COMPOSITION AND ANTIOXIDANT PROPERTIES OF EXTRACTS FROM SHEETS OF THE BLUEBERRY HIGH (VACCINIUM CORYMBOSUM L.)

UDC 634.737:543.55

  • Aleksey Sergeyevich Lazarev Russian State University named after A.N. Kosygin (Technology. Design. Art.) Email: occd@mail.ru
  • Anastasiya Vladimirovna Klyauzova Russian State University named after A.N. Kosygin (Technology. Design. Art.) Email: occd@mail.ru
  • Anna Gennad'yevna Ruchkina Russian State University named after A.N. Kosygin (Technology. Design. Art.) Email: occd@mail.ru
  • Konstantin Ivanovich Kobrakov Russian State University named after A.N. Kosygin (Technology. Design. Art.) Email: occd@mail.ru
  • Liliya Konstantinovna Shpigun Kurnakov Institute of General and Inorganic Chemistry RAS Email: shpigun@igic.ras.ru
Keywords: Highbush Blueberry, plant extract, bioantioxidants, total antioxidant activity

Abstract

The paper presents new data related to the qualitative and quantitative content of phenolic compounds in crop highbush blueberry leaf extracts, as well as to the antioxidant capacity of these extracts. Tall bilberry (Vaccinium corymbosum L.) is a deciduous berry shrub that has become an extremely popular crop whose fruits contain a unique complex of biologically active substances – antioxidants, phytoestrogens and vitamins. As a rule, the leaves of this plant contain, in more or less degree, the same set of phenolic compounds. However, there is currently a lack of scientific information about the peculiarities of the chemical composition and properties of these plants grown in a specific region, which could be of interest for the development of an untapped source of food additives, functional products, nutraceuticals and ingredients for organic cosmetics. The objects of this study were water- and water-alcohol extracts obtained from highbush blueberry leaves of the varieties “Reka”, “Legacy”, “Bluecrop” and “Chantecler” as well as from the mixed sample of these varieties. For comparison, extracts of leaves of crop cowberry, crop cranberry and pharmacy cowberry ("PharmaCvet", 10118) and bearberry("PharmaCvet", 161117) were investigated. The electro-oxidative and antioxidant properties of all extracts were evaluated by using the methods of cyclic voltammetry and spectrophotometry based on a liquid phase reaction with a 2.2ꞌ-diphenyl-1-picrylhydrazyl radical. The results of the studies showed that the leaves of highbush blueberry grown under conditions of ecological farming on the territory of Russia are very promising for use in prophylactic purposes.

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Author Biographies

Aleksey Sergeyevich Lazarev, Russian State University named after A.N. Kosygin (Technology. Design. Art.)

магистрант

Anastasiya Vladimirovna Klyauzova, Russian State University named after A.N. Kosygin (Technology. Design. Art.)

магистрант

Anna Gennad'yevna Ruchkina, Russian State University named after A.N. Kosygin (Technology. Design. Art.)

кандидат химических наук, доцент, доцент кафедры органической химии

Konstantin Ivanovich Kobrakov, Russian State University named after A.N. Kosygin (Technology. Design. Art.)

доктор химических наук, профессор, заведующий кафедрой органической химии

Liliya Konstantinovna Shpigun, Kurnakov Institute of General and Inorganic Chemistry RAS

доктор химических наук, профессор, главный научный сотрудник

References

Su X., Zhang J., Wang H., Xu J., He J., Liu L., Zhang T., Chen R., Kang J. Molecules, 2017, vol. 22, p. 312, DOI: 10.3390/molecules22020312.

Correa-Betanzo J., Allen-Vercoe E., McDonald J., Schroeter K., Corredig M., Paliyath G. Food Chem., 2014, vol. 165, pp. 522–531, DOI: 10.1016/j.foodchem.2014.05.135.

Giacalone M., Di Sacco F., Traupe I., Topini R., Forfori F., Giunta F. Nutr. Neurosci., 2011, vol. 14, pp. 119–125, DOI: 10.1179/1476830511Y.0000000007.

Mlcek J., Jurikova T., Skrovankova S., Sochor J. Molecules, 2016, vol. 21, no. 5, p. 623, DOI: 10.3390/molecules21050623.

Rimando A.M., Khan S.I., Mizuno C.S., Ren G., Mathews S.T., Kim H., Yokoyama W. J. Sci. Food Agric., 2015, vol. 96, pp. 1666–1671, DOI: 10.1002/jsfa.7269.

Spiridovich Ye.V. Botanicheskiye kollektsii: dokumentirovaniye i biotekhnologicheskiye aspekty ispol'zovaniya. [Botani-cal collections: documentation and biotechnological aspects of use]. Minsk, 2015, 226 p. (in Russ.).

Ferlemi A.-V., Lamari F.N. Antioxidants, 2016, vol. 5, no. 2, p. 17, DOI: 10.3390/antiox5020017.

Piljac-Zegarac J., Belscak A., Piljac A. J. Med. Food., 2009, vol. 12(3), pp. 608–614, DOI: 10.1089/ jmf.2008.0081.

