Discrimination between Leave of Apocynum venetum and Its Adulterant, A. pictum Based on Antioxidant Assay and Chemical Profiles Combined with Multivariate Statistical Analysis
Abstract
:1. Introduction
2. Experimental Section
2.1. Chemicals and Reagents
2.2. Sample Collection and Authentication
Sample Codes | Geographical/Collection Sources | Morphological and Microscopic Characteristics | Species b | ||
---|---|---|---|---|---|
Lateral Vein | Texture | Papillae of Epidermal Cell a | |||
AV1 | Hong Kong Drug stores | distinct | thin, fragile | – | AV |
AV2 | Hong Kong Drug stores | distinct | thin, fragile | – | AV |
AV3 | Hong Kong Drug stores | distinct | thin, fragile | – | AV |
AV4 | Hong Kong Drug stores | distinct | thin, fragile | – | AV |
AV5 | Tianjin province, China | distinct | thin, fragile | – | AV |
AV6 | Hebei province, China | distinct | thin, fragile | – | AV |
AV7 | Shanxi province, China | distinct | thin, fragile | – | AV |
AV8 | Shanxi province, China | distinct | thin, fragile | – | AV |
AV9 | Shanxi province, China | distinct | thin, fragile | – | AV |
AV10 | Shanxi province, China | distinct | thin, fragile | – | AV |
AP1 | Xinjiang province, China | indistinct | thick, hard | + | AP |
AP2 | Xinjiang province, China | indistinct | thick, hard | + | AP |
AP3 | Hong Kong Drug stores | indistinct | thick, hard | + | AP |
AP4 | Hong Kong Drug stores | indistinct | thick, hard | + | AP |
AP5 | Hong Kong Drug stores | indistinct | thick, hard | + | AP |
AP6 | Hong Kong Drug stores | indistinct | thick, hard | + | AP |
2.3. Sample Preparation for Antioxidant Analysis
2.4. Fingerprint Analysis by HPLC-DAD-MS
2.5. Quantitative Analysis of Hyperoside and Isoquercetrin by HPLC-UV
2.6. Free Radical Scavenging Capacity
2.7. Cell Culture and Cell Viability Assay
2.8. Statistical Analysis
3. Results and Discussion
3.1. Chromatographic Fingerprint Studies between AV and AP by HPLC-DAD-MS
Name of Flavonoids | Peak | Retention Time (min) | UV λmax | MW | MS Fragmentation Data (ve) |
---|---|---|---|---|---|
Chlorogenic acid | 1 | 7.50 | 240, 326 | 354 | 352.7, 190.7 |
Rutin | 2 | 18.94 | 256, 354 | 610 | 608.7, 300.8 |
Hyperoside | 3 | 20.79 | 256, 354 | 464 | 462.6, 300.8 |
Isoquercetrin | 4 | 22.00 | 256, 354 | 464 | 462.6. 300.7 |
Acetylated hyperoside | 5 | 26.59 | 256, 354 | 506 | 504.6, 462.8 |
Trifolin | 6 | 28.04 | 264, 346 | 448 | 446.7, 283.7 |
Acetylated isoquercetrin | 7 | 28.92 | 366, 354 | 506 | 504.6, 462.6 |
Astragalin | 8 | 31.99 | 266, 346 | 448 | 446.6, 283.6 |
Quercetin | 9 | 49.20 | 256, 370 | 302 | 300.8, 150.7 |
Kaempferol | 10 | 51.00 | 266, 366 | 286 | 284.8, 150.8 |
3.2. Similarity Index Evaluation and Principal Component Analysis
Sample Information | SI Value | |
---|---|---|
Calculated from AV Mean Chromatograms | Calculated from AP Mean Chromatograms | |
AV1 | 0.952 | 0.347 |
AV2 | 0.976 | 0.379 |
AV3 | 0.987 | 0.314 |
AV4 | 0.987 | 0.347 |
AV5 | 0.927 | 0.394 |
AV6 | 0.986 | 0.350 |
AV7 | 0.968 | 0.348 |
AV8 | 0.977 | 0.355 |
AV9 | 0.964 | 0.316 |
AV10 | 0.968 | 0.312 |
AP1 | 0.235 | 0.954 |
AP2 | 0.354 | 0.997 |
AP3 | 0.463 | 0.961 |
AP4 | 0.330 | 0.993 |
AP5 | 0.350 | 0.994 |
AP6 | 0.397 | 0.988 |
AV Sample | Content of Markers (mg/kg) | AP Sample | Content of Markers (mg/kg) | ||
---|---|---|---|---|---|
Hyperoside | Isoquercetrin | Hyperoside | Isoquercetrin | ||
AV1 | 6414 | 5218 | AP1 | ND | 6289 |
AV2 | 6050 | 5636 | AP2 | ND | 13539 |
AV3 | 5542 | 6015 | AP3 | ND | 17808 |
AV4 | 5463 | 6390 | AP4 | ND | 14987 |
AV5 | 5351 | 5311 | AP5 | ND | 13206 |
AV6 | 5894 | 4406 | AP6 | ND | 14312 |
AV7 | 5438 | 4917 | |||
AV8 | 5565 | 4900 | |||
AV9 | 4232 | 3483 | |||
AV10 | 5415 | 4448 | |||
Mean | 5536.4 | 5072.4 | Mean | ND | 13356 |
