Shandong J. Tradit. Chin. Med. 2011, 30, 552. [Google Scholar] [CrossRef]
- Wang, H.; Zhu, X.F.; Zhu, Z.B. Modified Guyin Decoction in the treatment of 30 cases of adolescent metrorrhagia. Tradit. Chin. Med. Inn. Mong. 2008, 8, 23–24. [Google Scholar] [CrossRef]
- State Administration of Traditional Chinese Medicine. Notice of the State Administration of Traditional Chinese Medicine on the release of the Catalogue of Ancient Classical Formula (First Batch). Available online: http://kjs.satcm.gov.cn/zhengcewenjian/2018-04-16/7107.html (accessed on 9 September 2022).
- Seo, C.S.; Shin, H.K. Simultaneous Analysis for Quality Control of Traditional Herbal Medicine, Gungha-Tang, Using Liquid Chromatography-Tandem Mass Spectrometry. Molecules 2022, 27, 1223. [Google Scholar] [CrossRef] [PubMed]
- Zhang, B.; Qi, D.; Deng, X.; Ma, Z.; Wu, Y.; Xue, Z.; Kebebe, D.; Lu, P.; Pi, J.; Guo, P.; et al. Quantification of Nineteen Bioactive Components in the Ancient Classical Chinese Medicine Formula of Wen-Dan Decoction and Its Commercial Preparations by UHPLC-QQQ-MS/MS. Molecules 2019, 24, 2031. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Tan, C.T.; Croft, N.P.; Dudek, N.L.; Williamson, N.A.; Purcell, A.W. Direct quantitation of MHC-bound peptide epitopes by selected reaction monitoring. Proteomics 2011, 11, 2336–2340. [Google Scholar] [CrossRef] [PubMed]
- Yang, H.; Hao, Q.; Cheng, J.; Wang, M.; Zou, J.; Zhang, X.; Guo, D. Exploring the compatibility mechanism of ShengDiHuang Decoction based on the in situ single-pass intestinal perfusion model. Biopharm. Drug Dispos. 2020, 41, 44–53. [Google Scholar] [CrossRef] [PubMed]
- Deng, D.; Yan, J.; Wu, Y.; Wu, K.; Li, W. Morroniside suppresses hydrogen peroxide-stimulated autophagy and apoptosis in rat ovarian granulosa cells through the PI3K/AKT/mTOR pathway. Hum. Exp. Toxicol. 2021, 40, 577–586. [Google Scholar] [CrossRef] [PubMed]
- Xu, J.J.; Li, R.J.; Zhang, Z.H.; Yang, C.; Liu, S.X.; Li, Y.L.; Chen, M.W.; Wang, W.W.; Zhang, G.Y.; Song, G.; et al. Loganin Inhibits Angiotensin II-Induced Cardiac Hypertrophy Through the JAK2/STAT3 and NF-κB Signaling Pathways. Front. Pharmacol. 2021, 12, 678886. [Google Scholar] [CrossRef] [PubMed]
- Wu, Y.; Fu, H.; Yang, X.; Leng, F.; Huang, Y.; Deng, H.; Xiang, Q.; Zhang, S. Polygalaxanthone III downregulates inflammation in the lipopolysaccharide-stimulated RAW264.7 macrophages: A quantibody array analysis. J. Pharmacol. Sci. 2021, 147, 184–191. [Google Scholar] [CrossRef]
- Yang, X.; Dang, X.; Zhang, X.; Zhao, S. Liquiritin reduces lipopolysaccharide-aroused HaCaT cell inflammation damage via regulation of microRNA-31/MyD88. Int. Immunopharmacol. 2021, 101, 108283. [Google Scholar] [CrossRef] [PubMed]
