Определение флавоноидов горянки и их метаболитов методом тандемной хроматомасс-спектрометрии высокого разрешения (1105645), страница 17
Текст из файла (страница 17)
2007. V. 43. № 1.P. 352–357.107. Chen Y., Fan G., Chen B., Xie B., Xie Y., Wu H., Wu Y., Yan C.,Wang J. Separation and quantitative analysis of coumarin compounds fromAngelica dahurica (Fisch. ex Hoffm) Benth. et Hook. by pressurized capillaryelectrochromatography // J. Pharm. and Biomed. Anal. 2006. V. 41. № 1.P.
105-116.108.FonsecaF.N.,TavaresM.F.M.,HorvathC.Capillaryelectrochromatography of selected phenolic compounds of Chamomilla recutita //J. Chromatogr. A. 2007. V. 1154. № 1-2. P. 390–399.109. Маерле К. В. Сверхсшитый полимер на основе винилпиридина вкачестве стационарной фазы в капиллярной электрохроматографии. Диc.канд. хим. наук. Моcква. 2009. 112 c.110. Zhang L., Zhang J., Wang H., Zhang L., Zhang W., Zhang Y. Analysisof flavonoids in leaves of Adinandra nitida by capillary electrochromatography on120monolithic columns with stepwise gradient elution // J. Sep. Sci. 2005.
V. 28. № 8.P. 774–779.111.FonsecaF.N.,TavaresM.F.M.,HorvathC.Capillaryelectrochromatography of selected phenolic compounds of Chamomilla recutita //J. Chromatogr. A. 2007. V. 1154. № 1. P. 390–399.112. Vanhoenacker G., Dermaux A., Keukeleire D. D., Sandra P. Single-runcapillary electrochromatographic analysis of hop acids and prenylated hopflavonoids // J. Sep. Sci. 2001. V. 24. № 1.
P. 55–58.113. Jemmali Z., Chartier A., Dufresne C., Elfakir C. Optimization of thederivatizationprotocolofpentacyclictriterpenespriortotheirgaschromatography–mass spectrometry analysis in plant extracts // Talanta. 2016.V. 147. P. 35–43.114. Topolewska A., Czarnowska K., Halinski L.P., Stepnowski. Evaluationof four derivatization methods for the analysis of fatty acids from green leafyvegetables by gas chromatography // J. Chromatogr.
B. 2015. V. 990. P. 150–157.115. Farajzadeh M.A., Nouri N., Khorram P. Derivatization andmicroextraction methods for determination of organic compounds by gaschromatography // TrAC Trends in Analytical Chemistry. V. 55. P. 14–23.116. Chen Y.-Z., Kao S.-Y., Jian H.-C., Yu Y-M., Li J.-Y., Wang W.-H.,Tsai C.-W. Determination of cholesterol and four phytosterols in foods withoutderivatization by gas chromatography-tandem mass spectrometry // J. Food andDrug Analysis. V. 23.
№ 4. P.636–644.117. Andrasi N., Helenkar A., Zaray G., Vasanits A., Molnar-Perl I.Derivatization and fragmentation pattern analysis of natural and synthetic steroids,as their trimethylsilyl (oxime) ether derivatives by gas chromatography massspectrometry: Analysis of dissolved steroids in wastewater samples // J.Chromatogr. A. 2011. V.
1218. № 14. P. 1878–1890.118. Xie G.-X., Qiu Y.-P., Qiu M.-F., Gao X.-F., Liu Y.-M., Jia W. Analysisof dencichine in Panax notoginseng by gas chromatography–mass spectrometry121with ethyl chloroformate derivatization // J. Pharm. and Biomed. Anal. 2007.V. 43. № 3. P. 920-925.119.
