Open Access
Numéro |
Med Sci (Paris)
Volume 41, Numéro 3, Mars 2025
|
|
---|---|---|
Page(s) | 222 - 226 | |
Section | Nouvelles | |
DOI | https://doi.org/10.1051/medsci/2025029 | |
Publié en ligne | 21 mars 2025 |
- Aslam B, Khurshid M, Arshad MI, et al. Antibiotic Resistance : One Health One World Outlook. Front Cell Infect Microbiol 2021 ; 11 : 771510. [CrossRef] [PubMed] [Google Scholar]
- WHO integrated global surveillance on ESBL-producing E. coli using a “One Health” approach (https://www.who.int/publications/i/item/9789240021402). [Google Scholar]
- Murray CJ, Ikuta KS, Sharara F, et al. Global burden of bacterial antimicrobial resistance in 2019 : a systematic analysis. Lancet 2022 ; 399 : 629–55. [CrossRef] [PubMed] [Google Scholar]
- Milenkov M, Proux C, Rasolofoarison TL, et al. Implementation of the WHO Tricycle protocol for surveillance of extended-spectrum β-lactamase producing Escherichia coli in humans, chickens, and the environment in Madagascar : a prospective genomic epidemiology study. Lancet Microbe 2024 ; 5 : 100850. [Google Scholar]
- Gay N, Rabenandrasana MAN, Panandiniaina HP, et al. One Health compartment analysis of ESBL-producing Escherichia coli reveals multiple transmission events in a rural area of Madagascar. J Antimicrob Chemother 2023 ; 78 : 1848–58. [Google Scholar]
- MacFadden DR, McGough SF, Fisman D, et al. Antibiotic resistance increases with local temperature. Nat Clim Change 2018 ; 8 : 510–4. [Google Scholar]
- Tenaillon O, Skurnik D, Picard B, et al. The population genetics of commensal Escherichia coli. Nat Rev Microbiol 2010 ; 8 : 207–17. [Google Scholar]
- Chen LF, Freeman JT, Nicholson B, et al. Widespread Dissemination of CTX-M-15 Genotype Extended-Spectrum-β-Lactamase-Producing Enterobacteriaceae among Patients Presenting to Community Hospitals in the Southeastern United States. Antimicrob Agents Chemother 2014 ; 58 : 1200–02. [PubMed] [Google Scholar]
- Gomi R, Yamamoto M, Tanaka M, et al. Chromosomal integration of blaCTX-M genes in diverse Escherichia coli isolates recovered from river water in Japan. Curr Res Microb Sci 2022 ; 3 : 100144. [Google Scholar]
- Dorado-García A, Smid JH, Pelt W van, et al. Molecular relatedness of ESBL/AmpC-producing Escherichia coli from humans, animals, food and the environment : a pooled analysis. J Antimicrob Chemother 2018 ; 73 : 339–47. [Google Scholar]
- Day MJ, Hopkins KL, Wareham DW, et al. Extended-spectrum β-lactamase-producing Escherichia coli in human-derived and foodchain-derived samples from England, Wales, and Scotland : an epidemiological surveillance and typing study. Lancet Infect Dis 2019 ; 19 : 1325–35. [Google Scholar]
- Ludden C, Raven KE, Jamrozy D, et al. One Health Genomic Surveillance of Escherichia coli Demonstrates Distinct Lineages and Mobile Genetic Elements in Isolates from Humans versus Livestock. mBio 2019 ; 10 : e02693–18. [Google Scholar]
- Büdel T, Kuenzli E, Campos-Madueno EI, et al. On the island of Zanzibar people in the community are frequently colonized with the same MDR Enterobacterales found in poultry and retailed chicken meat. J Antimicrob Chemother 2020 ; 75 : 2432–41. [Google Scholar]
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