- Wang, S.; Sheng, F.; Zou, L.; Xiao, J.; Li, P. Hyperoside attenuates non-alcoholic fatty liver disease in rats via cholesterol metabolism and bile acid metabolism. J. Adv. Res. 2021, 34, 109–122. [Google Scholar] [CrossRef] [PubMed]
- Lee, I.A.; Hyam, S.R.; Jang, S.E.; Han, M.J.; Kim, D.H. Ginsenoside Re ameliorates inflammation by inhibiting the binding of lipopolysaccharide to TLR4 on macrophages. J. Agric. Food Chem. 2012, 60, 9595–9602. [Google Scholar] [CrossRef] [PubMed]
- Rehman, M.U.; Farooq, A.; Ali, R.; Bashir, S.; Bashir, N.; Majeed, S.; Taifa, S.; Ahmad, S.B.; Arafah, A.; Sameer, A.S.; et al. Preclinical Evidence for the Pharmacological Actions of Glycyrrhizic Acid: A Comprehensive Review. Curr. Drug Metab. 2020, 21, 436–465. [Google Scholar] [CrossRef] [PubMed]
SIR Mode | Compound Name | Mass (m/z) | Dwell (s) | Cone (V) |
---|---|---|---|---|
ES- | Rehmannioside D | 685.2 | 0.018 | 55 |
ES- | Morroniside | 451.1 | 0.018 | 30 |
ES- | Loganin | 435.1 | 0.018 | 35 |
ES- | Polygalaxanthone III | 567.1 | 0.018 | 75 |
ES- | Liquiritin | 417.1 | 0.018 | 45 |
ES- | Hyperoside | 463.0 | 0.018 | 60 |
ES- | Verbascoside | 623.1 | 0.018 | 70 |
ES- | 3′,6-Disinapoylsucrose | 753.2 | 0.018 | 75 |
ES- | Ginsenoside Re | 991.5 | 0.018 | 45 |
ES- | Ginsenoside Rg1 | 845.4 | 0.018 | 60 |
ES- | Ginsenoside Rb1 | 1107.5 | 0.018 | 90 |
ES- | Tenuifolin | 679.3 | 0.018 | 65 |
ES- | Glycyrrhizic acid | 821.3 | 0.018 | 90 |
ES+ | Schisandrin | 433.2 | 0.328 | 30 |
Compound | Calibration Curve | Linear Range (µg/mL) | r |
---|---|---|---|
Rehmannioside D | y = 1856.2x + 162.47 | 0.4082–10.205 | 0.9999 |
Morroniside | y = 5663.3x + 9521 | 1.9690–49.225 | 0.9999 |
Loganin | y = 5837.6x + 3430.9 | 1.0595–26.488 | 0.9994 |
Polygalaxanthone III | y = 12,217x + 139.22 | 0.0393–0.9825 | 0.9999 |
Liquiritin | y = 11,344x + 3901.7 | 0.4813–12.031 | 0.9988 |
Hyperoside | y = 11,878x + 9390.3 | 0.5978–14.944 | 0.9960 |
Verbascoside | y = 19,206x + 1084.2 | 0.0957–2.3925 | 0.9993 |
3′,6-Disinapoylsucrose | y = 8154.2x + 2317.8 | 0.6715–16.788 | 0.9997 |
Ginsenoside Re | y = 12,765x + 325.7 | 0.1074–2.6838 | 0.9998 |
Ginsenoside Rg1 | y = 16,044x + 175.01 | 0.0597–1.4925 | 0.9998 |
Ginsenoside Rb1 | y = 15,886x + 203.89 | 0.1340–3.3500 | 0.9999 |
Tenuifolin | y = 24,931x + 1218.6 | 0.0708–1.7690 | 0.9988 |
Glycyrrhizic acid | y = 41,117x + 28,611 | 0.7460–18.650 | 0.9986 |
Schisandrin | y = 46,610x + 26,670 | 0.1792–4.4800 | 0.9966 |
Compound/Peak Area | 1 | 2 | 3 | 4 | 5 | 6 | RSD% |
---|---|---|---|---|---|---|---|