3.3. Comparison between Free Radical Scavenging Capacities
3.4. Protective Effect Against H2O2-Induced Damage in LO2 Cells
4. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
- Yi, T.; Zhao, Z.Z.; Yu, Z.L.; Chen, H.B. Comparison of the anti-inflammatory and anti-nociceptive effects of three medicinal plants known as “Snow Lotus” herb in traditional Uighur and Tibetan medicines. J. Ethnopharmacol. 2010, 128, 405–411. [Google Scholar] [CrossRef] [PubMed]
- Editorial Committee of the Flora of China of Chinese Academy of Science. Flora of China; Science Press: Beijing, China, 1977; p. 157. [Google Scholar]
- Editorial Committee of Chinese Pharmacopoeia. Pharmacopoeia of the People’s Republic of China, 2010th ed.; China Medical Science and Technology Press: Beijing, China, 2010; Volume 1, p. 196. [Google Scholar]
- Sandei, N.; Michiko, M.; Chisako, C. Flavonid content in Apocynum and Poacnum leaves and lipid-peroidation inhibiting efeet of flavonoids. Nat. Med. 1994, 48, 322–323. [Google Scholar]
- Yokozawa, T.; Nakagawa, T. Inhibitory effects of Luobuma tea and its components against glucose-mediated protein damage. Food Chem. Toxicol. 2004, 42, 975–981. [Google Scholar] [CrossRef] [PubMed]
- Kagawa, T.; Nakazawa, Y.; Tagashira, E.; Takahashi, Y.; Onizuka, S.; Nishibe, S. Studies on antihypertensive effect of Luobuma (Apocynum venetum L.) leaf extract (1). Nat. Med. 2004, 58, 109–112. [Google Scholar]
- Kim, D.W.; Yokozawa, T.; Hattori, M.; Kadota, S.; Namba, T. Effects of aqueous extracts of Apocynum venetum leaves on spontaneously hypertensive, renal hypertensive and NaCl-fed-hypertensive rats. J. Ethnopharmacol. 2000, 72, 53–59. [Google Scholar] [CrossRef] [PubMed]
- Butterweck, V.; Simbrey, K.; Seo, S.; Sasaki, T.; Nishibe, S. Long-term effects of an Apocynum venetum extract on brain monoamine levels and Beta-AR density in Rats. Pharmacol. Biochem. Behav. 2003, 75, 557–564. [Google Scholar] [CrossRef] [PubMed]
- Grundmann, O.; Nakajima, J.; Seo, S.; Butterweck, V. Anti-anxiety effects of Apocynum venetum L. in the elevated Plus Maze Test. J. Ethnopharmacol. 2007, 110, 406–411. [Google Scholar] [CrossRef] [PubMed]
- Kim, D.W.; Yokozawa, T.; Hattori, M.; Kadota, S.; Namba, T. Effects of aqueous extracts of Apocynum venetum leaves on hypercholesterolaemic rats. Phytother. Res. 1998, 12, 46–48. [Google Scholar] [CrossRef]
- Han, L.W.; Hou, J.J.; Zhao, L.; Liang, T.G.; Li, Q.S. Establishment of HPLC fingerprint and its application in identification of Folium Apocyni Veneti. Chin. Trad. Herb. Drug 2008, 39, 591–594. [Google Scholar]
- An, H.J.; Wang, H.; Lan, Y.X.; Hashi, Y.; Chen, S.Z. Simultaneous qualitative and quantitative analysis of phenolic acids and flavonoids for the quality control of Apocynum venetum L. leaves by HPLC-DAD-ESI-IT-TOF-MS and HPLC-DAD. J. Pharm. Biomed. Anal. 2013, 85, 295–304. [Google Scholar] [CrossRef] [PubMed]
- Xie, W.; Zhang, X.; Wang, T.; Hu, J. Botany, traditional uses, phytochemistry and pharmacology of Apocynum venetum L. (Luobuma): A review. J. Ethnopharmacol. 2012, 141, 1–8. [Google Scholar] [CrossRef] [PubMed]
- Yokozawa, T.; Kashiwada, Y.; Hattori, M.; Chung, H.Y. Study on the components of Luobuma with peroxynitrite-scavenging activity. Biol. Pharm. Bull. 2002, 25, 748–752. [Google Scholar] [CrossRef] [PubMed]
- Wang, D.Q.; Li, G.Q.; Cheng, Z. The research progress and future respective on Luobuma. Jiangsu Agric. Sci. 2011, 39, 310–313. [Google Scholar]
- Chinese Medicine Division, Department of Health, Government of the Hong Kong Special Administrative Region. Hong Kong Chinese Medica Materia Standards; Chinese Medicine Division, Department of Health, Government of the Hong Kong Special Administrative Region: Hong Kong, China, 2013; Volume 5.
