Separation and Quantification of Four Main Chiral Glucosinolates in Radix Isatidis and Its Granules Using High-Performance Liquid Chromatography/Diode Array Detector Coupled with Circular Dichroism Detection
Abstract
:1. Introduction
2. Results and Discussion
2.1. Optimization of HPLC-UV-CD Conditions
2.2. Method Validation of Quantitative Analysis
2.3. Glucosinolates Profiles of Radix Isatidis and Its Granules
2.4. Chemical Comparison on the Basis of Contents of Four Glucosinolates
3. Materials and Methods
3.1. Sample Materials
3.2. Chemicals and Reagents
3.3. Instrumentation and Chromatographic Conditions
3.4. Preparation of Standard Solutions
3.5. Preparation of Sample Solutions
3.6. Method Validation
3.7. Statistical Analysis
4. Conclusions
Supplementary Materials
Author Contributions
Funding
Conflicts of Interest
References
- Yang, X.X.; Gu, W.; Liang, L.; Yan, H.L.; Wang, Y.F.; Bi, Q.; Zhang, T.; Yu, J.; Rao, G.X. Screening for the bioactive constituents of traditional Chinese medicine- progress and challenges. RSC Adv. 2017, 7, 3089–3100. [Google Scholar] [CrossRef]
- Calcaterra, A.; D′Acqurica, I. The market of chiral drugs: Chiral switches versus de novo enantiomerically pure compounds. J. Pharm. Biomed. Anal. 2018, 147, 323–340. [Google Scholar] [CrossRef] [PubMed]
- Agranat, I.; Caner, H.; Caldwell, J. Putting chirality to work: The strategy of chiral switches. Drug Discov. 2002, 1, 753–768. [Google Scholar] [CrossRef] [PubMed]
- Mullard, A. 2015 FDA drug approvals. Nat. Rev. Drug Discov. 2016, 15, 73–76. [Google Scholar] [CrossRef] [PubMed]
- Xiao, S.S.; Jin, Y.; Sun, Y.Q. Recent progress in the studies of chemical consituents, pharmacological effects and quality control methods on the roots of Isatis indigotica. J. Shenyang Pharm. Univ. 2003, 20, 455–459. [Google Scholar]
- Chinese Pharmacopoeia Commission. Chinese Pharmacopoeia, 2015 ed. (English), Part I; China Medical Science and Technology Press: Beijing, China, 2015; p. 246. [Google Scholar]
- Peng, S.P.; Gu, Z.L. Progress of studies on chemical constituents and pharmacological effects of Radix isatidis. Chin. Wild Plant Reour. 2005, 24, 4–7. [Google Scholar]
- Tu, B.; Nie, W.M.; Ding, P.P. Efficacy of treatment if influenza A (H1N1) with oseltamivir phosphate and isatis root granules. Med. J. Chin. People’s Armed Police Forces 2013, 24, 465–470. [Google Scholar]
- Chang, S.J.; Chang, Y.C.; Lu, K.Z.; Tsou, Y.Y.; Lin, W.C. Antiviral activity of Isatis indigotica extract and its derived indirubin against Japanese Encephalitis Virus. Evid. Based Complement. Altern. Med. 2012, 925830. [Google Scholar] [CrossRef]
- Yang, Z.; Wang, Y.; Zhong, S.; Zeng, X.; Mo, Z.; Qin, S.; Guan, W.; Li, C.; Zhong, N. In Vitro inhibition of influenza virus infection by a crude extract from Isatis indigotica root resulting in the prevention of viral attachment. Mol. Med. Rep. 2012, 5, 793–799. [Google Scholar] [PubMed]
- He, L.W.; Li, X.; Chen, J.W. Progress of studies on antiviral effective constituents from Radix isatidis. Inf. TCM 2005, 22, 37–40. [Google Scholar]