Rehmannioside D | 2180 | 2162 | 2209 | 2230 | 2203 | 2046 | 3.03% |
Morroniside | 61,535 | 65,585 | 63,218 | 63,679 | 62,487 | 62,082 | 2.28% |
Loganin | 48,573 | 48,489 | 49,183 | 48,403 | 48,524 | 47,962 | 0.81% |
Polygalaxanthone III | 3501 | 3571 | 3557 | 3582 | 3457 | 3513 | 1.36% |
Liquiritin | 26,480 | 26,432 | 26,897 | 26,020 | 26,957 | 27,222 | 1.64% |
Hyperoside | 55,821 | 55,830 | 56,865 | 57,164 | 56,190 | 55,221 | 1.29% |
Verbascoside | 9523 | 9000 | 9509 | 9411 | 9947 | 9430 | 3.19% |
3′,6-Disinapoylsucrose | 43,871 | 43,924 | 46,404 | 44,412 | 41,994 | 45,135 | 3.31% |
Ginsenoside Re | 5886 | 6024 | 5879 | 5482 | 5802 | 5832 | 3.11% |
Ginsenoside Rg1 | 4332 | 4297 | 4277 | 4328 | 4380 | 4356 | 0.87% |
Ginsenoside Rb1 | 10,382 | 10,507 | 10,317 | 10,209 | 10,759 | 10,218 | 2.00% |
Tenuifolin | 9168 | 9394 | 9121 | 9258 | 9409 | 8543 | 3.49% |
Glycyrrhizic acid | 156,563 | 144,796 | 153,694 | 152,024 | 155,010 | 151,450 | 2.70% |
Schisandrin | 395,285 | 393,048 | 381,008 | 377,984 | 383,494 | 386,626 | 1.76% |
Compound | Sample-1 (mg/g) | Sample-2 (mg/g) | Sample-3 (mg/g) | Sample-4 (mg/g) | Sample-5 (mg/g) | Sample-6 (mg/g) | RSD% |
---|---|---|---|---|---|---|---|
Rehmannioside D | 0.32113 | 0.32023 | 0.31742 | 0.31218 | 0.3173 | 0.32077 | 1.06% |
Morroniside | 2.91215 | 2.79783 | 2.8683 | 2.81242 | 2.85547 | 2.81521 | 1.52% |
Loganin | 1.53599 | 1.52903 | 1.52081 | 1.54322 | 1.52763 | 1.49539 | 1.08% |
Polygalaxanthone III | 0.05384 | 0.05257 | 0.05304 | 0.0518 | 0.0514 | 0.0534 | 1.79% |
Liquiritin | 0.51878 | 0.5036 | 0.51041 | 0.51195 | 0.50372 | 0.49634 | 1.55% |
Hyperoside | 0.71191 | 0.68372 | 0.69032 | 0.68591 | 0.67053 | 0.67489 | 2.12% |
Verbascoside | 0.14832 | 0.1476 | 0.14251 | 0.14216 | 0.14661 | 0.14786 | 1.90% |
3′,6-Disinapoylsucrose | 0.66255 | 0.64514 | 0.64891 | 0.64284 | 0.64037 | 0.63542 | 1.45% |
Ginsenoside Re | 0.07898 | 0.07593 | 0.07665 | 0.07623 | 0.07946 | 0.07656 | 1.96% |
Ginsenoside Rg1 | 0.0863 | 0.08291 | 0.08512 | 0.08054 | 0.08308 | 0.08227 | 2.47% |
Ginsenoside Rb1 | 0.08673 | 0.0868 | 0.08363 | 0.08353 | 0.08191 | 0.08369 | 2.32% |
Tenuifolin | 0.02412 | 0.02398 | 0.02403 | 0.02402 | 0.02421 | 0.02373 | 0.68% |
Glycyrrhizic acid | 1.29249 | 1.25455 | 1.25168 | 1.24285 | 1.26755 | 1.24067 | 1.53% |
Schisandrin | 0.22103 | 0.22152 | 0.21533 | 0.22478 | 0.22385 | 0.21874 | 1.57% |
Compound | Sample-1 (mg/g) | Sample-2 (mg/g) | Sample-3 (mg/g) | Sample-4 (mg/g) | Sample-5 (mg/g) | Sample-6 (mg/g) | RSD% | Combined Repeatability and Intermediate Precision (RSD%) |
---|---|---|---|---|---|---|---|---|
Rehmannioside D | 0.31793 | 0.31807 | 0.31965 | 0.30476 | 0.29972 | 0.29848 | 3.18% | 2.64% |
