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    Academic Journal

    Contributors: The study was supported by a grant from the Russian Science Foundation № 24-26-00237, https://rscf.ru/project/24-26-00237/, Исследование выполнено за счет гранта Российского научного фонда № 24-26-00237, https://rscf.ru/project/24-26-00237/.

    Source: Food systems; Vol 7, No 4 (2024); 568-574 ; Пищевые системы; Vol 7, No 4 (2024); 568-574 ; 2618-7272 ; 2618-9771 ; 10.21323/2618-9771-2024-7-4

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    Relation: https://www.fsjour.com/jour/article/view/629/358; Koliaki, C., Liatis, S., Kokkinos, A. (2019). Obesity and cardiovascular disease: Revisiting an old relationship. Metabolism, 92, 98–107. https://doi.org/10.1016/j.metabol.2018.10.011; López-Sobaler, A. M., Aparicio, A., Aranceta-Bartrina, J., Gil, Á., González-Gross, M., Serra-Majem, L. et al. (2016). Overweight and general and abdominal obesity in a representative sample of Spanish adults: Findings from the ANIBES study. BioMed Research International, 2016, Article 8341487. https://doi.org/10.1155/2016/8341487; Zhong, P., Tan, S., Zhu, Z., Zhu, Z., Liang, Y., Huang, W. et al. (2023). Normalweight central obesity and risk of cardiovascular and microvascular events in adults with prediabetes or diabetes: Chinese and British cohorts. Diabetes/ Metabolism Research and Reviews, 39(8), Article e3707. https://doi.org/10.1002/dmrr.3707; Parnell, L. D., Noel, S. E., Bhupathiraju, S. N., Smith, C. E., Haslam, D. E., Zhang, Z. et al (2021). Metabolite patterns link diet, obesity, and type 2 diabetes in a Hispanic population. Metabolomics, 17(10), Article 88. https://doi.org/10.1007/s11306-021-01835-x; Singh, R., Devi, S., Gollen, R. (2015). Role of free radical in atherosclerosis, diabetes and dyslipidaemia: Larger-than-life. Diabetes/Metabolism Research and Reviews, 31(2), 113–126. https://doi.org/10.1002/dmrr.2558; Darenskaya, M. A., Kolesnikova, L. I., Kolesnikov, S. I. (2021). Oxidative Stress: Pathogenetic role in diabetes mellitus and its complications and therapeutic approaches to correction. Bulletin of Experimental Biology and Medicine, 171(2), 179–189. https://doi.org/10.1007/s10517-021-05191-7; Mladenovic-Djordjevic, A., Loncarevic-Vasiljkovic, N., Gonos, E. S. (2021). Dietary restriction and oxidative stress: Friends or enemies? Antioxidants and Redox Signaling, 34(5), 421–438. https://doi.org/10.1089/ars.2019.7959; Hübner, C., Haase, H. (2021). Interactions of zinc- and redox-signaling pathways. Redox Biology, 41, Article 101916. https://doi.org/10.1016/j.redox.2021.101916; Day, K. J., Adamski, M. M., Dordevic, A. L., Murgia, C. (2017). Genetic variations as modifying factors to dietary zinc requirements–a systematic review. Nutrients, 9(2), Article 148. https://doi.org/10.3390/nu9020148; Grzeszczak, K., Kwiatkowski, S., Kosik-Bogacka, D. (2020). The Role of Fe, Zn, and Cu in pregnancy. Biomolecules, 10(8), Article 1176. https://doi.org/10.3390/biom10081176; Pecora, F., Persico, F., Argentiero, A., Neglia, C., Esposito, S. (2020). The Role of