Вестник МГТУ, 2026, Т. 29, № 3.
Zhu Z., Gao S., Chen C., Wei X. [et al.]. The natural product salicin alleviates osteoarthritis progression by binding to IRE1a and inhibiting endoplasmic reticulum stress through the IRE1a-IKBa-p65 signaling pathway // Experimental & Molecular Medicine. 2022. Vol. 54. P. 1927-1939. DOI: https://doi.org/10.1038/ s12276-022-00879-w. References Vereshchagin, E. I. 2017. Biologically active food additive with antiparasitic activity, Russian Federation, Pat. 2621256. (In Russ.) Bozorova, B. Sh., Zuparova, S. Sh. 2022. Analysis and methodology o f the dormant period in plants. Academic Research in Educational Sciences, 1, pp. 1019-1027. DOI: https://doi.org/10.24412/2181-1385-2022-1- 1019-1027. (In Russ.) Vardanyan, L. R., Arutyunyan, S. A., Torosyan, G. O. 2025. Study of the antioxidant activity o f plant materials as a natural stabilizer o f food products. Food Processing: Techniques and Technology, 55(3), pp. 485-495. DOI: https://doi.org/10.21603/2074-9414-2025-3-2586. EDN: LRQUNI. (In Russ.) Konyukhova, O. M., Bakhtin, M. A., Kanarsky, A. V. 2016. Biological resources of salicin in willow (Salicaceae). Herald o f Technological University, 19(16), pp. 130-132. EDN: WMUHTJ. (In Russ.) Korchin, V. I., Korchina, T. Ya., Nekhorosheva, A. V., Leonov, V. V. et al. 2019. Aspen leaves as a promising source of nutrient elements. Modern Problems o f Science and Education, 2, pp. 98. DOI: https://doi.org/ 10.17513/spno.28608. EDN: ZEQZXF. (In Russ.) Krylova, S. G., Zueva, E. P., Razina, T. G., Amosova, E. N. et al. 2000. The effect o f dry aspen bark extract on the secretory function of the stomach. Experimental and Clinical Pharmacology, 63(5), pp. 31-33. EDN: KBTRFR. (In Russ.) Mashkovsky, M. D. 2012. Medicines. Moscow. (In Russ.) Mikhailova, E. A., Ogurtsov, E. A. 2022. The use of aspen bark extracts (Populus tremula L.) as a promising agent for the complex therapy and prevention of a number o f nosologies. Meta-analysis o f modern scientific literature data. Modern Medicine: New Approaches and Current Research, 9-10, pp. 23-34. DOI: https://doi.org/10.32743/25419854.2022.9-10.59.346242. EDN: XHIHGC. (In Russ.) Polivanova, O. B., Cherednichenko, M. Yu. 2023. Regulation and metabolic engineering o f the central phenylpropanoid metabolic pathway in response to stress factors in plants. Problems o f Biological, Medical and Pharmaceutical Chemistry, 26(5), pp. 3-9. DOI: https://doi.org/10.29296/25877313-2023-05-01. EDN: LKLGTE. (In Russ.) Zaitseva, E. N., Kurkin, V. A., Munina, I. I., Kurkina, A. V. et al. Federal State Budgetary Educational Institution of Higher Education "Samara State Medical University". 2025. Use o f salicin having neurotropic activity, Russian Federation, Pat. 2832938. EDN: CQLDRA. (In Russ.) Soboleva, S. V., Voronin, V. M., Esyakova, O. A. 2020. The content o f biologically active substances in water- ethanol extracts from aspen bark and a study of their growth-regulating activity. Chemistry o f Plant Raw Material, 1, pp. 373-380. DOI: https://doi.org/10.14258/jcprm.2020014442. EDN: KWTFRT. (In Russ.) Soboleva, S. V., Chentsova, L. I. 2010. A study of the seasonal dynamics o f the accumulation o f extractive substances from poplar bark and the obtaining o f extracts based on them. Bulletin o fKSA U, 5(44), pp. 154-158. EDN: MSNPKB. (In Russ.) Burkova, V. N., Boev, S. G., Mozzhelina, T. K., Chekrygin, V. N. LLC "Biolit". 2001. Method of obtaining a remedy with antihistoric effect, Russian Federation, Pat. 2162701. EDN: DGYVKP. (In Russ.) Nekhorosheva, A. V., Nekhoroshev, S. V., Botirov, E. H., Nekhorosheva, D. S. et al. Budgetary Institution o f Higher Education of the Khanty-Mansiysk Autonomous Okrug - Yugra Khanty-Mansiysk State Medical Academy (KHMGMA). 2017. Method o f producing tea from aspen leaves, Russian Federation, Pat. 2679191. (In Russ.) Chauhan, R., Azmi, W., Bansal, S., Goel, G. 2021. Multivariate analysis o f adaptive response to ferulic acid and p-coumaric acid after physiological stresses in Cronobacter sakazakii. Journal o f Applied Microbiology, 131(6), pp. 3069-3080. DOI: https://doi.org/10.1111/jam.15164. E sp^ J., Selma, M., Tomas-Barberan, F. 2016. Interactions o f gut microbiota with dietary polyphenols and consequences to human health. Current Opinion in Clinical Nutrition &Metabolic Care, 19(6), pp. 471-476. DOI: https://doi.org/10.1097/MTO.0000000000000314. Guangping, Z., Junxia, Z., Ling, Y., Guangda, X. 2022. Preventive effect o f salicin ether against type-2 diabetes mellitus through targeting PPARy-regulated gene expression. Acta Biochimica Polonica, 69(3), pp. 619-623. DOI: https://doi.org/10.18388/abp.2020_5983. Guerra-Valle, M., Orellana-Palma, P., Petzold, G. 2022. Plant-based polyphenols: Anti-helicobacter pylori effect and improvement o f gut microbiota. Antioxidants, 11(1). Article number: 109. DOI: https://doi.org/10.3390/ antiox11010109.
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