Morroniside | 2.84818 | 2.78914 | 2.81021 | 2.77910 | 2.81882 | 2.80366 | 0.86% | 1.35% |
Loganin | 1.52682 | 1.53977 | 1.51064 | 1.52463 | 1.52649 | 1.49486 | 1.03% | 1.02% |
Polygalaxanthone III | 0.05416 | 0.05272 | 0.05281 | 0.05269 | 0.05374 | 0.05289 | 1.17% | 1.52% |
Liquiritin | 0.51802 | 0.51922 | 0.50072 | 0.50428 | 0.51141 | 0.51435 | 1.46% | 1.49% |
Hyperoside | 0.69397 | 0.67495 | 0.67647 | 0.66746 | 0.66524 | 0.65313 | 2.03% | 2.27% |
Verbascoside | 0.15130 | 0.14597 | 0.14822 | 0.14629 | 0.14771 | 0.14932 | 1.34% | 1.76% |
3′,6-Disinapoylsucrose | 0.66602 | 0.66006 | 0.66075 | 0.65018 | 0.66738 | 0.66720 | 1.00% | 1.74% |
Ginsenoside Re | 0.07692 | 0.07792 | 0.07820 | 0.07863 | 0.07875 | 0.07891 | 0.94% | 1.58% |
Ginsenoside Rg1 | 0.08542 | 0.08469 | 0.08397 | 0.08411 | 0.08526 | 0.08250 | 1.27% | 1.96% |
Ginsenoside Rb1 | 0.08749 | 0.08442 | 0.08543 | 0.08811 | 0.08529 | 0.08586 | 1.64% | 2.18% |
Tenuifolin | 0.02405 | 0.02527 | 0.02446 | 0.02437 | 0.02381 | 0.02507 | 2.31% | 1.95% |
Glycyrrhizic acid | 1.26006 | 1.28608 | 1.27006 | 1.25404 | 1.25920 | 1.25795 | 0.93% | 1.24% |
Schisandrin | 0.22424 | 0.22423 | 0.23107 | 0.22125 | 0.22474 | 0.21432 | 2.45% | 2.04% |
Compound | 0 h (mg/g) | 2 h (mg/g) | 4 h (mg/g) | 6 h (mg/g) | 8 h (mg/g) | 10 h (mg/g) | 12 h (mg/g) | RSD% |
---|---|---|---|---|---|---|---|---|
Rehmannioside D | 0.28387 | 0.29758 | 0.28751 | 0.27986 | 0.28424 | 0.28517 | 0.28306 | 1.97% |
Morroniside | 2.73107 | 2.61553 | 2.63035 | 2.61832 | 2.67367 | 2.66227 | 2.64084 | 1.53% |
Loganin | 1.42990 | 1.43415 | 1.45469 | 1.43699 | 1.42918 | 1.40613 | 1.43684 | 1.01% |
Polygalaxanthone III | 0.04613 | 0.04684 | 0.04714 | 0.04891 | 0.04796 | 0.04685 | 0.04878 | 2.22% |
Liquiritin | 0.47113 | 0.46881 | 0.47472 | 0.46043 | 0.47498 | 0.46801 | 0.47534 | 1.14% |
Hyperoside | 0.58354 | 0.57778 | 0.56404 | 0.55416 | 0.56335 | 0.55998 | 0.56784 | 1.80% |
Verbascoside | 0.12900 | 0.13135 | 0.12806 | 0.12895 | 0.12647 | 0.13206 | 0.13151 | 1.60% |
3′,6-Disinapoylsucrose | 0.57402 | 0.56734 | 0.58351 | 0.59466 | 0.59594 | 0.58482 | 0.56461 | 2.15% |
Ginsenoside Re | 0.07292 | 0.07137 | 0.07278 | 0.07188 | 0.06977 | 0.0722 | 0.06956 | 1.90% |
Ginsenoside Rg1 | 0.07888 | 0.07499 | 0.07763 | 0.07661 | 0.07514 | 0.07685 | 0.07432 | 2.12% |
Ginsenoside Rb1 | 0.07890 | 0.07639 | 0.07756 | 0.07889 | 0.0775 | 0.07682 | 0.07864 | 1.30% |
Tenuifolin | 0.02164 | 0.02209 | 0.02203 | 0.02193 | 0.02174 | 0.02252 | 0.02193 | 1.29% |
Glycyrrhizic acid | 1.15635 | 1.15132 | 1.1506 | 1.14429 | 1.15882 | 1.15643 | 1.13918 | 0.62% |
Schisandrin | 0.21346 | 0.21495 | 0.21659 | 0.21666 | 0.21509 | 0.21144 | 0.21711 | 0.94% |