De Rijke E., Out P., Niessen W.M., Ariese F., Gooijer C.,Brinkman U.A. Analytical separation and detection methods for flavonoids // J.Chromatogr. A. 2006. V. 1112. № 1-2. P. 31–63.120. Кочетова М.В., Семенистая Е.Н., Ларионов О.Г., Ревина А.А.Определение биологически активных фенолов и полифенолов в различныхобъектах методами хроматографии // Успехи химии. 2007. 76. № 1.C. 88-100.121. Куркин В.А., Гриненко Н.А., Запесочная Г.Г. ТСХ-и ВЭЖХанализ сирингина в Syringa vulgaris II // Химия природн. соед. 1992. № 1.C. 45–49.122.
Дубичев А.Г., Куркин В.А., Запесочная Г.Г., Воронцов Е.Д.Изучение химического состава корневищ Rhodiola rosea методом ВЭЖХ //Химия природн. соед. 1991. № 2. C.188–193.123. Сенцов М.Ф., Браславский В.Б., Куркин В.А., Запесочная Г.Г.,Бакулин В.Т., Правдивцева О.Е. Сравнительное исследование компонентногосостава почек некоторых видов Populus L. методом ВЭЖХ // Раст.
Ресурсы.1997. 33. № 2. C. 51-55.124. Сенцов М.Ф., Браславский В.Б., Куркин В.А., Запесочная Г.Г.,Исследование химического состава почек Populus laurifolia Ledeb // Раст.ресурсы. 1996. Т. 32. № 1-2. С. 100–105.125. Иващенко Н.В., Самылина И.А., Лапшихина А.А. Изучениеполифенольного комплекса лоха узколистного, произрастающего в России //Фармация. 2014. № 7. C. 16–19.126. Naseer S., Lone S.H., Lone J.A., Khuroo M.A., Bhat K.A. LC–MSguided isolation, quantification and antioxidant evaluation ofbioactive principlesfrom Epimedium elatum // J.
Chromatogr. B. 2015. V. 989. P. 62–70.122127. Zhao H.-Y., Sun J.-H., Fan M.-X. Analysis of phenolic compounds inEpimedium plants using liquid chromatography coupled with electrosprayionization mass spectrometry // J. Chromatogr. A. 2008. V. 1190. № 1. P. 157-181.128. Quan Q.-M., Wu W., Li Y.-X., Cai Q.-R.
Variation in icariin andflavonoid contents of Barrenwort species // J. Medicinal Plants Research. 2010.V. 4. № 12. P. 1176–1181.129. Wang L., Wang X., Kong L. Automatic authentication and distinctionof Epimedium koreanum and Epimedium wushanense with HPLC fingerprintanalysis assisted by pattern recognition techniques // Biochemical Systematics andEcology. 2012. V. 40. P. 138–145.130. Zhao H., Fan M., Fan L., Sun J., Guo D. Liquid chromatography–tandem mass spectrometry analysis of metabolites in rats after administration ofprenylflavonoids from Epimediums // J. Chromatogr. B. 2010.
V. 878. № 15-16.P. 1113–1124.131. Jin Y., Wu C.-S., Zhang J.-L., Li Y.-F. A new strategy for the discoveryof Epimedium metabolites using high-performance liquid chromatography withhigh resolution mass spectrometry // Analytica Chimica Acta. 2013. V. 768.P. 111-117.132. Huang D., Yang J., Lu X., Deng Y., Xiong Z., Li F. An integratedplasma and urinary metabonomic study using UHPLC–MS: intervention effects ofEpimedium koreanum on «Kidney-Yang Deficiency syndrome» rats // J.
Pharm.and Biomed. Anal. 2013. V. 76. P. 200-206.133. Xu W., Zhang Y., Yang M., Shen Z., Zhang X., Zhang W., Li H.LC-MS/MS method for the simultaneous determination of icariin and its majormetabolites in rat plasma // J. Pharm. and Biomed. Anal. 2007. V. 45. № 4.P.
667-672.134. Qian Q., Li S.-L., Sun E., Zhang K.-R., Tan X.-B., Wei Y.-J., FanH.-W., Cui L., Jia X.-B. Metabolite profiles of icariin in rat plasma by ultra-fastliquidchromatographycoupledtotriple-quadrupole/time-of-flightspectrometry // J. Pharm. and Biomed. Anal.
