Al-Khresieh, R. O., Aburayyan, W., Seder, N., Al-Daghistani, H. I., El-Banna, N., & Abu-Taleb, E. M. (2023). Comparison of preservation enrichment media for long storage duration of Campylobacter jejuni. The Microbiological Society of Korea, 59(3), 192–196.
Benites, C., Anampa, D., Torres, D., Avalos, I., Rojas, M., Conte, C., & Lázaro, C. (2022). Prevalence, tetracycline resistance and Tet (O) gene identification in pathogenic Campylobacter strains isolated from chickens in retail markets of Lima, Peru. Antibiotics, 11(11), 1580.
Bolton, D. J. (2015). Campylobacter virulence and survival factors. Food Microbiology, 48, 99–108.
Bunduruș, I. A., Balta, I., Ștef, L., Ahmadi, M., Peț, I., McCleery, D., & Corcionivoschi, N. (2023). Overview of virulence and antibiotic resistance in Campylobacter spp. livestock isolates. Antibiotics, 12(2), 402.
Chechet, O. N., Gorbatyuk, O. I., Rublenko, І. О., Kuryata, N. V., Вuchkovska, G. A., Musiets, I. V., Shchur, N. V., Shalimova, L. O., Ordynska, D. О., Balanchuk, L. V., & Togachynska, L. V. (2023). Zoonotic and commensal bacteria from pigs with acquired antimicrobial resistance. Regulatory Mechanisms in Biosystems, 14(4), 624–629.
Choi, J. H., Moon, D. C., Mechesso, A. F., Kang, H. Y., Kim, S. J., Song, H. J., Yoon, S. S., & Lim, S. K. (2021). Antimicrobial resistance profiles and macrolide resistance mechanisms of Campylobacter coli isolated from pigs and chickens. Microorganisms, 9(5), 1077.
Enany, S., Piccirillo, A., Elhadidy, M., & Tryjanowski, P. (2021). The role of environmental reservoirs in Campylobacter-mediated infection. Frontiers in Cellular and Infection Microbiology, 11, 773436.
Eryıldız, C., Sakru, N., & Kuyucuklu, G. (2022). Investigation of antimicrobial susceptibilities and resistance genes of Campylobacter isolates from patients in Edirne, Turkey. Iranian Journal of Public Health, 51(3), 569.
Habib, I., Mohamed, M. Y. I., Lakshmi, G. B., Khan, M., & Li, D. (2022). Quantification of Campylobacter contamination on chicken carcasses sold in retail markets in the United Arab Emirates. International Journal of Food Contamination, 9(1), 9.
Hafez, A. A., Younis, G., El-Shorbagy, M. M., & Awad, A. (2018). Prevalence, cytotoxicity and antibiotic susceptibility of Campylobacter species recovered from retail chicken meat in Mansoura, Egypt. African Journal of Microbiology Research, 12(22), 501–507.
Hansson, I., Sandberg, M., Habib, I., Lowman, R., & Engvall, E. O. (2018). Knowledge gaps in control of Campylobacter for prevention of campylobacteriosis. Transboundary and Emerging Diseases, 65, 30–48.
Hormeño, L., Campos, M. J., Vadillo, S., & Quesada, A. (2020). Occurrence of tet (O/M/O) mosaic gene in tetracycline-resistant Campylobacter. Microorganisms, 8(11), 1710.
Igwaran, A., & Okoh, A. I. (2019). Human campylobacteriosis: A public health concern of global importance. Heliyon, 5(11), e02814.
Iovine, N. M. (2013). Resistance mechanisms in Campylobacter jejuni. Virulence, 4(3), 230–240.
Kim, J. S., Lee, M. Y., Kim, S. J., Jeon, S. E., Cha, I., Hong, S., Chung, G., Hun, M., Kang, Y., Yoo, C., & Kim, J. (2016). High-level ciprofloxacin-resistant Campylobacter jejuni isolates circulating in humans and animals in Incheon, Republic of Korea. Zoonoses and Public Health, 63(7), 545–554.
Kyryk, D. L. (2012). Biologichni vlastyvosti bakterij rodu Campylobacter ta jih vplyv na epidemichnyj proces kampilobakteriozu [Biological properties of the bacteria of the genus Campylobacter and their influence on the epidemic process of campylobacteriosis]. Profilaktychna Medycyna, 19, 82–88 (in Ukrainian).
Kyryk, D. L. (2013). Kliniko-epidemiologichni osoblyvosti kampilobakteriozu v Ukrayini [Clinical and epidemiological features of campylobacteriosis in Ukraine]. Ukrajins’kyy Medychnyy Chasopys, 95(3), 162–164 (in Ukrainian).