Compound | Number | Original Amount (mg) | Spiked Amount (mg) | Detected Amount (mg) | Recovery (%) | Mean | RSD/% (n = 6) |
---|---|---|---|---|---|---|---|
Rehmannioside D | 1 | 0.04407 | 0.05016 | 0.09262 | 96.78% | 93.49% | 2.82% |
2 | 0.04490 | 0.09072 | 91.34% | ||||
3 | 0.04493 | 0.09023 | 90.30% | ||||
4 | 0.04404 | 0.09129 | 94.22% | ||||
5 | 0.04493 | 0.09315 | 96.13% | ||||
6 | 0.04507 | 0.09131 | 92.19% | ||||
Morroniside | 1 | 0.62622 | 0.54037 | 1.17592 | 101.73% | 96.96% | 4.52% |
2 | 0.63802 | 1.17246 | 98.90% | ||||
3 | 0.63843 | 1.14833 | 94.36% | ||||
4 | 0.62568 | 1.17455 | 101.57% | ||||
5 | 0.63840 | 1.13166 | 91.28% | ||||
6 | 0.64038 | 1.14775 | 93.89% | ||||
Loganin | 1 | 0.31094 | 0.31531 | 0.65369 | 108.71% | 100.99% | 4.78% |
2 | 0.31679 | 0.63562 | 101.12% | ||||
3 | 0.31700 | 0.63492 | 100.83% | ||||
4 | 0.31067 | 0.63647 | 103.33% | ||||
5 | 0.31698 | 0.62244 | 96.87% | ||||
6 | 0.31796 | 0.61783 | 95.10% | ||||
Polygalaxanthone III | 1 | 0.00828 | 0.01138 | 0.02072 | 109.37% | 101.46% | 6.22% |
2 | 0.00844 | 0.01963 | 98.38% | ||||
3 | 0.00844 | 0.01944 | 96.67% | ||||
4 | 0.00827 | 0.02071 | 109.30% | ||||
5 | 0.00844 | 0.01981 | 99.91% | ||||
6 | 0.00847 | 0.01929 | 95.13% | ||||
Liquiritin | 1 | 0.09114 | 0.10973 | 0.19988 | 99.10% | 101.09% | 4.30% |
2 | 0.09286 | 0.20724 | 104.25% | ||||
3 | 0.09292 | 0.20754 | 104.46% | ||||
4 | 0.09106 | 0.20721 | 105.86% | ||||
5 | 0.09291 | 0.19734 | 95.17% | ||||
6 | 0.09320 | 0.20041 | 97.71% | ||||
Hyperoside | 1 | 0.15628 | 0.18152 | 0.31016 | 84.77% | 88.64% | 3.87% |
2 | 0.15923 | 0.32162 | 89.46% | ||||
3 | 0.15933 | 0.32849 | 93.19% | ||||
4 | 0.15615 | 0.32266 | 91.73% | ||||
5 | 0.15932 | 0.31400 | 85.21% | ||||
6 | 0.15982 | 0.31861 | 87.48% | ||||
Verbascoside | 1 | 0.02123 | 0.02553 | 0.04767 | 103.57% | 100.48% | 3.29% |
2 | 0.02163 | 0.04829 | 104.45% | ||||
3 | 0.02164 | 0.04648 | 97.31% | ||||
4 | 0.02121 | 0.04596 | 96.96% | ||||
5 | 0.02164 | 0.04676 | 98.41% | ||||
6 | 0.02171 | 0.04779 | 102.16% | ||||
3′,6-Disinapoylsucrose | 1 | 0.10012 | 0.11174 | 0.21203 | 100.15% | 100.42% | 3.27% |
2 | 0.10200 | 0.21945 | 105.10% | ||||
3 | 0.10207 | 0.21586 | 101.83% | ||||
4 | 0.10003 | 0.21002 | 98.43% | ||||
5 | 0.10206 | 0.20871 | 95.44% | ||||
6 | 0.10238 | 0.21584 | 101.53% | ||||
Ginsenoside Re | 1 | 0.00994 | 0.01203 | 0.02259 | 105.12% | 104.78% | 4.49% |
2 | 0.01013 | 0.02383 | 113.89% | ||||
3 | 0.01013 | 0.02236 | 101.64% | ||||
4 | 0.00993 | 0.02210 | 101.17% | ||||
5 | 0.01013 | 0.02266 | 104.13% | ||||
6 | 0.01017 | 0.02253 | 102.75% | ||||
