Development of method quantitative content of dihydroquercetin. Report 1

Authors

  • Олександр Юрійович Владимиров National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002, Ukraine
  • Вікторія Акоповна Георгіянц National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002, Ukraine https://orcid.org/0000-0001-8794-8010
  • Ганна Олександрівна Бур’ян National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002, Ukraine
  • Шарк Амжад Ібрагім Абу National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002, Ukraine
  • Лідія Олександрівна Петрушова National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002, Ukraine
  • Тетяна Вікторівна Алексєєва National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002, Ukraine
  • Олександр Анатолійович Здорик National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002, Ukraine
  • Василь Васильович Гриненко National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002, Ukraine
  • Ірина Анатоліївна Данилова National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002, Ukraine

DOI:

https://doi.org/10.15587/2313-8416.2016.59243

Keywords:

photocolorimetric method, quantitative determination, validation characteristics, the State Pharmacopoeia of Ukraine, dihydroquercetin

Abstract

Today is markedly increasing scientific interest in the study of flavonoids in plant objects due to their high biological activity. In this regard, the urgent task of analytical chemistry is in developing available analytical techniques of determination for flavonoids in plant objects.

Aim. The aim was to develop specific techniques of quantitative determination for dihydroquercetin and determination of its validation characteristics.

Methods. The technique for photocolorimetric quantification of DQW, which was based on the specific reaction of cyanidine chloride formation when added zinc powder to dihydroquercetin solution in an acidic medium has been elaborated.

Results. Photocolorimetric technique of determining flavonoids recalculating on DQW has been developed, its basic validation characteristics have been determined. The obtained metrological characteristics of photocolorimetric technique for determining DQW did not exceed admissibility criteria in accordance with the requirements of the State Pharmacopoeia of Ukraine.

Conclusions. By the results of statistical analysis of experimental data, it has been stated that the developed technique can be used for quantification of DQW. Metrological data obtained indicate that the method reproduced in conditions of two different laboratories with confidence probability 95 % unit value deviation was 101,85±2,54 %

Author Biographies

Олександр Юрійович Владимиров, National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002

Candidate of pharmaceutical sciences

Department of Quality, Standardization and Certification of Medicines

Вікторія Акоповна Георгіянц, National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002

Professor, Doctor of pharmaceutical sciences, Head of Pharmaceutical chemistry Department 

Ганна Олександрівна Бур’ян, National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002

Candidate of pharmaceutical sciences, associate professor of Pharmaceutical chemistry Department 

Шарк Амжад Ібрагім Абу, National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002

Candidate of pharmaceutical sciences, associate professor

Department of Pharmaceutical chemistry 

Лідія Олександрівна Петрушова, National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002

Candidate of pharmaceutical sciences, associate professor of Pharmaceutical chemistry Department

Department of Pharmaceutical chemistry 

Тетяна Вікторівна Алексєєва, National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002

Candidate of pharmaceutical sciences, associate professor of Pharmaceutical chemistry Department

Department of Pharmaceutical chemistry 

Олександр Анатолійович Здорик, National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002

Associate professor, Candidate of pharmaceutical science

Department of Pharmaceutical chemistry 

Василь Васильович Гриненко, National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002

Associate professor, Candidate of pharmaceutical science

Department of Pharmaceutical chemistry 

Ірина Анатоліївна Данилова, National University of Pharmacy 53 Pushkinska str., Kharkov, Ukraine, 61002

Candidate of pharmaceutical sciences assistant of Pharmaceutical Chemistry Department 

References

Galleano, M., Pechanova, O., G. Fraga, C. (2010). Hypertension, Nitric Oxide, Oxidants, and Dietary Plant Polyphenols. Current Pharmaceutical Biotechnology, 11 (8), 837–848. doi: 10.2174/138920110793262114

Przybylski, R., Gruczyńska, E. (2009). A review of nutritional and nutraceutical components of Buckwheat. Eur. J. Plant Sci. Biotechnol., 3 (1), 10–22. Available at: http://www.globalsciencebooks.info/Online/GSBOnline/images/0906/EJPSB_3(SI1)/EJPSB_3(SI1)10-22o.pdf

Cucciolla, V., Borriello, A., Oliva, A., Galletti, P., Zappia, V., Ragione, F. D. (2007). Resveratrol: From Basic Science to the Clinic. Cell Cycle, 6 (20), 2495–2510. doi: 10.4161/cc.6.20.4815

Zielińska, D., Szawara-Nowak, D., Zieliński, H. (2010). Determination of the antioxidant activity of rutin and its contribution to the antioxidant capacity of diversified buckwheat origin material by updated analytical strategies. Polish journal of food and nutrition sciences, 60 (4), 315–321.

Krikova, A. V. et. al (2006). Biologicheskaja aktivnost' rastitel'nyh istochnikov flavonoidov. Farmacija, 54 (3), 17–18.

Evdokimova, O. V. (2006). Preparaty rastitel'nogo proishozhdenija pri hronicheskoj venoznoj nedostatochnosti. Novaja apteka, 4, 11–12.

Es'kin, A. P., Levdanskij, V. A., Polezhaeva, N. I. (1998). Metod kolichestvennogo fotometricheskogo opredelenija digidrokvercetina. Himija rastitel'nogo syr'ja, 3, 41–46.

Bagdonaitė, E., Mártonfi, P., Repčák, M., Labokas, J. (2012). Variation in concentrations of major bioactive compounds in Hypericum perforatum L. from Lithuania. Industrial Crops and Products, 35 (1), 302–308. doi: 10.1016/j.indcrop.2011.07.018

Liu, B., Zhu, Y. (2007). Extraction of flavonoids from flavonoid-rich parts in tartary buckwheat and identification of the main flavonoids. Journal of Food Engineering, 78 (2), 584–587. doi: 10.1016/j.jfoodeng.2005.11.001

Bobkov, Ju. G., Babajan, Je. A. et. al (1987). Obshhie metody analiza: Gosudarstvennaja farmakopeja SSSR. Issue 1. Moscow: «Medicina», 336.

Vladymyrov, O. Ju. (2015). Rozrobka ta standartyzacija profilaktychnyh zasobiv na osnovi roslynnyh dzherel dygidrokvercetynu. Kharkiv, 24.

Derzhavna Farmakopeja Ukrai'ny (2008). Derzh. p-vo “Naukovo–ekspertnyj farmakopejnyj centr”. Kharkiv: RIREG, 617.

Jevtifjejeva, O. A. (2011). Standartyzacija pidhodiv do ocinky jakosti ekstemporal'nyh likars'kyh zasobiv. Kharkiv, 42.

Published

2016-01-29

Issue

Section

Pharmaceutical Sciences