全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

Validated UPLC/Q-TOF-MS Method for Determination of Poliumoside in Rat Plasma and Its Application to Pharmacokinetic Study

DOI: 10.4236/ajac.2016.73024, PP. 266-274

Keywords: Poliumoside, UPLC/Q-TOF-MS, Rat Plasma, Pharmacokinetics

Full-Text   Cite this paper   Add to My Lib

Abstract:

Poliumoside is the main active constituent of Callicarpa kwangtungensis Chun (CK), a traditional Chinese medicine for management of hemostasis. In this study, a rapid and selective ultra-performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry (UPLC/ Q-TOF-MS) method was developed and validated to quantify poliumoside in rat plasma. The targeted analytes in rat plasma were prepared through protein-precipitation method using 10% trichloroacetic acid (TCA). The chromatographic separation was performed on a Waters BEH C18 column (2.1 × 100 mm, 1.7 μm) by acetonitrile-water containing 0.1% formic acid. The calibration curve was linear over the range of 50 - 10,000 ng/mL (r2 > 0.99). The intra-day or inter-day precision was less than 7.97% and accuracy was within ?7.00% - 3.36%. The developed method was successfully applied to pharmacokinetic study of poliumoside in rat plasma. Although being rapidly absorbed (Tmax ≤ 30 min), poliumoside was poorly bioavailable after oral administration (the absolute bioavailability was only 0.69%).