Ginsenoside Rg1 | 1 | 0.01203 | 0.01103 | 0.02369 | 105.70% | 107.43% | 4.06% |
2 | 0.01226 | 0.02481 | 113.77% | ||||
3 | 0.01227 | 0.02449 | 110.75% | ||||
4 | 0.01202 | 0.02335 | 102.66% | ||||
5 | 0.01227 | 0.02423 | 108.43% | ||||
6 | 0.01231 | 0.02370 | 103.27% | ||||
Ginsenoside Rb1 | 1 | 0.01126 | 0.01222 | 0.02396 | 103.93% | 103.97% | 4.11% |
2 | 0.01147 | 0.02508 | 111.35% | ||||
3 | 0.01148 | 0.02415 | 103.72% | ||||
4 | 0.01125 | 0.02322 | 97.96% | ||||
5 | 0.01147 | 0.02413 | 103.56% | ||||
6 | 0.01151 | 0.02414 | 103.31% | ||||
Tenuifolin | 1 | 0.00462 | 0.00519 | 0.00999 | 103.48% | 99.15% | 3.97% |
2 | 0.00471 | 0.00975 | 97.23% | ||||
3 | 0.00471 | 0.00966 | 95.51% | ||||
4 | 0.00462 | 0.00981 | 100.21% | ||||
5 | 0.00471 | 0.00962 | 94.73% | ||||
6 | 0.00472 | 0.01010 | 103.73% | ||||
Glycyrrhizic acid | 1 | 0.21756 | 0.24525 | 0.44908 | 94.40% | 92.34% | 2.87% |
2 | 0.22166 | 0.45797 | 96.36% | ||||
3 | 0.22181 | 0.44341 | 90.36% | ||||
4 | 0.21738 | 0.43690 | 89.51% | ||||
5 | 0.22179 | 0.44419 | 90.68% | ||||
6 | 0.22248 | 0.44992 | 92.74% | ||||
Schisandrin | 1 | 0.04957 | 0.04476 | 0.09123 | 93.09% | 91.22% | 2.97% |
2 | 0.05050 | 0.09265 | 94.17% | ||||
3 | 0.05053 | 0.09110 | 90.64% | ||||
4 | 0.04952 | 0.08992 | 90.26% | ||||
5 | 0.05053 | 0.08928 | 86.58% | ||||
6 | 0.05069 | 0.09211 | 92.55% |
Content (mg/g, n = 2) | ||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
S1 | S2 | S3 | S4 | S5 | S6 | S7 | S8 | S9 | S10 | S11 | S12 | S13 | S14 | S15 | SD | |
Rehmannioside D | 0.26021 | 0.26517 | 0.30544 | 0.23689 | 0.18487 | 0.58298 | 0.83644 | 0.81856 | 0.87372 | 0.77825 | 0.79725 | 0.71777 | 0.74770 | 0.86893 | 0.67400 | 0.27359 |
Morroniside | 2.62522 | 2.82448 | 2.69635 | 2.99392 | 2.46303 | 2.18398 | 2.64711 | 2.18389 | 2.30279 | 2.12395 | 2.38980 | 2.32503 | 2.26280 | 2.34720 | 2.44680 | 0.25363 |
Loganin | 1.55306 | 1.43519 | 1.52310 | 1.54024 | 1.36209 | 1.29946 | 1.34021 | 1.19817 | 1.21662 | 1.36191 | 1.23902 | 1.31137 | 1.13805 | 1.24123 | 1.22655 | 0.13082 |
Polygalaxanthone III | 0.04645 | 0.05232 | 0.04380 | 0.05116 | 0.04430 | 0.05436 | 0.06872 | 0.06084 | 0.07404 | 0.05811 | 0.03849 | 0.04437 | 0.03731 | 0.02709 | 0.02692 | 0.01355 |
Liquiritin | 0.55860 | 0.47562 | 0.56533 | 0.46908 | 0.53224 | 0.99557 | 2.63008 | 2.60939 | 1.39165 | 2.40877 | 1.22428 | 2.15027 | 1.44371 | 0.48911 | 0.48426 | 0.83916 |
Hyperoside | 0.65880 | 0.63195 | 0.81321 | 0.81044 | 0.65848 | 0.78963 | 0.94112 | 0.86762 | 1.06844 | 1.02875 | 0.79034 | 0.74206 | 0.73911 | 0.72920 | 0.71311 | 0.13016 |
Verbascoside | 0.16081 | 0.15508 | 0.15121 | 0.10594 | 0.05612 | 0.09847 | 0.13244 | 0.14653 | 0.08705 | 0.12370 | 0.09823 | 0.09399 | 0.07120 | 0.15331 | 0.13059 | 0.03299 |