Kyryk, D. L. (2017). Organizaciya kompleksnogo epidemiologichnoho nagliadu za kampilobakteriozom v suchasnykh umovakh [Organization of integrated epidemiological supervision of campylobacteriosis in modern conditions]. Vlachebnoe Delo, 1–2, 120–124 (in Ukrainian).
Madden, C. M., & Madden, R. H. (2019). A comparison of media for the recovery of Campylobacter spp. from long term storage at-80 C. Romanian Biotechnological Letters, 24(2), 340–343.
Mazur, T., Shchur, N., & Boianovskyi, S. (2022). Immunosuppressive activity of Campylobacter jejuni isolates in relation to the cellular link of the body's immunoprotection. Ukrainian Journal of Veterinary Sciences, 13(3), 34–41.
Metreveli, M., Bulia, S., Shalamberidze, I., Tevzadze, L., Tsanava, S., Goenaga, J., Stingl, K., & Imnadze, P. (2022). Campylobacteriosis, shigellosis and salmonellosis in hospitalized children with acute inflammatory diarrhea in Georgia. Pathogens, 11(2), 232.
Mouftah, S. F., Cobo-Díaz, J. F., Álvarez-Ordóñez, A., Elserafy, M., Saif, N. A., Sadat, A., El-Shibiny, A., & Elhadidy, M. (2021). High-throughput sequencing reveals genetic determinants associated with antibiotic resistance in Campylobacter spp. from farm-to-fork. PloS One, 16(6), e0253797.
Mulu, W., Joossens, M., Kibret, M., Van den Abeele, A. M., & Houf, K. (2024). Campylobacter occurrence and antimicrobial resistance profile in under five-year-old diarrheal children, backyard farm animals, and companion pets. PLoS Neglected Tropical Diseases, 18(6), e0012241.
Nedosekov, V. V., & Petkun, H. V. (2021). Blahopoluchchia tvaryn molochnoho stada [Welfare of dairy herd animals]. Naukovi Dopovidi NUBiP Ukrayiny, 4, 92 (in Ukrainian).
Ortiz, B. T., Rodríguez, D., & Restrepo, S. (2024). Prevalence and risk factors of Campylobacter jejuni and Campylobacter coli in fresh chicken carcasses from retail sites in Bogotá, Colombia. Heliyon, 10(4), e26356.
Petkun, H., & Nedosekov, V. (2022). Analysis of EU and Ukrainian legislation for the cattle welfare. Scientific Messenger of LNU of Veterinary Medicine and Biotechnologies, Series: Veterinary Sciences, 24(106), 108–113.
Pinchuk, N. G., & Pustovit, N. A. (2018). Kampilobakterioz yak vazhlyva harchova toksykoinfekciya [Campylobacteriosis as animportant food toxicoinfection]. Bulletin of the Poltava State Agrarian Academy, 2, 136–140 (in Ukrainian).
Portes, A. B., Panzenhagen, P., Pereira dos Santos, A. M., & Junior, C. A. C. (2023). Antibiotic resistance in Campylobacter: A systematic review of South American isolates. Antibiotics, 12(3), 548.
Prakash, O., Nimonkar, Y., & Desai, D. (2020). A recent overview of microbes and microbiome preservation. Indian Journal of Microbiology, 60(3), 297–309.
Rafiq, K., Islam, M. R., Siddiky, N. A., Samad, M. A., Chowdhury, S., Hossain, K. M., Rume, F., Hossain, K., Mahbub-E-Elahi, A, Ali, M.., Rahman, M., Amin, M., Masuduzzaman, M., Ahmed, S., Rumi, N., & Hossain, M. T. (2022). Antimicrobial resistance profile of common foodborne pathogens recovered from livestock and poultry in Bangladesh. Antibiotics, 11(11), 1551.
Rivera-Mendoza, D., Martínez-Flores, I., Santamaría, R. I., Lozano, L., Bustamante, V. H., & Pérez-Morales, D. (2020). Genomic analysis reveals the genetic determinants associated with antibiotic resistance in the zoonotic pathogen Campylobacter spp. distributed globally. Frontiers in Microbiology, 11, 513070.
Rodrigues, J. A., Cha, W., Mosci, R. E., Mukherjee, S., Newton, D. W., Lephart, P., Salimnia, H., Khalife, W., Rudrik, J., & Manning, S. D. (2021). Epidemiologic associations vary between tetracycline and fluoroquinolone resistant Campylobacter jejuni infections. Frontiers in Public Health, 9, 672473.
Salmanov, A. G., & Muzyka, V. P. (2017). Combating antibiotic resistance based on the concept of One Health. International Journal of Antibiotics and Probiotics, 1(2), 8–29.
