IMPROVING THE EFFICIENCY OF BETULIN-CONTAINING FOOD INGREDIENTS FROM SILVER BIRCH (BETULA PENDULA ROTH.) IN FOOD SYSTEMS

UDC 664:577.115.3

  • Elena Vital'yevna Averyanova Biysk Technological Institute – branch of Altai State Technical University Email: averianova.ev@bti.secna.ru
  • Marina Nikolaevna Shkolnikova Biysk Technological Institute – branch of Altai State Technical University; Ural State University of Economics https://orcid.org/0000-0002-9146-6951 Email: shkolnikova.m.n@mail.ru
Keywords: birch bark, betulin, micronization, ultrasonic exposure, food ingredient

Abstract

The demand for food micro-ingredients in modern technologies is quite high, however, the production of preservatives, antioxidants and other food additives in the Russian Federation is extremely limited, which has created a high import dependence unacceptable in modern conditions. Raw sources of preservatives include birch bark containing 10–40% betulin – a triterpenoid with high biological activity and preservative / antioxidant properties. However, the weak solubility of betulin in an aqueous medium hinders its use in food products. In this work, a study was carried out to develop a method for obtaining a micronized form of betulin for use as a food ingredient in food products of various compositions. The following values of parameters and modes of ultrasonic micronization of water suspensions of betulin were established: frequency – 50±5 kHz, acoustic power – 50 W, temperature, about 50 °С, duration 60 min. It is shown that the micronization of betulin under ultrasonic exposure indicates an increase in the uniformity of its aqueous suspension of betulin, the alignment of the size and shape of particles, which minimizes the influence of barrier factors during the assimilation of a food additive and determines its effectiveness and bioavailability in the composition of both water-based and fat-based foods.

Downloads

Download data is not yet available.

Metrics

Metrics Loading ...

Author Biographies

Elena Vital'yevna Averyanova, Biysk Technological Institute – branch of Altai State Technical University

кандидат химических наук, доцент, доцент кафедры биотехнологии

Marina Nikolaevna Shkolnikova, Biysk Technological Institute – branch of Altai State Technical University; Ural State University of Economics

доктор технических наук, доцент, профессор кафедры биотехнологии, профессор кафедры технологии питания

References

Burdun N.I. Pishchevaya promyshlennost', 2016, no. 6, pp. 80–81. (in Russ.).

Ofitsial'nyy sayt Ministerstva sel'skogo khozyaystva Doklad o khode i rezul'tatakh realizatsii v 2019 godu gosudarstvennykh programm v sfere razvitiya sel'skogo khozyaystva i sel'skikh territoriy Altayskogo kraya. [Official website of the Ministry of Agriculture Report on the progress and results of the implementation in 2019 of state pro-grams in the field of development of agriculture and rural areas of the Altai Territory]. URL: https://www.altagro22.ru/activity/reporting/reporting-program/.(in Russ.).

Ofitsial'nyy sayt organov vlasti Altayskogo kraya: Postanovleniye «Ob utverzhdenii strategii razvitiya pi-shchevoy i pererabatyvayushchey promyshlennosti altayskogo kraya na period do 2025 goda» № 330 ot 25.06.2012 g. [Official website of the authorities of the Altai Territory: Decree "On approval of the strategy for the development of the food and processing industry of the Altai Territory for the period up to 2025" No. 330 of 06/25/2012]. URL: https://www.altairegion22.ru/official_docs/e207729.html?sphrase_id=1048276. (in Russ.).

Kornen N.N., Pershakova T.V., Shakhray T.A. Politematicheskiy setevoy elektronnyy nauchnyy zhurnal Kubanskogo gosudarstvennogo agrarnogo universiteta, 2016, no. 121(07), pp. 1–17. (in Russ.).

Ukaz Gubernatora Altayskogo kraya № 33 ot 26 fevralya 2019 goda «Ob utverzhdenii lesnogo plana Altayskogo kraya (2019-2028 gg.)». [Decree of the Governor of the Altai Territory No. 33 dated February 26, 2019 “On Approval of the Forest Plan of the Altai Territory (2019-2028)”]. URL: https://docs.cntd.ru/document/553109198. (in Russ.).

Veprikova Ye.V., Tereshchenko Ye.A., Chesnokov N.V., Kuznetsov B.N. Zhurnal Sibirskogo federal'nogo universi-teta. Khimiya, 2012, vol. 5, no. 2, pp. 178–188. (in Russ.).

Safina A.V., Abdullina D.R., Safin R.G., Arslanova G.R., Valeev K.V. Lesnoy vestnik, 2021, vol. 25, no. 4, pp. 99–106. DOI: 10.18698/2542-1468-2021-4-99-106. (in Russ.).