References

[1]  Cai, H., Xie, Z., Liu, G., Sun, X., Peng, G., Lin, B. and Liao, Q. (2014) Isolation, Identification and Activities of Natural Antioxidants from Callicarpa kwangtungensis Chun. PLoS One, 9, e93000.
http://dx.doi.org/10.1371/journal.pone.0093000
[2]  Jia, A., Yang, Y.F., Kong, D.Y. and Xiao, C.C. (2012) GC-MS Analysis of Chemical Constituents of Essential Oil from Callicarpa kwangtungensis and Their Antimicrobial Activity. Zhong Yao Cai, 35, 415-418.
[3]  Zhou, G.P., Xie, E.L., Sheng, J.C., Zhang, J., Wang, J. and Yuan, G.P. (2008) HPLC Determination of for Sythoside B and Poliumoside in Callicarpa kwangtungensis Chun. from Different Habitats of Jiangxi. Chinese Journal of Pharmaceutical Analysis, 28, 1623-1625.
[4]  Tu, P.F., Shi, H.M., Song, Z.H., Jiang, Y. and Zhao, Y.Y. (2007) Chemical Constituents of Cistanche sinensis. Journal of Asian Natural Products Research, 9, 79-84.
http://dx.doi.org/10.1080/10286020500384450
[5]  Tai, B.H., Jung, B.Y., Cuong, N.M., Linh, P.T., Tung, N.H., Nhiem, N.X., Huong, T.T., Anh, N.T., Kim, J.A., Kim, S.K. and Kim, Y.H. (2009) Total Peroxynitrite Scavenging Capacity of Phenylethanoid and Flavonoid Glycosides from the Flowers of Buddleja officinalis. Biological and Pharmaceutical Bulletin, 32, 1952-1956.
http://dx.doi.org/10.1248/bpb.32.1952
[6]  Yu, S.Y., Lee, I.S., Jung, S.H., Lee, Y.M., Lee, Y.R., Kim, J.H., Sun, H. and Kim, J.S. (2013) Caffeoylated Phenylpropanoid Glycosides from Brandisia hancei Inhibit Advanced Glycation End Product Formation and Aldose Reductase in Vitro and Vessel Dilation in Larval Zebrafish in Vivo. Planta Medica, 79, 1705-1709.
http://dx.doi.org/10.1055/s-0033-1351101
[7]  De Marino, S., Festa, C., Zollo, F., Incollingo, F., Raimo, G., Evangelista, G. and Iorizzi, M. (2012) Antioxidant Activity of Phenolic and Phenylethanoid Glycosides from Teucrium polium L. Food Chemistry, 133, 21-28.
http://dx.doi.org/10.1016/j.foodchem.2011.12.054
[8]  He, Z.D., Lau, K.M., Xu, H.X., Li, P.C. and Pui-Hay But, P. (2000) Antioxidant Activity of Phenylethanoid Glycosides from Brandisia hancei. Journal of Ethnopharmacology, 71, 483-486.
http://dx.doi.org/10.1016/S0378-8741(00)00189-6
[9]  Koo, K.A., Sung, S.H., Park, J.H., Kim, S.H., Lee, K.Y. and Kim, Y.C. (2005) In Vitro Neuroprotective Activities of Phenylethanoid Glycosides from Callicarpa dichotoma. Planta Medica, 71, 778-780.
http://dx.doi.org/10.1055/s-2005-871213
[10]  Tatli, II, Takamatsu, S., Khan, I. and Akdemir, Z.S. (2007) Screening for Free Radical Scavenging and Cell Aggregation Inhibitory Activities by Secondary Metabolites from Turkish Verbascum Species. Zeitschrift fur Naturforschung Section C, 62, 673-678.
http://dx.doi.org/10.1515/znc-2007-9-1008
[11]  Sun, X., Liao, Q., Liu, G., Cai, H., Zhang, L., Zhu, C. and Xie, Z. (2013) Simultaneous Determination of Three Phenylethanoid Glycosides from Callicarpae Caulis et Folium in Rat Plasma by LC-MS/MS and Its Application to PK Study. Bioanalysis, 5, 1883-1895.
http://dx.doi.org/10.4155/bio.13.124
[12]  Liu, M.Z., Zhang, Y.L., Zeng, M.Z., He, F.Z., Luo, Z.Y., Luo, J.Q., Wen, J.G., Chen, X.P., Zhou, H.H. and Zhang, W. (2015) Pharmacogenomics and Herb-Drug Interactions: Merge of Future and Tradition. Evidence-Based Complementary and Alternative Medicine, 2015, Article ID: 321091.
http://dx.doi.org/10.1155/2015/321091
[13]  Cote, C., Bergeron, A., Mess, J.N., Furtado, M. and Garofolo, F. (2009) Matrix Effect Elimination during LC-MS/MS Bioanalytical Method Development. Bioanalysis, 1, 1243-1257.
http://dx.doi.org/10.4155/bio.09.117
[14]  Wen, C., Lin, C., Cai, X., Ma, J. and Wang, X. (2014) Determination of Sec-O-Glucosylhamaudol in Rat Plasma by Gradient Elution Liquid Chromatography-Mass Spectrometry. Journal of Chromatography B, 944, 35-38.
http://dx.doi.org/10.1016/j.jchromb.2013.11.001
[15]  Wang, X., Chen, M., Wen, C., Zhang, Q. and Ma, J. (2013) Determination of Chidamide in Rat Plasma by LC-MS and Its Application to Pharmacokinetics Study. Biomedical Chromatography, 27, 1801-1806.
http://dx.doi.org/10.1002/bmc.3001
[16]  Zhang, Q., Wen, C., Xiang, Z., Ma, J. and Wang, X. (2014) Determination of CUDC-101 in Rat Plasma by Liquid Chromatography Mass Spectrometry and Its Application to a Pharmacokinetic Study. Journal of Pharmaceutical and Biomedical Analysis, 90, 134-138.
http://dx.doi.org/10.1016/j.jpba.2013.11.031
[17]  Viswanathan, C.T., Bansal, S., Booth, B., DeStefano, A.J., Rose, M.J., Sailstad, J., Shah, V.P., Skelly, J.P., Swann, P.G. and Weiner, R. (2007) Quantitative Bioanalytical Methods Validation and Implementation: Best Practices for Chromatographic and Ligand Binding Assays. Pharmaceutical Research, 24, 1962-1973.
http://dx.doi.org/10.1007/s11095-007-9291-7
[18]  Jia, C., Shi, H., Wu, X., Li, Y., Chen, J. and Tu, P. (2006) Determination of Echinacoside in Rat Serum by Reversed-Phase High-Performance Liquid Chromatography with Ultraviolet Detection and Its Application to Pharmacokinetics and Bioavailability. Journal of Chromatography B, 844, 308-313.
http://dx.doi.org/10.1016/j.jchromb.2006.07.040
[19]  Wu, Y.T., Lin, L.C., Sung, J.S. and Tsai, T.H. (2006) Determination of Acteoside in Cistanche deserticola and Boschniakia rossica and Its Pharmacokinetics in Freely-Moving Rats Using LC-MS/MS. Journal of Chromatography B, 844, 89-95.
http://dx.doi.org/10.1016/j.jchromb.2006.07.011
[20]  Zhou, W., Tan, X., Shan, J., Liu, T., Cai, B. and Di, L. (2014) Effect of Chito-Oligosaccharide on the Intestinal Absorptions of Phenylethanoid Glycosides in Fructus Forsythiae Extract. Phytomedicine, 21, 1549-1558.
http://dx.doi.org/10.1016/j.phymed.2014.06.016
[21]  Deng, R., Xu, Y., Feng, F. and Liu, W. (2014) Identification of Poliumoside Metabolites in Rat Feces by High Performance Liquid Chromatography Coupled with Quadrupole Time-of-Flight Tandem Mass Spectrometry. Journal of Chromatography B, 969, 285-296.
http://dx.doi.org/10.1016/j.jchromb.2014.08.032
[22]  Lei, L., Song, Z.H., Tu, P.F., Li, Y.Z., Wu, L.J. and Chen, F.K. (2001) Metabolic Regulation of Phenylethanoid Glycosides from Herba cistanches in Dogs’ Gastrointestine. Acta Pharmaceutica Sinica, 36, 432-435.
[23]  Wang, Y., Hao, H., Wang, G., Tu, P., Jiang, Y., Liang, Y., Dai, L., Yang, H., Lai, L., Zheng, C., Wang, Q., Cui, N. and Liu, Y. (2009) An Approach to Identifying Sequential Metabolites of a Typical Phenylethanoid Glycoside, Echinacoside, Based on Liquid Chromatography-Ion Trap-Time of Flight Mass Spectrometry Analysis. Talanta, 80, 572-580.
http://dx.doi.org/10.1016/j.talanta.2009.07.027

Full-Text

comments powered by Disqus

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133