Schreyer, M. E., Olivero, C. R., Rossler, E., Soto, L. P., Frizzo, L. S., Zimmermann, J. A., Signorini, M., & Virginia, Z. M. (2022). Prevalence and antimicrobial resistance of Campylobacter jejuni and C. coli identified in a slaughterhouse in Argentina. Current Research in Food Science, 5, 590–597.
Shchur, N., Chechet, O., Mazur, T., Martyniuk, O., Gorbatiuk, O., Buchkovska, H., Musiets, I., Ordynska, D., Finkova, O., Moskalenko, L., Ponomaryova-Gerasimyuk, T., Lusta, M., & Nedosekov, V. (2023). Prevalence and antimicrobial resistance of Campylobacter isolated from animals and poultry in Ukraine. Advances in Animal and Veterinary Sciences, 11(5), 852–863.
Shchur, N., Mazur, T., Katsaraba, O., Halka, I., Shalimova, L., Moskalenko, L., Ponomariova-Herasymiuk, T., Lusta, M., & Nedosekov, V. (2024). Improving the efficiency of Campylobacter spp. isolation from livestock and poultry in Ukraine. Advances in Animal and Veterinary Sciences, 12(10), 1862–1874.
Shen, Z., Wang, Y., Zhang, Q., & Shen, J. (2018). Antimicrobial resistance in Campylobacter spp. Microbiology Spectrum, 6(2), arba-0013-2017.
Sproston, E. L., Wimalarathna, H. M., & Sheppard, S. K. (2018). Trends in fluoroquinolone resistance in Campylobacter. Microbial Genomics, 4(8), e000198.
Tang, K. W. K., Millar, B. C., & Moore, J. E. (2023). Antimicrobial resistance (AMR). British Journal of Biomedical Science, 80, 11387.
Tang, M., Zhou, Q., Zhang, X., Zhou, S., Zhang, J., Tang, X., Lu, J., & Gao, Y. (2020). Antibiotic resistance profiles and molecular mechanisms of Campylobacter from chicken and pig in China. Frontiers in Microbiology, 11, 592496.
Tsarenko, T., & Korniienko, L. (2021). Intensive animal farming operations and outbreaks of zoonotic bacterial diseases in Ukraine. Regulatory Mechanisms in Biosystems, 12(3), 479–489.
Vandepitte, J., Verhaegen, J., Engbaek, K., Piot, P., Heuck, C. C., Rohner, P., & Heuck, C. C. (2003). Basic laboratory procedures in clinical bacteriology. World Health Organization, Geneva.
Veltcheva, D., Colles, F. M., Varga, M., Maiden, M. C., & Bonsall, M. B. (2022). Emerging patterns of fluoroquinolone resistance in Campylobacter jejuni in the UK [1998–2018]. Microbial Genomics, 8(9), 875.
Vinueza-Burgos, C., Wautier, M., Martiny, D., Cisneros, M., Van Damme, I., & De Zutter, L. (2017). Prevalence, antimicrobial resistance and genetic diversity of Campylobacter coli and Campylobacter jejuni in Ecuadorian broilers at slaughter age. Poultry Science, 96(7), 2366–2374.
Wang, Y., Zhang, M., Deng, F., Shen, Z., Wu, C., Zhang, J., Zhang, Q., & Shen, J. (2014). Emergence of multidrug-resistant Campylobacter species isolates with a horizontally acquired rRNA methylase. Antimicrobial Agents and Chemotherapy, 58(9), 5405–5412.
Yan, R., M'ikanatha, N. M., Nachamkin, I., Hudson, L. K., Denes, T. G., & Kovac, J. (2023). Prevalence of ciprofloxacin resistance and associated genetic determinants differed among Campylobacter isolated from human and poultry meat sources in Pennsylvania. Food Microbiology, 116, 104349.
Zhang, P., Zhang, X., Liu, Y., Cui, Q., Qin, X., Niu, Y., Wang, C., Wang, T., Chen, Q., Ding, S., Va, X., & Shen, Z. (2022). Genomic insights into the increased occurrence of campylobacteriosis caused by antimicrobial-resistant Campylobacter coli. MBio, 13(6), e02835-22.
Zhang, Q., Beyi, A. F., & Yin, Y. (2023). Zoonotic and antibiotic-resistant Campylobacter: A view through the One Health lens. One Health Advances, 1(1), 4.
Zhang, X., Tang, M., Zhou, Q., Zhang, J., Yang, X., & Gao, Y. (2018). Prevalence and characteristics of Campylobacter throughout the slaughter process of different broiler batches. Frontiers in Microbiology, 9, 2092.
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