CLOUDBERRIES: FEATURES OF BIOCHEMICAL COMPOSITION, ANTIOXIDANT PROPERTIES AND USE
Keywords:
cloudberry, biochemical composition, phenolic compounds, ellagitannin, lignin, antioxidant properties, antimicrobial characteristicsAbstract
The article analyzes the published scientific research of the composition of biologically active
agents (BAA) of cloudberries and the seeds, technologies of extraction of BAA and the use of
cloudberries in food industry. The prevalence of ellagitannin in phenolic compounds (80% and
more) is the feature of biochemical composition of cloudberries. Among them one can see trimeric
Lambertianin C, dimeric Sanguiin H-6 and its H-2 and H-10 isomers, monomeric Casuarictin/
potentillin. The presence of Sanguiin and Casuarictin/ potentillin in berries and leaves of cloudberries
suppresses development of S.aureus VTT E-70045, Candida albicans, pathogenic Grammnegative
bacteria of Escherichia coli VTT E-093121 and E.coli, VTT E-84219. The high number of
phenolic compounds causes antioxidant activity (AOA) of cloudberries and products of the processing.
AOA depends on the color of berries. In red cloudberries due to anthocyans (100,8
mg/100g) AOA is twice higher than in yellow cloudberries at the same content of vitamin C and less
content of ellagitannin. Antioxidant properties make it possible to use cloudberries extracts to prevent
oxidizing processes in perishable food for example in pork pies. At storage of powder from
cloudberries in various conditions AOA is practically not changed which is connected with gradual
hydrolysis of ellagitannin. To increase bioaccessibility of phenolic compounds the fermenting of
berries is used within 14 days. As a result the quantity of ellagitannin decreases by 11% with simultaneous
increase of flavonols by 1,5 times and ellagic acids by 4 times. The seeds of cloudberries
contain a lot of fat 9,1–12.4% with prevalence of linoleic, linolenic and oleic fatty acids as well as
lignan, they are in the lead among berries by their quantity and concede only to seeds of flax and
sesame. In ellagitannin of the seeds of cloudberries Sanguiin H-6 and H-2 prevail.
References
Häkkinen S., Heinonen M., Kärenlampi S., Mykkänen H., Ruuskanen J., Törrönen R. Screening of selected flavonoids and phenolic acids in 19 berries. Food Research International, 1999, no. 32, pp. 345–353. DOI: 10.1016/S0963-9969(99)00095-2
Kylli P. Berry phenolics: isolation, analysis, identification, and antioxidant properties: Academic Dissertation. University of Helsinki. Finland, 2011. 90 p.
Jakobek L., Šeruga M., Medvidović-Kosanović M., Novak I. Antioxidant Activity and Polyphenols of Aronia in Comparison to other Berry Species. Agriculturae Conspectus Scientifi cus., 2007, vol. 72, no. 4, pp. 301–306.
Aaby K., Wrolstad R.E., Ekeberg D., Skrede G. Polyphenol composition and antioxidant activity in strawberry purees; impact of achene level and storage. Journal of Agricultural and Food Chemistry, 2007, no. 55, pp. 5156–5166. DOI: 10.1021/jf070467u
Vulić J.J., Tumbas V.T., Savatović S.M., Đilas S.M., Ćetković G.S., Ĉanadanović-Brunet J.M. Polyphenolic content and antioxidant activity of the four berry fruits pomace extracts. Acta Periodica Technologica, 2011, no. 42, pp. 271–279. DOI: 10.2298/APT1142271V
Экспертиза свежих плодов и овощей. Качество и безопасность: учебно-справочное пособие / под ред. В.М. Позняковского. Новосибирск: Сибирское университетское изда-тельство. 2005. 312 c. [Pozniakowski V.M. (Ed.) [Ekspertiza svezhikh plodov i ovoshchey. Kachestvo i bezopasnost']. Expertise of fresh fruits and vegetables. Quality and safety. Novosi-birsk, Siberian University Publishing House, 2005. 312 p.]
Kahkonen M., Kylli P., Ollilainen V., Salminen J.-P., Heinonen M. Antioxidant activity of isolated ellagitannins from red raspberries and cloudberries. Journal of Agricultural and Food Chemistry, 2012, no. 60, pp. 1167–1174. DOI: 10.1021/jf203431g
Puupponen-Pimia R., Nohynek L., Juvonen R., Kosso T., Truchado P., Westerlund-Wikstrom B., Leppanen T., Moilanen E., Oksman-Caldentey K.-M. Fermentation and dry frac-tionation increase bioactivity of cloudberry (Rubus chamaemorus). Food Chemistry, 2016, no. 197, pp. 950–958. DOI: 10.1016/ j.foodchem.2015.11.061
Mylnikov S.V., Kokko H.I., Kärenlampi S.O., Oparina T.I., Davies H.V., Stewart D. Rubus fruit juices affect lipid peroxidation in a drosophila melanogaster model in vivo. Journal of Agricultural and Food Chemistry, 2005, vol. 53, no. 20, pp. 7728–7733. DOI: 10.1021/jf051303l
Дадали В.А., Тутельян В.А., Дадали Ю.В., Кравченко Л.В. Каротиноиды. Биодо-ступ-ность, биотрансформация, антиоксидантные свойства // Вопросы питания. 2010. Т. 79, № 2. C. 4–19. [Dadali V.A., Tutelian V.A., Dadali Yu.V., Kravchenko L.V. [Carotenoids. Bioavailability, biotransformation, antioxidant properties]. Voprosy pitaniya [Problems of Nu-trition], 2010, vol. 79, no. 2, pp. 4–19. (in Russ.)]