Kim S.M., Um A.B-H. J. Med. Plant. Res., 2011, vol. 5(20), pp. 5008–5016.

Naczk M., Amarowicz R., Zadernowski R., Pegg R.B., Shahidi F. Pol. J. Food Nutr. Sci., 2003, vol. 12/53, no. 1, pp. 166–169.

Riihinen K., Jaakola L., Karenlampi S., Hohtola A. Food Chem., 2008, vol. 110, pp. 156–160, DOI: 10.1016/j.foodchem.2008.01.057.

Okhrimenko L.P., Kalinkina G.I., Dmitruk S.Ye. Khimiya rastitel'nogo syr'ya, 2005, no. 1, pp. 31–35. (in Russ.).

Okhrimenko L.P., Kalinkina G.I., Luksha Ye.A., Kolomiyets N.E. Khimiya rastitel'nogo syr'ya, 2009, no. 3, pp. 109–115. (in Russ.).

Talanov A.A. Farmakognosticheskoye izucheniye golubiki bolotnoy (Vaccinium uliginosum L.): dis. … kand. farm. nauk. [Pharmacognostic study of Swamp blueberries (Vaccinium uliginosum L.): dis. ... cand. pharm. sciences]. Yaro-slavl, 2013, 174 p. (in Russ.).

Zalesova Ye.N., Petrovskaya O.V. Polnyy russkiy illyustrirovannyy slovar'-travnik i tsvetnik. [Full Russian illustrated dictionary-herbalist and flower garden]. St. Petersburg, 2015, p. 647. (in Russ.).

Vlasov B. Luchshiy travnik ot znakharya. Narodnyye retsepty zdorov'ya. [The best herbalist from the healer. Folk reci-pes for health.]. Moscow, 2010, p. 480. (in Russ.).

Osnovy kosmeticheskoy khimii. Funktsional'nyye ingrediyenty i biologicheski aktivnyye veshchestva [The basics of cos-metic chemistry. Functional ingredients and biologically active substances], ed. T.V. Puchkova. Moscow, 2017, vol. 2, 336 p. (in Russ.).

Gosudarstvennaya Farmakopeya RF. XIV izd. [State Pharmacopoeia of the Russian Federation XIV ed.]. Moscow, 2018, URL: http://femb.ru/femb/pharmacopea.php (in Russ.).

Kolesnov A.Yu. Biokhimicheskiye sistemy v otsenke kachestva produktov pitaniya (fermentativnyy analiz). [Biochemical systems in assessing the quality of food (enzymatic analysis)]. Moscow, 2000, 416 p. (in Russ.).

El'kaib Kh.M., Leont'yev V.N., Savvin P.V. Vestnik VGUIT, 2017, no. 1, pp. 271–275, DOI: 10.20914/2310-1202-2017-1-271-275. (in Russ.).

Shpigun L.K., Zamyatina N.N., Shushenachev YA.V., Kamilova P.M. Zhurnal analiticheskoy khimii, 2012, vol. 67, no. 10, pp. 893–901. (in Russ.).

Fernandez-Panchon M.S., Villano D., Troncoso A.M. Garcia-Parrilla M.C. Crit. Rev. Food. Sci. Nutr, 2008, vol. 48, pp. 649–671, DOI: 10.1080/10408390701761845.

Korul'kin D.Yu., Abilov Zh.A., Muzychkina R.A., Tostikov G.A. Prirodnyye flavonoidy. [Natural flavonoids.]. Novo-sibirsk, 2007, 232 p. (in Russ.).

Fedoseyeva L.M. Khimiya rastitel'nogo syr'ya, 2003, no. 1, pp. 73–77. (in Russ.).

Solovchenko A. Photoprotection in Plants. Optical Screening-based Mechanisms, Berlin–Heidelberg, 2010, 170 p.

Bancirova M. Chemistry Journal, 2015, vol. 1, no. 2, pp. 31–34.

Lobanova I.YU., Turetskova V.F. Khimiya rastitel'nogo syr'ya, 2011, no. 2, pp. 117–122. (in Russ.).

Solovchenko A.Ye., Merzlyak M.N. Fiziologiya rasteniy, 2008, no. 6, pp. 803–822. (in Russ.).

Pushkarova T.I., Zenkevich I.G. Vestnik Sankt-Peterburgskogo universiteta, 2017, no. 1, pp. 59–79, DOI: 10.21638/11701/spbu04.2017.107. (in Russ.).

Published
2019-12-27
How to Cite
1. Lazarev A. S., Klyauzova A. V., Ruchkina A. G., Kobrakov K. I., Shpigun L. K. COMPOSITION AND ANTIOXIDANT PROPERTIES OF EXTRACTS FROM SHEETS OF THE BLUEBERRY HIGH (VACCINIUM CORYMBOSUM L.) // chemistry of plant raw material, 2019. № 4. P. 223-232. URL: http://journal.asu.ru/cw/article/view/5498.
Section
Low-molecular weight compounds