micronutrients in support of the immune response against viral infections. Nutrients, 12(10), Article 3198. https://doi.org/10.3390/nu12103198; Grüngreiff, K., Gottstein, T., Reinhold, D. (2020). Zinc Deficiency — An independent risk factor in the pathogenesis of Haemorrhagic stroke? Nutrients, 12(11), Article 3548. https://doi.org/10.3390/nu12113548; Nasiadek, M., Stragierowicz, J., Klimczak, M., Kilanowicz, A. (2020). The role of Zinc in selected female reproductive system disorders. Nutrients, 12(8), Article 2464. https://doi.org/10.3390/nu12082464; Шейбак, В. М. (2015). Синтез и секреция инсулина: роль катионов цинка. Журнал Гродненского государственного медицинского университета, 1(49), 5–8.; Gibson, R. S. (2006). Zinc: The missing link in combating micronutrient malnutrition in developing countries. Proceedings of the Nutrition Society, 65(1), 51–60. https://doi.org/10.1079/PNS2005474; Sriram, K., Lonchyna, V. A. (2009). Micronutrient supplementation in adult nutrition therapy: Practical considerations. Journal of Parenteral and Enteral Nutrition, 33(5), 548–562. https://doi.org/10.1177/0148607108328470; Haase, H., Ellinger, S., Linseisen, J., Neuhäuser-Berthold, M., Richter, M. (2020). Revised D-A-CHreference values for the intake of zinc. Journal of Trace Elements in Medicine and Biology, 61, Article 126536. https://doi.org/10.1016/j.jtemb.2020.126536; Горбачев, В.В., Никитин, И.А., Велина, Д.А., Муталлибзода, Ш., Балашева, М.С. (2022). Оценка потребительских предпочтений Россиян: «ловушка среднего рациона». Известия высших учебных заведений. Пищевая технология, 6(390), 90–98.; Likuski, H. J., Forbes, R. M. (1964). Effect of phytic acid on the availability of zinc in amino acid and casein diets fed to chicks. The Journal of Nutrition, 84(2), 145–148. https://doi.org/10.1093/jn/84.2.145; Hall, A. G., King, J. C. (2022). Zinc fortification: Current trends and strategies. Nutrients, 14(19), Article 3895. https://doi.org/10.3390/nu14193895; Li, Y., Shi, P., Zheng, Y., Guo, M., Zhuang, Y., Huo, X. (2023). Millet bran protein hydrolysates derived peptides-zinc chelate: Structural characterization, security prediction in silico, zinc transport capacity and stability against different food processing conditions. Journal of Food Science, 88(1), 477–490. https://doi.org/10.1111/1750-3841.16384; Chheang, L., Khachornsakkul, K., Del-Rio-Ruiz, R., Zeng, W., Thongkon, N., Thanasupsin, S. P. et al. (2024). Simple distance-based thread analytical device integrated with ion imprinted polymer for Zn2+ quantification in human urine samples. The Analyst, 149(11), 3161–3168. https://doi.org/10.1039/D4AN00076E; Low, S. C., Azmi, N. A. B., Ong, C. S., Lim, J. K. (2022). Environmental monitoring of trace metal pollutants using cellulosic-paper incorporating color change of azo-chromophore. Environmental Science and Pollution Research, 29(47), 71614– 71631. https://doi.org/10.1007/s11356-022-20706-z; Iwantscheff, V. G. (1958). Das dithizon und seine anwendung in der mikro -und spurenanalyse. Verlag Chemie, Weinheiml/ Bergstr., 450.; Lu, J., Zhang, H., Cao, W., Jiang, S., Fang, H., Yu, D. et