Graphical Abstract

Relevance of application of irradiated starter cultures to production of fermented milk products

D. A. Zhuravleva, A. V. Kazakov, I. S. Selezneva, A. A. Baranova

Abstract


Nowadays yogurt, fermented milk products, enriched with biologically active substances, acquire increasingly important significance in people's diets. The traditional method for producing fermented milk products and yogurt is to ferment the milk using starter cultures. The purpose of this research was to figure out if it is possible to use suspensions of probiotic microbial cultures irradiated with ionizing radiation to produce yoghurt products. Liquid live suspensions of bifidobacteria and lactobacilli, as well as a mixture of bifidobacteria, lactobacilli, propionibacteria and lactic acid streptococci were taken as a research model. The goal was achieved by receiving the yoghurt products enriched with active secondary metabolites due to using the suspensions of lysed cells of different microorganisms. We studied physico-chemical and organoleptic properties of the received products after 1, 7 and 14 days of storage.

Keywords


fermented milk products; probiotic microorganisms; secondary metabolites; ionizing radiation

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References


Shchekina MI. [Healthy food as a way of life. Role and place of probiotic products. Gastroenterology]. Consilium Medicum. 2011;2:61–4. Russian.

Bel’mer SV. Kislomolochnye produkty: ot istorii k sovremennosti [Fermented milk products: from history to the present]. Russian Bulletin of Perinatology and Pediatrics. 2019;6(64):119–25. Russian. doi:10.21508/1027-4065-2019-64-6-119-125

Ardatskaya MD. Metabiotiki kak estestvennoe razvitie probioticheskoy kontseptsii [Metabiotics as a natural development of the probiotic concept]. Trudnyy patsient [Difficult patient]. 2017;6–7(15):35–9. Russian.

Kazakov AV. Velikoe v malom [The Great in the Small]. Yekaterinburg: AMB publishing House; 2010. 150 p. Russian.

Kazakov AV. Sravnenie antimikrobnoy aktivnosti zhidkikh form probioticheskogo i postbioticheskogo produktov [Comparison of antimicrobial activity of liquid forms of probiotic and postbiotic products]. Molochnaya promyshlennost’ [Dairy industry]. 2016;9:56-8. Russian.

Kazakov AV. [Modern liquid starter culture materials based on probiotic bacteria and principles of their production organization]. Yekaterinburg: Ural state economy university publishing house; 2019. 52 p. Russian.

GOST 31450-2013 Moloko pit’evoe. Tekhnicheskie usloviya [Drinking milk. Specifications]. International standard. Moscow: Standartinform; 2019. 10 p. Russian.

GOST 33776-2016 Metody ispytaniy khimicheskoy produktsii, predstavlyayushchey opasnost’ dlya okruzhayushchey sredy [Methods of test for of chemicals of environmental hazard. Determination of pH, acidity and alkalinity]. International standard. Moscow: Standartinform; 2019: 11 p. Russian.

GOST 10444.15-94 Produkty pishchevye. Metody opredeleniya kolichestva mezofil’nykh aerobnykh i fakul’tativno-aerobnykh mikroorganizmov [Food products. Methods for determination of quantity of mesophilic aerobes and facultative anaerobes]. International standard. Moscow: Standartinform; 2010. 7 p. Russian.

GOST 31981-2013 Yogurty. Obshchie tekhnicheskie usloviya [Yogurts. General specifications]. International standard. Moscow: Standartinform; 2014. 18 p. Russian.

Tablitsa perevoda pH i Ternera [pH and Turner translation table] [Internet]. Moscow: Apkimpulse [cited 2020]. Russian. Available from: http://ekomilk.ru/laborotornoe-oborudovanie-news/113

Abbasi H, Mousavi ME, Ehsani MR, Jomea ZE, Vaziri M, Rahimi J, Aziznia S. Influence of starter culture type and incubation temperature on rheology and microstructure of low-fat set yoghurt. International Journal of Dairy Technology. 2009;62(4):549–55.

Cartasev A, Rudic V. The effect of starter culture producing exopolysaccharide on physicochemical properties of yoghurt. Chemistry Journal of Moldova. 2017;12(2):7–12.




DOI: https://doi.org/10.15826/chimtech.2020.7.4.19

Copyright (c) 2020 D. A. Zhuravleva, A. V. Kazakov, I. S. Selezneva, A. A. Baranova

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