- Xu, L.H.; Huang, F.; Cheng, T.; Wu, J. Antivirus constituents of radix of Isatis indigotica. Chin. J. Nat. Med. 2005, 3, 359–360. [Google Scholar]
- Zhang, S.J.; Liu, M.H.; Li, H.B.; Jiang, L.; Luo, Y.; Sun, Q. The in vitro anti-virus effects and dose-effect relationship of epigoitrin and fructopyrano-(1→4)-glucopyranose based on “deletion/increment” strategy. Chin. J. New Drug 2013, 22, 1083–1087. [Google Scholar]
- Wang, R.; Yang, H.Y.; Yang, Q.W.; Huang, S.J.; Wang, Z.T. Study on quality standard of Isatidis Radix. Chin. Tradit. Herb Drugs 2010, 41, 478–480. [Google Scholar]
- Shi, Y.H.; Xie, Z.Y.; Wu, Y.C.; Li, Y.M.; Wang, R.; Wang, Z.T. Determination of R,S-goitrin of Banlangen Preparation by RP-HPLC. Chin. J. Exp. Tradit. Med. Formulae 2011, 17, 128–130. [Google Scholar]
- Xie, Z.Y.; Shi, Y.H.; Wang, Z.T.; Wang, R.; Li, Y.M. Biotransformation of Glucosinolates Epiprogoitrin and Progoitrin to (R)- and (S)-goitrin in Radix isatidis. J. Agric. Food Chem. 2011, 59, 12467–12473. [Google Scholar] [CrossRef] [PubMed]
- Shi, Y.H.; Xie, Z.Y.; Wang, R.; Huang, S.J.; Li, Y.M.; Wang, Z.T. Quantitative and Chemical Fingerprint Analysis for the Quality Evaluation of Isatis indigotica based on Ultra-Performace Liquid Chromatography with Photodiode Array Detector Combined with Chemometric Methods. Int. J. Mol. Sci. 2012, 13, 9035–9050. [Google Scholar] [CrossRef] [PubMed]
- Astwood, E.B.; Greer, M.A.; Ettlinger, M.G. 1–5-Vinyl-2-thiooxazolidone, an antithyroid compound from yellow turip and from Brassica seeds. J. Biol. Chem. 1949, 181, 121–130. [Google Scholar] [PubMed]
- Nie, L.X.; Wang, G.L.; Dai, Z.; Lin, R.C. Determination of epigoitrin and goitrin in Isatidis Radix by chiral high performance liquid chromatography. Chin. J. Chromatogr. 2010, 28, 1001–1004. [Google Scholar]
- Nie, L.X.; Dai, Z.; Ma, S.C. Stereospecific Assay of (R)- and (S)-goitrin in Commercial Formulation of Radix Isatidis by Reversed Phase High-Performance Liqiud Chromatography. J. Anal. Methods Chem. 2017, 2017, 2810565. [Google Scholar] [CrossRef] [PubMed]
- Wang, R.; Runco, J.; Yang, L.; Yu, K.; Li, Y.M.; Chen, R.; Wang, Z.T. Qualitative and quantitative analyses of goitrin–epigoitrin in Isatis indigotica using supercritical fluid chromatography-photodiode array detector-mass spectrometry. RSC Adv. 2014, 90, 49257–49263. [Google Scholar] [CrossRef]
- Nie, L.X.; Dai, Z.; Ma, S.C. Improved Chiral Separation of (R,S)-goitrin by SFC: An Application in Traditional Chinese Medicine. J. Anal. Methods Chem. 2016, 2016, 5782942. [Google Scholar] [CrossRef] [PubMed]
- Xie, Z.Y.; Wang, R.; Wu, Y.C.; Yang, L.; Wang, Z.T. An efficient method for separation and purification of glucosinolate stereoisomers from Radix Isatidis. J. Liq. Chromatogr. Relat. Technol. 2012, 35, 153–161. [Google Scholar] [CrossRef]
- Leoeur-Lorin, M.; Delépée, R.; Ribet, J.P.; Morin, P. Chiral analysis of milnacipran by a nonchrial HPLC-circular dichroism: Improvement of the linearity of dichroic response by temperature control. J. Sep. Sci. 2008, 31, 3009–3014. [Google Scholar] [CrossRef] [PubMed]