al. (2023). Study on the zinc nutritional status and risk factors of Chinese 6–18-year-old children. Nutrients, 15(7), Article 1685. https://doi.org/10.3390/nu15071685; Sui, L., Du, Q., Romer, A., Su, Q., Chabosseau, P. L., Xin, Y. et al. (2023). ZnT8 loss of function mutation increases resistance of human embryonic stem cellderived beta cells to apoptosis in low zinc condition. Cells, 12(6), Article 903. https://doi.org/10.3390/cells12060903; Uddin, M. N., Kaczmarczyk, A., Vincze, E. (2014). Effects of Zn fertilization on hordein transcripts at early developmental stage of barley grain and correlation with increased Zn concentration in the mature grain. PLoS ONE, 9(9), Article e108546. https://doi.org/10.1371/journal.pone.0108546; Dionisio, G., Uddin, M. N., Vincze, E. (2018). Enrichment and identification of the most abundant zinc binding proteins in developing barley grains by Zinc-IMAC capture and nano LC–MS/MS. Proteomes, 6(1), Article 3. https://doi.org/10.3390/proteomes6010003; Mou, L., Martini, P., Pupillo, G., Cieszykowska, I., Cutler, C. S., Mikołajczak, R. (2022). 67Cu production capabilities: A mini review. Molecules, 27(5), Ar ticle 1501. https://doi.org/10.3390/molecules27051501; Блинов, А.В., Серов, А.В., Кравцов, А.А., Казначеев, Я.В. (2018). Строение коллоидных частиц лизинаторибофлавината цинка. Современная наука и инновации, 1, 67–72.; Gorbachev, V., Nikitin, I., Velina, D., Klokonos, M., Mutallibzoda, S., Tefikova, S. et al. (2024). Rosebay willowherb (Chamerion angustifolium) in food products: Evaluation of the residual anti-radical activity of polyphenol compounds and Nacetylcystein. Current Nutrition and Food Science, 20(2), 220–226. https://doi.org/10.2174/1573401319666230330095521; Lindon, J. C. (2000). Encyclopedia of Spectroscopy and Spectrometry. Academic Press, 2000.; Miller, W. J. (1970). Zinc nutrition of cattle: A review. Journal of Dairy Science, 53(8), 1123–1135. https://doi.org/10.3168/jds.S0022-0302(70)86355-X; Saper, R. B., Rash, R. (2009). Zinc: An essential micronutrient. American Family Physician, 79(9), 768–772.; Tsang, B. L., Holsted, E., McDonald, C. M., Brown, K. H., Black, R., Mbuya, M. N. N. et al. (2021). Effects of foods fortified with Zinc, alone or cofortified with multiple micronutrients, on health and functional outcomes: A systematic review and meta-analysis. Advances in Nutrition, 12(5), 1821–1837. https://doi.org/10.1093/advances/nmab065; Udechukwu, M. C., Collins, S. A., Udenigwe, C. C. (2016). Prospects of enhancing dietary zinc bioavailability with food-derived zinc-chelating peptides. Food Function, 7(10), 4137–4144. https://doi.org/10.1039/c6fo00706f; Gandia, P., Bour, D., Maurette, J.-M., Donazzolo, Y., Duchène, P., Béjot, M. et al. (2007). A bioavailability study comparing two oral formulations containing zinc (Zn Bis-Glycinate vs. Zn Gluconate) after a single administration to twelve healthy female volunteers. International Journal for Vitamin and Nutrition Research, 77(4), 243–248. https://doi.org/10.1024/0300-9831.77.4.243; https://www.fsjour.com/jour/article/view/629