Zhang W., Jiang H., Yang J., Jin M., Du Y., Sun Q., Xu H. Analytical Biochemistry, 2019, vol. 587, article 113460. DOI: 10.1016/j.ab.2019.113460.

Chen H., Xiao H., Pang J. Plants, 2020, vol. 9(3), p. 392. DOI: 10.3390/plants9030392.

Niewolik D., Niewolik D., Bednarczyk-Cwynar B., Ruszkowski P., Sosnowski T. R., Jaszcz K. International Journal of Molecular Sciences, 2021, vol. 22, no. 3, article 1090. DOI: 10.3390/ijms22031090.

Kuznetsova S.A., Skvortsova G.P., Malyar Yu.N., Skurydina Ye.S., Veselova O.F. Khimiya Rastitel'nogo Syr'ya, 2013, no. 2, pp. 93–100. DOI:10.14258/jcprm.201302093. (in Russ.).

Payamnoor V., Nazari J., Hajati R.J. Iranian Journal of Medicinal and Aromatic Plants, 2019, vol.35, no. 4, pp. 577–587. DOI: 10.22092/ijmapr.2019.124949.2478.

Kumar D., Kashyap D.K. New and Future Developments in Microbial Biotechnology and Bioengineering. Elsevier, 2019, pp. 193–203. DOI: 10.1016/B978-0-444-63504-4.00015-3.

Zavorokhina N.V., Pankrat'yeva N.A., Byuler A.V. Sovremennaya nauka i innovatsii, 2019, no. 4, pp. 137–144. (in Russ.).

Maksimyuk V.A., Reshetnik Ye.I. Pishchevyye innovatsii i biotekhnologii, 2017, pp. 526–527. (in Russ.).

Selyanina L.I. Izvestiya vysshikh uchebnykh zavedeniy. Lesnoy zhurnal, 2004, no. 4, pp. 92–96. (in Russ.).

Patent 2640587 (RU). 2018. (in Russ.).

Aver'yanova Ye.V., Khmelev V.N., Tsyganok S.N., Shakura V.A. 18 Mezhdunarodnaya konferentsiya – seminar molodykh spetsialistov po mikro- i nanotekhnologiyam i elektronnym ustroystvam EDM. [18th International Conference - Seminar for Young Specialists on Micro- and Nanotechnologies and Electronic Devices EDM]. Novosibirsk, 2017, pp. 416–421. (in Russ.).

Ligostayeva Yu.V., Khanina M.A., Rodin A.P., Larionova I.S. Vestnik Moskovskogo gosudarstvennogo oblastnogo gumanitarnogo instituta. Seriya: mediko-biologicheskiye nauki. Spetsvypusk farmakognoziya, 2014, no. 1, pp. 41–46. (in Russ.).

Vorob'yeva O.A., Mel'nikova N.B. Mezhdunarodnyy zhurnal prikladnykh i fundamental'nykh issledovani, 2015, no. 10–2, pp. 295–303. (in Russ.).

Kalinina I.V., Potoroko I.Yu., Fatkullin R.I., Ivanova D., Kaneva-Kiselova Y., Sonaveyn Sh. Tekhnologiya i tova-rovedeniye innovatsionnykh pishchevykh produktov, 2019, no. 1, pp. 27–33. (in Russ.).

Kuznetsov B.N., Levdanskiy V.A., Kuznetsova S.A. Khimicheskiye produkty iz drevesnoy kory. [Chemical products from tree bark]. Krasnoyarsk, 2012, 260 p. (in Russ.).

Voronkov A.V., Gamzeleva O.Yu. Ambulatornaya khirurgiya, 2019, no. 1–2, pp. 27–33. DOI: 10.21518/1995-1477-2019-1-2-27-33. (in Russ.).

Telange D.R., Patil A.T., Pethe A.M., Fegade H., Anand S., Dave V.S. European Journal of Pharmaceutical Sciences, 2017, vol. 108, pp. 36–49. DOI: 10.1016/j.ejps.2016.12.009.

Published
2022-12-15
How to Cite
1. Averyanova E. V., Shkolnikova M. N. IMPROVING THE EFFICIENCY OF BETULIN-CONTAINING FOOD INGREDIENTS FROM SILVER BIRCH (BETULA PENDULA ROTH.) IN FOOD SYSTEMS // chemistry of plant raw material, 2022. № 4. P. 333-341. URL: http://journal.asu.ru/cw/article/view/11171.
Section
Technology