- Bertucci, C.; Andrisano, V.; Cavrini, V.; Castiqlioni, E. Reliable Assay of Extreme Enantiomeric Purity Values by a New Circular Dichroism Based on HPLC Detection System. Chirality 2000, 12, 84–92. [Google Scholar] [CrossRef]
Sample Availability: Not Available. |
Glucosinolates | Calibration Curves Equation | R2 | Linear Range (mg/mL) | LOD (μg/mL) | LOQ (μg/mL) |
---|---|---|---|---|---|
Progoitrin | Y = 5.10 × 103X − 22.43 | 1.0000 | 0.0651~2.084 | 0.583 | 1.885 |
Epiprogoitrin | Y = 6.27 × 103X + 23.37 | 1.0000 | 0.0963~3.080 | 0.802 | 2.305 |
R,S-goitrin | Y = 3.51 × 104X + 576.80 | 0.9991 | 0.0365~1.168 | 0.025 | 0.067 |
R-goitrin | CD | UV | g Factor |
---|---|---|---|
(%) | ∆A | A | ∆A/A |
100 | −4391.9 | 10,317.8 | −0.4257 |
80 | −2414.5 | 10,293.2 | −0.2346 |
65 | −1026.8 | 10,113.3 | −0.1015 |
50 | 281.2 | 10,092.9 | 0.0279 |
35 | 1715.0 | 10,078.7 | 0.1702 |
20 | 3118.2 | 10,114.5 | 0.3082 |
0 | 5024.0 | 9969.0 | 0.5040 |
Glucosinolates | Precision (RSD %) | Repeatability (RSD %) n = 6 | Stability (RSD %) n = 6 | Recovery | ||
---|---|---|---|---|---|---|
Intra-Day n = 6 | Inter-Day n = 3 | (Mean %) n = 9 | RSD (%) | |||
Progoitrin | 1.23 | 0.15 | 1.56 | 0.37 | 99.1 | 2.53 |
Epiprogoitrin | 1.98 | 0.16 | 1.41 | 0.05 | 99.3 | 2.58 |
R,S-goitrin | 1.24 | 0.53 | 1.21 | 0.82 | 103.3 | 2.89 |
R-goitrin | 1.35 | 0.96 | 1.28 | 0.64 | 101.5 | 2.95 |
S-goitrin | 1.05 | 0.58 | 2.82 | 1.42 | 99.1 | 2.53 |
© 2018 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 (http://creativecommons.org/licenses/by/4.0/).
Share and Cite
Shi, Y.; Zheng, C.; Li, J.; Yang, L.; Wang, Z.; Wang, R. Separation and Quantification of Four Main Chiral Glucosinolates in Radix Isatidis and Its Granules Using High-Performance Liquid Chromatography/Diode Array Detector Coupled with Circular Dichroism Detection. Molecules 2018, 23, 1305. https://doi.org/10.3390/molecules23061305
Shi Y, Zheng C, Li J, Yang L, Wang Z, Wang R. Separation and Quantification of Four Main Chiral Glucosinolates in Radix Isatidis and Its Granules Using High-Performance Liquid Chromatography/Diode Array Detector Coupled with Circular Dichroism Detection. Molecules. 2018; 23(6):1305. https://doi.org/10.3390/molecules23061305
Chicago/Turabian StyleShi, Yanhong, Cheng Zheng, Jinhang Li, Li Yang, Zhengtao Wang, and Rui Wang. 2018. "Separation and Quantification of Four Main Chiral Glucosinolates in Radix Isatidis and Its Granules Using High-Performance Liquid Chromatography/Diode Array Detector Coupled with Circular Dichroism Detection" Molecules 23, no. 6: 1305. https://doi.org/10.3390/molecules23061305
APA StyleShi, Y., Zheng, C., Li, J., Yang, L., Wang, Z., & Wang, R. (2018). Separation and Quantification of Four Main Chiral Glucosinolates in Radix Isatidis and Its Granules Using High-Performance Liquid Chromatography/Diode Array Detector Coupled with Circular Dichroism Detection. Molecules, 23(6), 1305. https://doi.org/10.3390/molecules23061305