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    Academic Journal

    Source: Journal of Materials Research and Technology, Vol 24, Iss, Pp 2879-2890 (2023)
    Journal of materials research and technology. 2023. Vol. 24. P. 2879-2890

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    Academic Journal

    Contributors: The authors express their gratitude to the Chita branch of the Institute of Mining. N. A. Chinakala SB RAS for assistance in the separation of complex therapeutic analysis of clays., Авторы выражают благодарность Читинскому филиалу Института горного дела им. Н. А. Чинакала СО РАН за помощь в проведении комплексного термического анализа глин.

    Source: Drug development & registration; Том 13, № 1 (2024); 45-51 ; Разработка и регистрация лекарственных средств; Том 13, № 1 (2024); 45-51 ; 2658-5049 ; 2305-2066

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    Relation: https://www.pharmjournal.ru/jour/article/view/1721/1237; https://www.pharmjournal.ru/jour/article/downloadSuppFile/1721/2063; Бондарев А. В., Жилякова Е. Т., Демина Н. Б., Тимошенко Е. Ю. Перспективы использования медицинских глин. Разработка и регистрация лекарственных средств. 2019;8(4):27–31. DOI:10.33380/2305-2066-2019-8-4-27-31.; Везенцев А. И., Королькова С. В., Воловичева Н. А. Установление кинетических закономерностей сорбции ионов нативными и магний-замещенными формами монтмориллонитовых глин. Сорбционные и хроматографические процессы. 2010;10(1):115–120.; Сапронова Ж. А., Гомес М. Г, Свергузова С. В. Ультрафиолетовая активация природных глин Ангольских месторождений для повышения их сорбционной активности в процессах водоочистки. Белгород: Белгородский государственный технологический университет им. В. Г. Шухова; 2015. 159 с.; Чекмарев А. С., Скворцов А. В., Сулейманова А. З., Хацринов А. И., Байгузин Ф. А., Петухова Е. А. Ультразвуковая обработка глинистого сырья. Вестник Казанского технологического университета. 2010;8:277–283.; Хмелев В. Н., Сливин А. Н., Барсуков Р. В., Цыганок С. Н., Шалунов А. В. Применение ультразвука высокой интенсивности в промышленности. Бийск: Алтайский государственный технологический университет; 2010. 203 c.; Размахнин К. К., Хатькова Н. Н. Современные технологии переработки и модификации цеолитсодержащих пород Восточного Забайкалья. Чита: Забайкальский государственный университет; 2014. 309 с.; Jimenez de Haro M. C., Perez-Rodriguez J. L., Poyato J. Effect of ultrasound on preparation of porous materials from vermiculite. Applied Clay Science. 2005;30:11–20.; Дерябин М. С., Касьянов Д. А., Родченков В. И., Сергеев Д. А. Экспериментальное исследование акустических течений в сфокусированном ультразвуковом поле. Прикладная механика и техническая физика. 2010;51(5):52–58.; Жилякова Е. Т., Бондарев А. В. Обзор российских энтеросорбционных лекарственных средств. Ремедиум. 2014;10:40–47.; Родченков В. И., Сергеев Д. А. Исследование течений в жидкости, индуцированных сфокусированным ультразвуковым полем, и их применение для воздействия на рост монокристаллов. Прикладная механика и техническая физика. 2009;50(4):11–17.; Пятко Ю. Н., Ахметова Р. Т., Хацринов А. И., Фахрутдинова В. Х., Ахметова А. Ю., Губайдуллина А. М. Влияние ультразвуковой обработки на свойства трепела. Фундаментальные исследования. 2015;12(2):320–324.; Mache J. R., Signing P., Mbey J. A., Razafitianamaharavo A., Njopwouo D., Fagel N. Mineralogical and physico-chemical characteristics of Cameroonian smectitic clays after treatment with weakly sulfuric acid. Clay Minerals. 2015;50:649–661.; Önal G., Özer M., Arslan F. Sedimentation of Clay in Ultrasonic Medium. Minerals Engineering. 2003;16(2):129–134. DOI:10.1016/S0892-6875(02)00309-6.; Камлач П. В., Будник А. В., Бондарик В. М. Моделирование прохождения ультразвука через структуры с различной акустической добротностью. Доклады БГУИР. 2008;3(33):27–33.; Guo H., Jing X., Zhang L., Wang J. Preparation of inorganic-organic pillared montmorillonite using ultrasonic treatment. Journal of Materials Science. 2007;42:6951–6955. DOI:10.1007/S10853-006-1329-4.; Эпова Е. С., Еремин О. В., Русаль О. С., Филенко Р. А. Процессы активации сорбционных свойств цеолитовых пород Шивыртуйского месторождения (Восточное забайкалье). Минералогия техногинеза. 2015;16:148–154.; Размахнин К. К. Характеристика вещественного состава и технолого-минералогические характеристики цеолитсодержащих туфов Восточного Забайкалья. Горный информационно-аналитический бюллетень. 2007;12:315–328.; Абдикамалова А. Б., Хамраев С. С. Химико-минералогический анализ бентонитовых глин Крантауского месторождения и возможности повышения эффективности их применения как сырья для получения глинистых буровых растворов. Узбекский химический журнал. 2015;5:32–35.; Крупская В. В., Закусин С. В., Тюпина Е. А., Доржиева О. В., Чернов М. С., Бычкова Я. В. Преобразование структуры и адсорбционных свойств монтмориллонита при термохимическом воздействии. Геохимия. 2019;64(3):300–319. DOI:10.31857/S0016-7525643300-319.; Zakusin S. V., Krupskaya V. V., Dorzhieva O. V., Zhukhlistov A. P., Tyupina E. A. Modification of adsorption properties of montmorillonite by the thermochemical treatment. Sorption and chromatographic processes. 2015;16(6):281–289.; Ngouana B. F., Kalinichev A. G. Structural arrangements of isomorphic substitutions in smectites: Molecular simulation of the swelling properties, interlayer structure, and dynamics of hydrated cs-montmorillonite revisited with new clay models. The Journal of Physical Chemistry A. 2014;118:12758–12773.; Tyagi B., Chudasama С., Jasra R. Characterization of surface acidity of an acid montmorillonite activated with hydrothermal, ultrasonic and microwave techniques. Applied Clay Science. 2006;31:16–28.; Жилякова Е. Т., Новиков О. О., Бондарев А. В., Фролов Г. В. Определение технологических и адсорбционных показателей медицинских глин. Научные ведомости Белгородского государственного университета. 2013;18(161):229–234.; https://www.pharmjournal.ru/jour/article/view/1721