3′,6-Disinapoylsucrose | 0.49389 | 0.51598 | 0.56075 | 0.50473 | 0.56824 | 0.49123 | 0.63219 | 0.58257 | 0.67184 | 0.49296 | 0.31598 | 0.50248 | 0.42314 | 0.38143 | 0.43481 | 0.09272 |
Ginsenoside Re | 0.06604 | 0.06684 | 0.07950 | 0.05246 | 0.04317 | 0.04820 | 0.05148 | 0.04944 | 0.03211 | 0.03327 | 0.04824 | 0.03420 | 0.04461 | 0.03665 | 0.04658 | 0.01342 |
Ginsenoside Rg1 | 0.09848 | 0.07674 | 0.06300 | 0.06137 | 0.06128 | 0.07863 | 0.06219 | 0.08167 | 0.06305 | 0.05879 | 0.08731 | 0.04565 | 0.09070 | 0.08427 | 0.09229 | 0.01540 |
Ginsenoside Rb1 | 0.09314 | 0.08419 | 0.10099 | 0.06016 | 0.04954 | 0.04994 | 0.05074 | 0.05169 | 0.04190 | 0.03186 | 0.06376 | 0.03319 | 0.06085 | 0.04985 | 0.07120 | 0.02037 |
Tenuifolin | 0.02034 | 0.02494 | 0.02309 | 0.02345 | 0.01945 | 0.02239 | 0.02627 | 0.02163 | 0.02878 | 0.02342 | 0.01925 | 0.02687 | 0.02902 | 0.02584 | 0.02678 | 0.00316 |
Glycyrrhizic acid | 1.91695 | 1.52411 | 1.27045 | 1.17990 | 1.20443 | 0.97810 | 1.74063 | 1.75546 | 1.34449 | 1.96704 | 0.92250 | 1.51239 | 0.91537 | 0.98217 | 1.07492 | 0.36383 |
Schisandrin | 0.21841 | 0.22412 | 0.17753 | 0.20762 | 0.19557 | 0.22222 | 0.19976 | 0.20067 | 0.21398 | 0.18160 | 0.24425 | 0.20641 | 0.25835 | 0.18588 | 0.24667 | 0.02402 |
Chinese Herbal Medicine | Ginseng Radix et Rhizoma | Rehmanniae Radix Praeparata | Dioscoreae Rhizoma | Corni Fructus | ||||
Sample Number | Origin | Batch Number | Origin | Batch Number | Origin | Batch Number | Origin | Batch Number |
S1 | Jingyu, Jilin Province | 17112311 | Xiangfen, Shanxi Province | 17102711 | Anguo, Hebei Province | 18011611 | Nanyang, Henan Province | 1709061 |
S2 | 17112312 | 17102712 | 18011612 | 1709062 | ||||
S3 | 17112313 | 17102713 | 18011613 | 1709063 | ||||
S4 | 17112314 | 17102714 | 18011614 | 1709064 | ||||
S5 | 17112315 | 17102715 | 18011615 | 1709065 | ||||
S6 | Xinbin, Liaoning Province | 201001 | Jiaozuo, Henan Province | 20191201 | Anyang, Henan Province | 20201101 | Danfeng, Shaanxi Province | 180311 |
S7 | 201002 | 20191202 | 20201102 | 180312 | ||||
S8 | 201003 | 20191203 | 20201103 | 180313 | ||||
S9 | 201004 | 20191204 | 20201104 | 180314 | ||||
S10 | 201005 | 20191205 | 20201105 | 180315 | ||||
S11 | Tonghua, Jilin Province | 201006 | Wenxi, Shanxi Province | 20191201 | Li xian, Hebei Province | 20201101 | Luoyang, Henan Province | 180321 |
S12 | 201008 | 20191202 | 20201102 | 180322 | ||||
S13 | 201009 | 20191203 | 20201103 | 180323 | ||||
S14 | 201010 | 20191204 | 20201104 | 180324 | ||||
S15 | 201101 | 20191205 | 20201105 | 180325 | ||||