- Liu, X.H.; Zhang, Y.C.; Li, J.S.; Wang, M.; Wang, L.J. Simultaneous Determination of Four Flavonoids in Folium Apocyni Veneti by HPCE-DAD. Chin. Pharm. J. 2010, 45, 464–467. [Google Scholar]
- Zhang, Y.; Liu, C.; Zhang, Z.; Wang, J.; Wu, G.; Li, S. Comprehensive separation and identification of chemical constituents from Apocynum venetum leaves by high-performance counter-current chromatography and high performance liquid chromatography coupled with mass spectrometry. J. Chromatogr. B 2010, 878, 3149–3155. [Google Scholar] [CrossRef]
- Li, B.Y.; Hu, Y.; Liang, Y.Z.; Huang, L.F.; Xu, C.J.; Xie, P.S. Spectral correlative chromatography and its application to analysis of chromatographic fingerprints of herbal medicines. J. Sep. Sci. 2004, 27, 581–588. [Google Scholar] [CrossRef] [PubMed]
- Chan, S.W.; Li, S.; Kwok, C.Y.; Benzie, I.F.F.; Szeto, Y.T.; Guo, D.J.; He, X.P.; Yu, P.H.F. Antioxidant activity of Chinese medicinal herbs. Pharm. Biol. 2008, 46, 587–595. [Google Scholar] [CrossRef]
- Coletta, A.; Berto, S.; Crupi, P.; Cravero, M.C.; Tamborra, P.; Antonacci, D.; Daniele, P.G.; Prenesti, E. Effect of viticulture practices on concentration of polyphenolic compounds and total antioxidant capacity of Southern Italy red wines. Food Chem. 2014, 152, 467–474. [Google Scholar] [CrossRef] [PubMed]
- Chan, E.; Wong, C.Y.; Wan, C.W.; Kwok, C.Y.; Wu, J.H.; Ng, K.M.; So, C.H.; Au, A.L.; Poon, C.C.; Seto, S.W.; et al. Evaluation of anti-oxidant capacity of root of Scutellaria baicalensis Georgi, in comparison with roots of Polygonum multiflorum Thunb and Panax ginseng CA Meyer. Am. J. Chin. Med. 2010, 38, 815–827. [Google Scholar] [CrossRef] [PubMed]
- Ye, L.; Shi, Z.; Liu, H.; Yang, X.; Wang, K. Gadolinium induced apoptosis of human embryo liver LO2 cell line by ROS-mediated AIF pathway. J. Rare Earth 2011, 29, 178–184. [Google Scholar] [CrossRef]
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Chan, C.-O.; Lau, C.-C.; Ng, Y.-F.; Xu, L.-J.; Chen, S.-B.; Chan, S.-W.; Mok, D.K.-W. Discrimination between Leave of Apocynum venetum and Its Adulterant, A. pictum Based on Antioxidant Assay and Chemical Profiles Combined with Multivariate Statistical Analysis. Antioxidants 2015, 4, 359-372. https://doi.org/10.3390/antiox4020359
Chan C-O, Lau C-C, Ng Y-F, Xu L-J, Chen S-B, Chan S-W, Mok DK-W. Discrimination between Leave of Apocynum venetum and Its Adulterant, A. pictum Based on Antioxidant Assay and Chemical Profiles Combined with Multivariate Statistical Analysis. Antioxidants. 2015; 4(2):359-372. https://doi.org/10.3390/antiox4020359
Chicago/Turabian StyleChan, Chi-On, Ching-Ching Lau, Yam-Fung Ng, Li-Jia Xu, Si-Bao Chen, Shun-Wan Chan, and Daniel Kam-Wah Mok. 2015. "Discrimination between Leave of Apocynum venetum and Its Adulterant, A. pictum Based on Antioxidant Assay and Chemical Profiles Combined with Multivariate Statistical Analysis" Antioxidants 4, no. 2: 359-372. https://doi.org/10.3390/antiox4020359
APA StyleChan, C.-O., Lau, C.-C., Ng, Y.-F., Xu, L.-J., Chen, S.-B., Chan, S.-W., & Mok, D. K.-W. (2015). Discrimination between Leave of Apocynum venetum and Its Adulterant, A. pictum Based on Antioxidant Assay and Chemical Profiles Combined with Multivariate Statistical Analysis. Antioxidants, 4(2), 359-372. https://doi.org/10.3390/antiox4020359