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    Academic Journal

    Contributors: this work was supported by the Belarusian Republican Foundation for Fundamental Research (project T21B-004)., работа выполнена при финансовой поддержке Белорусского республиканского фонда фундаментальных исследований (проект Т21В-004).

    Source: Proceedings of the National Academy of Sciences of Belarus. Physical-technical series; Том 69, № 2 (2024); 95-105 ; Известия Национальной академии наук Беларуси. Серия физико-технических наук; Том 69, № 2 (2024); 95-105 ; 2524-244X ; 1561-8358 ; 10.29235/1561-8358-2024-69-2

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    Relation: https://vestift.belnauka.by/jour/article/view/835/657; Kwok D. T. K., Schulz M., Hu T., Chu C., Chu P. K. Surface Treatments of Nearly Equiatomic NiTi Alloy (Nitinol) for Surgical Implants. Biomedical Engineering. Trends in Materials Science. InTech, 2011, ch. 12, pp. 269−282. https://doi.org/10.5772/13212; Bagrets D. A., Rubanik V. V., Rubanik V. V. Jr., Bobrov V. P. Microhardness of TiN-TiNi composite produced by ion-plasma deposition. Steel in Translation, 2014, vol. 44, no. 4, pp. 268−271. https://doi.org/10.3103/S0967091214040159; Malagin G. A. Plasticity and strength of micro- and nanocrystalline materials. Physics of the Solid State, 2007, vol. 49, pp. 1013–1033. https://doi.org/10.1134/S1063783407060017; Artemiev V. V., Klubovich V. V., Rubanik V. V. Ultrasound and Material Processing. Minsk, Ekoperspektiva Publ., 2003. 334 p. (in Russian).; Karatas C., Yilbas B. S., Aleem A., Ahsan M. Laser treatment of cemented carbide cutting tool. Journal of Materials Processing Technology, 2007, vol. 183, pp. 234−240. https://doi.org/10.1016/j.jmatprotec.2006.10.012; Uglov V. V., Cherenda N. N., Anishchik V. M., Stalmashonak A. K., Astashinski V. M., Mishchuk A. A. Formation of alloying layers in a carbon steel by compression plasma flows. Vacuum, 2007, vol. 81, pp. 1341−1344. https://doi.org/10.1016/j.vacuum.2007.01.041; Auchinnikau E., Chekan N., Akula I., Eisymont E. Hybride method for hardening of super hard vacuum coatings. Proceeding of the 5th International Conference on Material Science. Varna, 2019, pp. 60−62.; Bagrets D. A., Klubovich V. V., Rubanik V. V. The effect of annealing conditions on the adhesive properties of TiN coatings. Journal of Friction and Wear, 2012, vol. 33, pp. 371−373. https://doi.org/10.3103/S1068366612050066; Bahrets D. A., Rubanik V. V., Savitsky V. O., Urban V. I. Structural and performance characteristics of titanium nitride coatings for medical use after annealing in air. Bulletin of Vitebsk State Technological University, 2018, no. 2 (35), pp. 37−44 (in Russian). https://doi.org/10.24411/2079-7958-2018-13504; Klimenov V. A., Kovalevskaya Zh. G., Agafonova N. S., Tolmachev A. I., Zaitsev K. V., Ivanov Yu. F. Ultrasonic modification – a method of surface preparation before thermal spraying. Tekhnologii remonta, vosstanovleniya i uprochneniya detalei mashin, mekhanizmov, oborudovaniya, instrumenta i tekhnologicheskoi osnastki: Materialy 8-i mezhdunarodnoi prakticheskoi konferentsii-vystavki [Technology of repair, restoration and hardening of machine parts, mechanisms, equipment, tools and technological equipment: Processing of the 8th Internatiоnal Practical Conferences-Exhibitions]. St. Petersburg, 2006, pp. 150−158 (in Russian).; Sbitnev A. G. Improving the Wear Resistance of Parts Made of Titanium Alloys Based on the Combined Use of Polyion Implantation and Ultrasonic treatment [dissertation]. Moscow, 2020. 