Chinese Herbal Medicine | Polygalae Radix | Glycyrrhizae Radix et Rhizoma Praeparata Cum Melle | Schisandrae Chinensis Fructus | Cuscutae Semen | ||||
Sample Number | Origin | Batch Number | Origin | Batch Number | Origin | Batch Number | Origin | Batch Number |
S1 | Xintai, Shandong Province | 18010311 | Longxi, Gansu Province | 17111411 | Ji’an, Jilin Province | 1710271 | Pingluo, Ningxia Province | 17120911 |
S2 | 18010312 | 17111412 | 1710272 | 17120912 | ||||
S3 | 18010313 | 17111413 | 1710273 | 17120913 | ||||
S4 | 18010314 | 17111414 | 1710274 | 17120914 | ||||
S5 | 18010315 | 17111415 | 1710275 | 17120915 | ||||
S6 | Yulin, Shaanxi Province | 20191001 | Tongxin, Ningxia | TX201101 | Qinglong, Hebei Province | 180311 | Anguo, Hebei Province | 20201101 |
S7 | 20191002 | TX201102 | 180312 | 20201102 | ||||
S8 | 20191003 | TX201103 | 180313 | 20201103 | ||||
S9 | 20191004 | TX201104 | 180314 | 20201104 | ||||
S10 | 20191005 | TX201105 | 180315 | 20201105 | ||||
S11 | Wenxi, Shanxi Province | 190372001 | Hangjinqi, Inner Mongolia | 201101 | Jingyu, Jilin Province | 180321 | Pingluo, Ningxia Province | 20201101 |
S12 | 190373001 | 201102 | 180322 | 20201102 | ||||
S13 | 190374001 | 201103 | 180323 | 20201103 | ||||
S14 | 190375001 | 201902 | 180324 | 20201104 | ||||
S15 | 190376001 | 201904 | 180325 | 20201105 |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Ge, N.; Li, Z.; Yang, L.; Yan, G.; Zhang, A.; Zhang, X.; Wu, X.; Sun, H.; Li, D.; Wang, X. Development and Validation of a UPLC-MS/MS Method for the Quantification of Components in the Ancient Classical Chinese Medicine Formula of Guyinjian. Molecules 2022, 27, 8611. https://doi.org/10.3390/molecules27238611
Ge N, Li Z, Yang L, Yan G, Zhang A, Zhang X, Wu X, Sun H, Li D, Wang X. Development and Validation of a UPLC-MS/MS Method for the Quantification of Components in the Ancient Classical Chinese Medicine Formula of Guyinjian. Molecules. 2022; 27(23):8611. https://doi.org/10.3390/molecules27238611
Chicago/Turabian StyleGe, Nan, Zhineng Li, Le Yang, Guangli Yan, Aihua Zhang, Xiwu Zhang, Xiuhong Wu, Hui Sun, Dan Li, and Xijun Wang. 2022. "Development and Validation of a UPLC-MS/MS Method for the Quantification of Components in the Ancient Classical Chinese Medicine Formula of Guyinjian" Molecules 27, no. 23: 8611. https://doi.org/10.3390/molecules27238611
APA StyleGe, N., Li, Z., Yang, L., Yan, G., Zhang, A., Zhang, X., Wu, X., Sun, H., Li, D., & Wang, X. (2022). Development and Validation of a UPLC-MS/MS Method for the Quantification of Components in the Ancient Classical Chinese Medicine Formula of Guyinjian. Molecules, 27(23), 8611. https://doi.org/10.3390/molecules27238611