Reshta S.P., Pylypenko L.M., Danylova O.I. (2021). [Fiziologichnhysiological aspects of food quality assessment. Study guide], edited by L.M. Pylypenko. Cherson. OLDI-PLYUS. (in Ukrainian).
Özdemir, S., Baltaci, F. (2025). Comparative determination of factors affecting attitude level towards healthy nutrition. Scientific reports, 15(1), 5026. https://doi.org/10.1038/s41598-024-80128-4
Pylypenko, L., Verkhivker, Y., Myroshnichenko, O., Kilimenchuk О. (2023). Current issues of food safety and quality: status and prospects of determination. Food Science and Technology, 16(4). 85–94.
Burkovska, A., Popova, O., Mykhalchuk, I. (2021). Ensuring food security in the context of the sustainable development of agriculture. Management Theory and Studies for Rural Business and Infrastructure Development, 43(3), 352–361. https://doi.org/10.15544/mts.2021.30
Berhilevych, O., Pylypenko, L., Kasianchuk, V., Ilyeva, A., Shubin, Р. (2019). Using the PCR method to identify foodborne pathogens and determine their prevalence in Ukrainian food products of animal and plant origin. Food science and technology. 13(4), 76–86. https://doi.org/10.15673/fst.v13i4.1562
Pylypenko, L.M., Pylypenko, I.V. (2014) Biological methods in assessing the safety of plant food products and ingredients. Odessa: Izdvo “Optimum”. (in Russian)
Rondinella, D., Raoul, P. C., Valeriani, E., Venturini, I., Cintoni, M., Severino, A., Galli, F. S., Mora, V., Mele, M. C., Cammarota, G., Gasbarrini, A., Rinninella, E., Ianiro, G. (2025). The detrimental impact of ultra-processed foods on the human gut microbiome and gut barrier. Nutrients, 17(5), 859. https://doi.org/10.3390/nu17050859
Li, Y., Zhang, X., Wang, Y., Liu, J. (2024). Impacts of food additives on gut microbiota and host health. Food Research International, 180, 112068. https://doi.org/10.1016/j.foodres.2024.112068
Wang, H., Li, M., Zhang, Q. (2023). The key to intestinal health: A review and perspective on food additives. Frontiers in Nutrition, 10, 1420358. https://doi.org/10.3389/fnut.2023.1420358
Dos Reis Buzzo Zermiani, A. P., de Paula Soares, A.L.P.P., da Silva Guedes de Moura, B. L., Miguel, E. R. A., Lopes, L. D. G., de Carvalho Scharf Santana, N., da Silva Santos, T., Demarchi, I. G., Teixeira, J. J. (2021). Evidence of Lactobacillus reuteri to reduce colic in breastfed babies: Systematic review and meta-analysis. Complementary therapies in medicine, 63, 102781. https://doi.org/10.1016/j.ctim.2021.102781
Patro-Gołąb, B., Szajewska, H. (2019). Systematic Review with Meta-Analysis: Lactobacillus reuteri DSM 17938 for Treating Acute Gastroenteritis in Children. An Update. Nutrients, 11(11), 2762. https://doi.org/10.3390/nu11112762
Kim, J., Lee, S. (2024). Advancing gut microbiome research: The shift from metagenomics to multi-omics approaches. Journal of Microbiology and Biotechnology, 34(2), 12001. https://doi.org/10.4014/jmb.2412.12001
Schnadower, D., Tarr, P. I., Casper, T. C., Gorelick, M. H., Dean, J. M., O'Connell, K. J., Mahajan, P., Levine, A. C., Bhatt, S. R., Roskind, C. G., Powell, E. C., Rogers, A. J., Vance, C., Sapien, R. E., Olsen, C. S., Metheney, M., Dickey, V. P., Hall-Moore, C., Freedman, S. B. (2018). Lactobacillus rhamnosus GG versus Placebo for Acute Gastroenteritis in Children. The New England journal of medicine, 379(21), 2002–2014. https://doi.org/10.1056/NEJMoa1802598