167 p. (in Russian).; Kovalevskaya Zh. G. Structure and Properties of Surface Layers and Coatings During Modifying Ultrasonic Treatment [dissertation]. Tomsk, 2018. 334 p. (in Russian); Rubanik V. V., Bahrets D. A., Rubanik V. V. jr., Urban V. I., Uzhekina A. N., Dorodeiko V. G. Setting the functional properties of TiNi alloys during ion-plasma coating deposition process. Doklady Natsional’noi akademii nauk Belarusi = Doklady of the National Academy of Sciences of Belarus, 2021, vol. 65, no. 1, pp. 119–128 (in Russian). https://doi.org/10.29235/1561-8323-2021-65-1-119-128; Rubanik V. V., Lutsko V. F., Bahrets D. A., Labetsky V. S., Krugleshov A. A., Shakurov I. A. Equipment for ultrasonic surface treatment of titanium alloys. Aktual’nye problemy prochnosti: materialy mezhdunarodnoi nauchnoi konferentsii [Actual Problems of Strength: Materials of the International Scientific Conference]. Minsk, 2022, pp. 394−395 (in Russian).; Karpov D. A. Cathodic arc sources and macroparticle filtering. Surface and Coatings Technology, 1997, vol. 96, iss. 1, pp. 22−33. https://doi.org/10.1016/S0257-8972(98)80008-X; Kasprzak K. S., Bialkowski K. Inhibition of antimutagenic enzymes, 8-oxo-dGTpases, by carcinogenic metals. Journal of Inorganic Biochemistry, 2000, vol. 79, pp. 231–236. https://doi.org/10.1016/s0162-0134(99)00240-8; Al-Waheidi E. M. Allergic Reaction to Nickel Orthodontic Wire: a Case Report. Quintessence Int., 1995, vol. 26, pp. 385−387.; Bass J. K., Fine H., Cisneros G. J. Nickel hypersensitivity in the orthodontic patent. American Journal of Orthodontics and Dentofacial Orthopedics, 1993, vol. 103, iss. 3, pp. 280−285. https://doi.org/10.1016/0889-5406(93)70009-D; Takamura K., Hayashi K., Ishinishi N., Yamada T., Sugioka Y. Evaluation of carcinogenecity and chronic toxicity associated with orthopedic implants in mice. Journal of Biomedical Materials Research, 1994, vol. 28, pp. 583−589. https://doi.org/10.1002/jbm.820280508; Andreev A. A., Sablev L. P., Grigoriev S. N. Vacuum Arc Coatings. Kharkov, 2010. 318 p. (in Russian).; Kharitonov L. G. Determination of Microhardness. Moscow, Metallurgiya Publ., 1967. 47 p. (in Russian).; Bastos A. Application of SVET/SIET Techniques to Study Healing Processes in Coated Metal Substrates. Springer International Publishing AG, 2017. 57 p. https://doi.org/10.1007/978-3-319-19454-7_138-2; https://vestift.belnauka.by/jour/article/view/835

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    Academic Journal

    Source: Journal of Materials Research and Technology, Vol 12, Iss, Pp 1582-1596 (2021)
    Journal of materials research and technology. 2021. Vol. 12. P. 1582-1596

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