2012. V. 66. № 4. P. 392-398.mass123135. Liu M., Liu H., Lu X., Li C., Xiong Z., Li F. Simultaneousdetermination of icariin, icariside II and osthole in rat plasma after oraladministration of the extract of Gushudan (a Chinese compound formulation) byLC–MS/MS // J. Chromatogr. B. 2007. V. 860. № 1. P. 113–120.136. Zhang Y.-P., Xu W., Li N., Li H.-Y., Shen Z.-Y., Zhang X.-M.,Yang M., Zhang W.-D., Zhang C. LC-MS-MS method for simultaneousdetermination of icariin and its active metabolite icariside II in human plasma //Chromatogr. 2008.
V. 68. P. 245-250.137. Wong S.P., Shen P., Lee L., Li J., Yong E.L. Pharmacokinetics ofprenylflavonoids and correlations with the dynamics of estrogen action in serafollowing ingestion of a standardized Epimedium extract // J. Pharm. and Biomed.Anal. 2009. V. 50. № 2. P. 216-223.138. Shen P., Wong S.P., Li J., Yong E.L. Simple and sensitive liquidchromatography–tandem mass spectrometry assay for simultaneous measurementof five Epimedium prenylflavonoids in rat sera // J. Chromatogr. B. 2009. V. 877.№ 1-2. P. 71–78.139. Hu Y.M., Wang Y.T., Sze S.C.W., Tsang K.W., Wong H.K., Liu Q.,Zhong L.D., Tong Y. Identifi cation of the major chemical constituents and theirmetabolites in rat plasma and various organs after oral administration of effectiveErxian Decoction (EXD) fraction by liquid chromatography-mass spectrometry //Biomed.
Chromatogr. 2010. V. 24. № 5. P. 479–489.140. Pozharitskaya O.N., Karlina M.V., Shikov A.N., Kosman V.M.,Makarova M.N., Makarov V.G. Determination of icariin in rat plasma by reversephase high-performance liquid chromatography after oral administration of a lipidbased suspension of Epimedium koreanum extract // Biomed.
Chromatogr. 2008.V. 22. № 6. P. 625–629.141. Tu Y., Zhu L., Wang G., Zhao L., Xiang B. Development andvalidation of a LC–ESI–MS assay for determination of icariin in rat plasma afteradministration of Herba Epimedii // Chromatogr. 2008. V. 67. № 7-8. P. 591–597.124142. Yang W., Yu X.-C., Chen X.-Y., Zhang L., Lu C.-T., Zhao Y.-Z.Pharmacokinetics and tissue distribution profile of icariin propylene glycolliposome intraperitoneal injection in mice // J. Pharmacy and Pharmacology. 2012.V.
64. № 2. P. 190–198.143. Zhang S.-Q. Biodistribution evaluation of icaritin in rats by ultraperformanceliquidchromatography–tandemmassspectrometry//J.Ethnopharmacology. 2014. V. 155. P. 1382–1387.144. Chang Q., Wang G.-N., Li Y., Zhang L., You C., Zheng Y. Oralabsorption and excretion of icaritin, an aglycone and also active metabolite ofprenylflavonoids from the Chinese medicine Herba Epimedii in rats //Phytomedicine. 2012. V. 19. P.
1024–1028.145. Liu J., Lou Y.J. Determination of icariin and metabolites in rat serumby capillary zone electrophoresis: rat pharmacokinetic studies after administrationof icariin // J. Pharm. Biomed. Anal. 2004. V. 36. № 2. P. 365–370.146. Wu C., Zhang J., Zhou T., Guo B., Wang Y., Hou J. Simultaneousdetermination of seven flavonoids in dog plasma by ultra-performance liquidchromatography–tandem mass spectrometry and its application to a bioequivalencestudy of bioactive components in Herba Epimedii and Er-Xian Decoction //J. Pharm.