Saviano, A., Brigida, M., Migneco, A., Gunawardena, G., Zanza, C., Candelli, M., Franceschi, F., Ojetti, V. (2021). Lactobacillus Reuteri DSM 17938 (Limosilactobacillus reuteri) in Diarrhea and Constipation: Two Sides of the Same Coin. Medicina (Kaunas, Lithuania), 57(7), 643. https://doi.org/10.3390/medicina57070643
Arbildo-Vega, H. I., Panda, S., Bal, A., Mohanty, R., Rendón-Alvarado, A., Das, A. C., Cruzado-Oliva, F. H., Infantes-Ruíz, E. D., Manfredi, B., Vásquez-Rodrigo, H., Mortellaro, C., Giacomello, M. S., Parrini, M., Greco Lucchina, A., Del Fabbro, M. (2021). Clinical effectiveness of Lactobacillus reuteri in the treatment of peri-implant diseases: a systematic review and meta-analysis. Journal of biological regulators and homeostatic agents, 35(2 Suppl. 1), 79–88. https://doi.org/10.23812/21-2supp1-7
Oudat, Q., Okour, A. (2025). The Role of Probiotics in Modulating Gut Microbiota and Metabolic Health for Weight Management: A Mini Review. Acta Microbiologica Hellenica, 70(1), 5. https://doi.org/10.3390/amh70010005
Naureen, Z., Medori, M. C., Dhuli, K., Donato, K., Connelly, S. T., Bellinato, F., Gisondi, P., Bertelli, M. (2022). Polyphenols and Lactobacillus reuteri in oral health. Journal of preventive medicine and hygiene, 63(2 Suppl 3), E246–E254. https://doi.org/10.15167/2421-4248/jpmh2022.63.2S3.2767
Zhou, K., Xie, J., Su, Y., Fang, J. (2024). Lactobacillus reuteri for chronic periodontitis: focus on underlying mechanisms and future perspectives. Biotechnology & genetic engineering reviews, 40(1), 381–408. https://doi.org/10.1080/02648725.2023.2183617
Chandrasekaran, P., Weiskirchen, S., Weiskirchen, R. (2024). Effects of Probiotics on Gut Microbiota: An Overview. International journal of molecular sciences, 25(11), 6022. https://doi.org/10.3390/ijms25116022
Bruhn, A. M., Suedbeck, J., Eusner, L. (2024). Probiotic Supplements and Oral Health. Dimensions of Dental Hygiene. https://dimensionsofdentalhygiene.com/article/probiotic-supplements-and-oral-health
Mirzanajafi-Zanjani, M., Yousefi, M., Ehsani, A. (2019). Challenges and approaches for production of a healthy and functional mayonnaise sauce. Food science & nutrition, 7(8), 2471–2484. https://doi.org/10.1002/fsn3.1132
Yazdanfar, N., Manafi, L., Ebrahiminejad, B., Mazaheri, Y., Sadighara, P., Basaran, B., Mohamadi, S. (2023). Evaluation of Sodium Benzoate and Potassium Sorbate Preservative Concentrations in Different Sauce Samples in Urmia, Iran. Journal of food protection, 86(8), 100118. https://doi.org/10.1016/j.jfp.2023.100118
Agro-Market™. «Yaki sousy` mozhna dovgo zberigaty`?» https://agro-market.net/ua/news/retseptyi/kakie_sousy_mozhno_dolgo_khranit/?srsltid=AfmBOopPmtSabYfp1EKz_fMJjuEkLfOC_BzXmNlIEfVLhmy620nSDvql
Aristola «Sousy. Vlasne vyrobnycztvo» https://aristola.com.ua/ketchup/
ProE.info «Majonez «Provansal Tradycijnyj» TM «Torchyn» https://dobavkam.net/food/mayonez-provansal-tradicionnyy-tm-torchin
ProE.info «Majonez Yubilejnyj TM «Norma» https://dobavkam.net/food/mayonez-yubileynyy
ProE.info «Majonez «MakMaj» Provansal` https://dobavkam.net/food/mayonez-makmay-provansal
ProE.info «Majonez Salatny`j TM «Urozhaj» https://dobavkam.net/food/mayonez-salatnyy-tm-urozhay
Pylypenko L.M., Kilimenchuk O.O., Yehorova A.V., Trufkatі L.V. (2024). [Industry microbiology. Technological expertise and food safety]. Іvano-Frankіvsk. Golіnei O.V. (in Ukrainian).
Kaprelyants L.V., Pylypenko L.M., Yegorova A.V. (2016). [Microbiology of food and beverage production]. Kherson. FOP Grіn D.S. (in Ukrainian).
