Practical Application of the AMRcloud Online Platform for Veterinary Monitoring of Antibiotic Resistance of Zoonotic Pathogens
https://doi.org/10.37489/0235-2990-2023-68-5-6-19-23
Abstract
Background. Veterinary monitoring of antibiotic resistance in pathogens of zoonotic diseases is necessary for the rational use of antibiotics. Integration and use of the AMRcloud online platform in veterinary institutions will significantly simplify data processing, increase the speed of data analysis of monitoring results, and help overcome the interagency barrier in the exchange of information between human medicine and veterinary medicine.
The aim of the study is the practical ap- plication of the AMRcloud online platform for veterinary monitoring of antibiotic resistance in pathogens of zoonotic origin.
Material and methods. In the course of veterinary monitoring, the susceptibility of 275 isolates (16 species of bacteria) to 13 antimicrobial drugs most commonly used in animal husbandry was determined. Among the antimicrobial drugs were: amoxiclav, ampicillin, benzylpenicillin, gentamicin, clindamycin, streptomycin, tetracycline, tobramycin, cephalexin cefotaxime, ceftriaxone, erythromycin, and colistin. The data obtained were combined into a single system using the AMRcloud online platform.
Results. The most common causative agents of mastitis were identified: Streptococcus agalactiae (n=96), Escherichia coli (n=55), Staphylococcus aureus (n=33) and Enterococcus faecalis (n=31). ESBL production have been detected in 13 (19.7%) of 66 isolates of the order Enterobacterales, isolated from clinical material of cattle and small ruminants, which limits the use of beta-lactam antibiotics for the treatment of mastitis.
Conclusion. The use of the AMRcloud online platform in veterinary laboratories greatly simplifies data processing, increases the result analysis speed, and provides an opportunity to exchange information on antibiotic resistance between laboratories.
About the Authors
A. L. KrotovaRussian Federation
Deputy Head of the Department of Food Microbiology, Bacteriology, and Veterinary and Sanitary Expertise
15 Moskovskoye Highway, ARRIAH, St. Petersburg, 196158
Competing Interests:
Авторы декларируют отсутствие явных и потенциальных конфликтов интересов, связанных с публикацией данной
статьи.
S. A. Makavchik
Russian Federation
D. Sc. in Veterinary Sciences, Associate Professor of the Department of Microbiology, Virology, and Immunology
Competing Interests:
Авторы декларируют отсутствие явных и потенциальных конфликтов интересов, связанных с публикацией данной
статьи.
A. A. Sukhinin
Russian Federation
D. Sc. in Biology, Professor, Head of the Department of Microbiology, Virology, and Immunology
Competing Interests:
Авторы декларируют отсутствие явных и потенциальных конфликтов интересов, связанных с публикацией данной
статьи.
References
1. Plan meropriyatii na 2019–2024 gody po realizatsii Strategii preduprezhdeniya rasprostraneniya antimikrobnoi rezistentnosti v Rossiiskoi Federatsii na period do 2030 goda. Utverzhden rasporyazheniem Pravitel'stva Rossiiskoi Federatsii ot 30 marta 2019 g. № 604-r. Dostupno po: http://government.ru/docs/29477/.
