Applications of HPLC-MS in compound Ilex pubescens extract study

Frontiers of Chemistry in China - Tập 1 - Trang 138-144 - 2006
Yunyun Yang1, Chen Hongwei1, Ming Zhong2, Zhiling Ma2, Jiuwei Teng1, Dehai Mu1
1Guangdong Key Laboratory of Chemical Emergency Test, China National Analytical Center, Guangzhou, China
2Institute of Analytical Sciences, School of Chemistry and Chemical Engineering, Sun Yat-Sen University, Guangzhou, China

Tóm tắt

In this paper, high performance liquid chromatography (HPLC) along with mass spectrometry (MS) and HPLC along with a diode array detector (DAD) was used to study the compound Ilex pubescens extract. Two ionization techniques: electro spray ionization (ESI) and atmospheric pressure chemical ionization (APCI) were used in this work. The liquid chromatograms obtained by DAD, total ion chromatograms (TIC) from positive-and negative-ion ESI-MS and the positive-and negative-ion APCI-MS were compared. The liquid chromatograms obtained by TIC from ESI-MS provided more information on chromatographic peaks than those obtained by DAD or TIC from APCI-MS. It is suggested that the fingerprints of the compound Ilex pubescens extract should be provided by the liquid chromatograms obtained by DAD together with TIC from the negative-ion ESI-MS. The molecular weights of the nine main components in an HPLC-DAD chromatogram were determined by the corresponding positive-and negative-ion ESI and the positive-and negative-ion APCI mass spectra information. In the liquid chromatogram obtained by TIC from the negative-ion ESI-MS, the molecular weights of 23 main components were determined based on the corresponding positive-and negative-ion ESI mass spectra information.

Tài liệu tham khảo

Luo H.-P., Chen L.-R., Li Z.-Q., Ding Z.-S., Xu X.-J., et al., Frontal immunoaffinity chromatography with mass spectrometric detection: a method for finding active compounds from traditional Chinese herbs, Anal. Chem., 2003, 75(16): 3994–3998 Cai Z.-Y., Mass spectrometry application in Chinese medicine study, Chinese Journal of Instrumental Analysis, 2005, 24(suppl.): 5–7 World Health Organization, Guidelines for the Assessment of Herbal Medicines, Munich, 28.6.1991, WHO, Geneva, 1991 Zhao L.-H., Huang C.-Y., Shan Z., Xiang B.-G., Mei L.-H, Fingerprint analysis of Psoralea corylifolia L. by HPLC and LC-MS, J. Chromatogr., B, 2005, 821: 67–74 Zhuo Y., Huang Y. and Chen Y.-L., Bacterial Endotoxins Text for Ilex Pubescens Compound Injection, Zhongyao Xinyao Yu Linchuang Yaoli, 2004, 15(2): 122–123. (in Chinese) Xiao R., Yuan Z.-F., Wang C.-Y., Zhang L.-T, Wang C.-H, Fingerprints of Scutellaria baicalensis from different habitats by HPLC, Chinese Traditional and Herbal Drugs, 2005, 36(5): 743–747. (in Chinese) Xu Y.-P. and Yao T.-W., Study and Application of Fingerprints of Ginkgo biloba Leaves Preparations, J. Chin. Pharm. Sci., 2005, 14(1): 43–50 Huang Y.-F., Study on HPLC fingerprint of compound Maodongqing Injection. B.Sc thesis at Sun Yat-Sen University, Guangzhou, 2005. (in Chinese) Gross J.-H., Mass Spectrometry, Berlin: Springer-Verlag, 2004, 88–103, 441–468, 488–490 Pramanik B.-N., Ganguly A.-K., Gross M.-L., In: Jiang H.,-J. Yu K.-J., (eds.) (translator), Applied Electrospray Mass Spectrometry, Beijing: Chemical Industry Press, 2005, 142–178. (in Chinese) Horning E.-C., Horning M.-G., Carroll D.-I., Dzidic I., New picogram detection system based on a mass spectrometer with an external ionization source at atmospheric pressure, Anal. Chem., 1973, 45: 936–943 Chinese State Food and Drug Administration, The technical requirements of Chinese medicine herbs injection fingerprint study, Chinese Traditional Patent Medicine, 2000, 22(10): 671–675. (in Chinese) Wu L.-J., Natural Pharmaceutical Chemistry, Beijing: People’s Medical Publishing House, 1998, 18–51 (in Chinese) Niessen W.-M.-A., Advances in Instrumentation in Liquid Chromatography-Mass Spectrometry and Related Liquid — Introduction Techniques, J. Chromatogr., A, 1998, 794: 407–435 Niessen W.-M.-A., Analysis of Antibiotics by Liquid Chromatography-Mass Spectrometry, J. Chromatogr., A, 1998, 812: 53–75