Johanson A.K., Kuusisto P.H., Laakasto P.H., Derome K.K., Sepponen P.J., Katajisto J.K., Kalio H.P. Geographical variation in seed oil from Rubus chamaemorus and Empetrum Nigrum. Phitochemistry, 1997, vol. 44, no. 8, pp. 1421–1427. DOI: /10.1016/S0031-9422(96)00762-5
Kähkönen M.P., Kylli P., Ollilainen V., Salminen J-P., Heinonen M. Antioxidant activi-ty of isolated ellagitannins from red raspberries and cloudberries. Journal of Agricultural and Food Chemistry, 2012, vol. 60(5), pp. 1167–1174. DOI: 10.1021/jf203431g
Hakkinen S. Flavonols and Phenolic Acids in Berries and Berry Products: Doctoral dis-sertation University of Kuopio Finland, 2000. 91 p.
Willfor S.M., Ahotupa M.O., Hemming J.E., Reunanen M.H.T., Eklund P.C., Sjoholm R.E. Antioxidant activity of knotwood extractives and phenolic compounds of selected tree species. Journal of Agricultural and Food Chemistry, 2003, no. 51, pp. 7600–7606. DOI: 10.1021/jf030445h
Rey A.I., Hopia A., Kivikari R., Kähkönen M. Use of natural food/plant extracts: Cloudberry (Rubus chamaemorus), beetroot (beta vulgaris “Vulgaris”) or willow herb (Epilobi-umangustifolium) to reduce lipid oxidation of cooked pork patties. LWT – Food Sci Technol, 2005, no. 38, pp. 363–370. DOI: 10.1016/j.lwt.2004.06.010
Bhagwat S., Haytowitz D.B., Holden J.M. USDA Database for the Flavonoid Content of Selected Foods. U.S. Department of Agriculture. September 2011. Available at: https://www.ars.usda.gov/ARSUserFiles/80400525/Data/Flav/Flav_R03.pdf
Hajazimi E., Landberg R., Zamaratskaia G. Simultaneous determination of flavonols and phenolic acids by HPLC-CoulArray in berries common in the Nordic diet. LWT – Food Sci-ence and Technology, 2016, vol. 74, pp. 128–134. DOI: 10.1016/j.lwt.2016.07.034
Smeds, A.I. Content, composition, and stereochemical characterisation of lignans in berries and seeds / A.I. Smeds, P.C. Eklund, S.M. Willfor // Food Chemistry. – 2012, no. 134, pp. 1991–1998. DOI: 10.1016/j.foodchem.2012.03.133
Kahkonen M.P., Hopia A.I., Vuorela H.J., Rauha J.-P., Pihlaja K., Kujala T.S., Hei-nonen M. Antioxidant Activity of Plant Extracts Containing Phenolic Compounds. Journal of Agricultural and Food Chemistry, 1999, no. 47, pp. 3954–3962. DOI: 10.1021/jf990146l
Laine P., Kylli P., Heinonen M., Jouppila K. Storage stability of microencapsulated cloudberry (Rubus chamaemorus) phenolics. Journal of Agricultural and Food Chemistry, 2008, no. 56, pp. 11251–11261. DOI: 10.1021/jf801868h
Bors W., Michel C. Chemistry of the antioxidant effect of polyphenols. Ann N Y Acad. Sci., 2002, no. 957, pp. 57–69. DOI: 10.1111/j.1749-6632.2002.tb02905.x
Thiem H.B., Goslin O. Antimicrobial activity of Rubus chamaemorus leaves. Fitotera-pia, 2004, no. 75, pp. 93–95. DOI: 10.1111/j.1749-6632.2002.tb02905.x
Martinussena I., Uleberga E., McDougallc G.J., Stewartc D., Junttila O. Development and quality of cloudberry (Rubus chamaemorus L.) as affected by female parent, male parent and temperature. Journal of Berry Research, 2010, no. 1, pp. 91–101.
Шароглазова Л.П., Величко Н.А. Разработка рецептуры безалкогольного напитка с использованием ягод морошки // Вестник Красноярского государственного аграрного университета. 2016. № 2 (113). С. 88–92. [Sharoglazova L.P., Velichko N.A. [The working out of soft drinks on the basis of cloudberries berries]. Vestnik Krasnoyarskogo gosudar-stvennogo agrarnogo universiteta [The Bulletin of KrasGAU], 2016, no. 2 (113), pp. 88–92. (in Russ.)]
Thiem B. Rubus chamaemorus L. – a boreal plant rich in biologically active metabo-lites: a review. Biol. Lett, 2003, vol. 40, no. 1, pp. 3–13.