2. Ssylka aktivna na: 27.02.2023 g. (in Russian)[Makavchik S.A., Sukhinin A.A., Engashev S.V., Krotova A.L. Laboratornye metody kontrolya polirezistentnykh vozbuditelei bakterial'nykh boleznei zhivotnykh i ratsional'noe primenenie antimikrobnykh preparatov. SPb.: Izdatel'stvo VVM; 2021. (in Russian)
3. Makavchik S.A., Krotova A.L., Bargman Zh.E., Sukhinin A.A., Prikhod'ko E.I. Mekhanizmy rezistentnosti k antimikrobnym preparatam u mikroorganizmov, vydelennykh ot krupnogo rogatogo skota. doi: https://doi.org/10.17238/issn2072-6023. 2020.4.41. Voprosy Normativno-Pravovogo Regulirovaniya v Veterinarii. 2020; 4: 41–46. (in Russian)
4. Makavchik S.A., Sukhinin A.A., Krotova A.L., Selivanova L.V., Prikhod'ko E.I. Etiologicheskaya struktura vozbuditelei mastita korov i ikh kharakteristika chuvstvitel'nosti k antibakterial'nym preparatam v Severo-Zapadnom regione. Voprosy Normativno-Pravovogo Regulirovaniya v Veterinarii 2020; 1: 66–71. doi: https://doi.org/10.17238/issn2072-6023.2020.1.66. (in Russian)
5. Makavchik S.A. Rational pharmacotherapy of animals with the basics of ranking antimicrobials in veterinary laboratories. Veterinary Science. 2022; 2: 9–12. doi: https://doi.org/10.30896/0042-4846.2022.25.02.09-12. (in Russian)
6. Makarov D.A., Karabanov S.Yu., Krylova E.A., Pobolelova Yu.I., Ivanova O.E., Gergel' M.A., Kulikovskii A.V., Sukhoedova A.V. Opyt ispol'zovaniya onlain-platformy amrcloud for veterinarnogo monitoringa antibiotikorezistentnosti zoonoznykh bakterii. Klinicheskaya Mikrobiologiya i Antimikrobnaya Khimioterapiya. 2020; 22 (1): 53–59. doi: https://doi.org/10.36488/cmac.2020.1.53-59. (in Russian)
7. Sulyan O.S., Ageevets V.A., Sukhinin A.A., Ageevets I.V., Abgaryan S.R., Makavchik S. A., Kameneva O.A., Kosyakova K.G., Mrugova T.M., Popov D.A., Punchenko O.E., Sidorenko S.V. Associated resistance to polymyxin and beta-lactams of Escherichia coli isolated from humans and animals. Antibiotiki i Khimioter = Antibiotics and Chemotherapy. 2021; 66 (11–12): 9–17. doi: https://doi.org/10.37489/0235-2990-2021-66-11-12-9-17. (in Russian)
8. Kuzmenkov A.Yu., Vinogradova A.G., Trushin I.V., Avramenko A.A., Edelstein M.V., Dekhnich A.V., Kozlov R.S. AMRcloud: a new paradigm in monitoring of antibiotic resistance. Klinicheskaya Mikrobiologiya i Antimikrobnaya Khimioterapiya. 2019; 21 (2): 119–124. doi: https://doi.org/10.36488/cmac.2019.2.119-124. (in Russian)
9. OIE. List of antimicrobial agents of veterinary importance, June 2021. Available at: https://www.oie.int/app/uploads/2021/06/a-oie-list-antimicrobials-june2021.pdf. Accessed February 27, 2023.
10. WHO Antibiotic Categorization. Available at: https://aware.essentialmeds.org/list. Accessed February 27, 2023.
11. Perechen' lekarstvennykh preparatov, prednaznachennykh dlya lecheniya infektsionnykh i parazitarnykh boleznei zhivotnykh. Utverzhden prikazom Ministerstva sel'skogo khozyaistva ot 18 noyabrya 2021 goda N 771. Dostupno po: https://fsvps.gov.ru/ru/fsvps/laws/8442.html. Ssylka aktivnana: 27.02.2023g. (in Russian)
12. Antimicrobial wild type distributions of microorganisms. Available at: https://mic.eucast.org/search. Accessed February 27, 2023.
Review
For citations:
Krotova A.L., Makavchik S.A., Sukhinin A.A. Practical Application of the AMRcloud Online Platform for Veterinary Monitoring of Antibiotic Resistance of Zoonotic Pathogens. Antibiot Khimioter = Antibiotics and Chemotherapy. 2023;68(5-6):19-23. (In Russ.) https://doi.org/10.37489/0235-2990-2023-68-5-6-19-23