DSTU 4487 (2015). [Mayonnaise and mayonnaise sauces. General technical conditions]. Vved.2016-01-01, K.: Viddil redaguvannya normatyvnyx dokumentiv DP «UkrNDNCz» (in Ukrainian).
Pylypenko, L., Verkhivker, Y., Pylypenko I.V. (2015). [Food Preservation. Microbiology. Energy. Control. Monograph]. Odessa «VMV». (in Russian).
Pylypenko I., Pylypenko L., Yamborko A., Danylova O. (2017). Methodology for accelerated monitoring and assurance of sanitary quality and food safety. Ukrainian Food Journal. 6(2). https://doi.org/10.15673/fst.v13i4.1562
Cherevko O.I., Krajnyuk L.M., Kasilova L.O. (2023) Methods of food quality control. Study guide under the editorship of L.M. Krainiuk. University book. (in Ukrainian).
Pylypenko, L., Sevastyanova, O., Makovska, T., Oliinyk, L. (2021) New high-fat dairy products with color attractants. International Food Research Journal. 28(3), 435–442 doi: 10.47836/ifrj.28.3.03
Makovska, T. V. (2019). Development of technologies for mayonnaise sauces enriched with biocorrectors. (Unpublished candidate's dissertation). 246
Ali, M. S., Lee, E.-B., Lim, S.-K., Suk, K., Park, S.-C. (2023). Isolation and Identification of Limosilactobacillus reuteri PSC102 and Evaluation of Its Potential Probiotic, Antioxidant, and Antibacterial Properties. Antioxidants, 12(2), 238. https://doi.org/10.3390/antiox12020238
Al-Dhabi, N. A., Valan Arasu, M., Vijayaraghavan, P., Esmail, G. A., Duraipandiyan, V., Kim, Y. O., Kim, H., Kim, H.-J. (2020). Probiotic and Antioxidant Potential of Lactobacillus reuteri LR12 and Lactobacillus lactisLL10 Isolated from Pineapple Puree and Quality Analysis of Pineapple-Flavored Goat Milk Yoghurt during Storage. Microorganisms, 8(10), 1461. https://doi.org/10.3390/microorganisms8101461
Hoffmann, A., Kleniewska, P., Pawliczak, R. (2019). Antioxidative activity of probiotics. Archives of medical science: AMS, 17(3), 792–804. https://doi.org/10.5114/aoms.2019.89894
Tian, Y., Wang, Y., Zhang, N., Xiao, M., Zhang, J., Xing, X., Zhang, Y., Fan, Y., Li, X., Nan, B., Wang, Y., Liu, J. (2022). Antioxidant Mechanism of Lactiplantibacillus plantarum KM1 Under H2O2 Stress by Proteomics Analysis. Frontiers in microbiology, 13, 897387. https://doi.org/10.3389/fmicb.2022.897387
Mu, G., Li, H., Tuo, Y., Gao, Y., Zhang, Y. (2019). Antioxidative effect of Lactobacillus plantarum Y44 on 2,2'-azobis(2-methylpropionamidine) dihydrochloride (ABAP)-damaged Caco-2 cells. Journal of dairy science, 102(8), 6863–6875. https://doi.org/10.3168/jds.2019-16447
Al-Dhabi, N. A., Valan Arasu, M., Vijayaraghavan, P., Esmail, G. A., Duraipandiyan, V., Kim, Y. O., Kim, H., Kim, H.-J. (2020). Probiotic and Antioxidant Potential of Lactobacillus reuteriLR12 and Lactobacillus lactisLL10 Isolated from Pineapple Puree and Quality Analysis of Pineapple-Flavored Goat Milk Yoghurt during Storage. Microorganisms, 8(10), 1461. https://doi.org/10.3390/microorganisms8101461
Rezaie, N., Aghamohammad, S., Haj Agha Gholizadeh Khiavi, E., Khatami, S., Sohrabi, A., Rohani, M. (2024). The comparative anti-oxidant and anti-inflammatory efficacy of postbiotics and probiotics through Nrf-2 and NF-kB pathways in DSS-induced colitis model. Scientific reports, 14(1), 11560. https://doi.org/10.1038/s41598-024-62441-0
Li, P., Li, M., Wu, T., Song Y., Li Ya., Huang X., Lu H., Zech Xu, Z. (2022). Systematic evaluation of antimicrobial food preservatives on glucose metabolism and gut microbiota in healthy mice. npj Sci Food. 6, 42. https://doi.org/10.1038/s41538-022-00158-y
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