期刊首页 优先出版 当期阅读 过刊浏览 作者中心 关于期刊 English

《工程(英文)》 >> 2022年 第15卷 第8期 doi: 10.1016/j.eng.2022.04.007

微生物耐药性在人与动物间的传播——我们为什么需要知道更多?

Department of Veterinary Medicine, University of Cambridge, Cambridge CB3 0ES, UK

发布日期: 2022-07-27

下一篇 上一篇

参考文献

[ 1 ] Murray CJL, Ikuta KS, Sharara F, Swetschinski L, Robles Aguilar G, Gray A, et al. Global burden of bacterial antimicrobial resistance in 2019: a systematic analysis. Lancet 2022;399(10325):629‒55.

[ 2 ] Tiseo K, Huber L, Gilbert M, Robinson TP, van Boeckel TP. Global trends in antimicrobial use in food animals from 2017 to 2030. Antibiotics 2020;9(12):918‒34. 链接1

[ 3 ] Liu YY, Wang Y, Walsh TR, Yi LX, Zhang R, Spencer J, et al. Emergence of plasmid-mediated colistin resistance mechanism MCR-1 in animals and human beings in China: a microbiological and molecular biological study. Lancet Infect Dis 2016;16(2):161‒8. 链接1

[ 4 ] Wang R, van Dorp L, Shaw LP, Bradley P, Wang Qi, Wang X, et al. The global distribution and spread of the mobilized colistin resistance gene mcr-1. Nat Commun 2018;9(1):1179. 链接1

[ 5 ] Davis GS, Waits K, Nordstrom L, Weaver B, Aziz M, Gauld L, et al. Intermingled Klebsiella pneumoniae populations between retail meats and human urinary tract infections. Clin Infect Dis 2015;61(6):892‒9. 链接1

[ 6 ] Price LB, Stegger M, Hasman H, Aziz M, Larsen J, Andersen PS, et al. Staphylococcus aureus CC398: host adaptation and emergence of methicillin resistance in livestock. MBio 2012;3(1):e00305‒11. 链接1

[ 7 ] Ward MJ, Gibbons CL, McAdam PR, van Bunnik BAD, Girvan EK, Edwards GF, et al. Time-scaled evolutionary analysis of the transmission and antibiotic resistance dynamics of Staphylococcus aureus clonal complex 398. Appl Environ Microbiol 2014;80(23):7275‒82. 链接1

[ 8 ] Lupindu AM, Dalsgaard A, Msoffe PLM, Ngowi HA, Mtambo MM, Olsen JE. Transmission of antibiotic-resistant Escherichia coli between cattle, humans and the environment in peri-urban livestock keeping communities in Morogoro. Tanzania Prev Vet Med 2015;118(4):477‒82. 链接1

[ 9 ] Mather AE, Reid SWJ, Maskell DJ, Parkhill J, Fookes MC, Harris SR, et al. Distinguishable epidemics of multidrug-resistant Salmonella Typhimurium DT104 in different hosts. Science 2013;341(6153):1514‒7. 链接1

[10] Findlay J, Mounsey O, Lee WWY, Newbold N, Morley K, Schubert H, et al. Molecular epidemiology of Escherichia coli producing CTX-M and pAmpC blactamases from dairy farms identifies a dominant plasmid encoding CTX-M- 32 but no evidence for transmission to humans in the same geographical region. Appl Environ Microbiol 2020;87(1):e01842‒20. 链接1

[11] Ludden C, Raven KE, Jamrozy D, Gouliouris T, Blane B, Coll F, 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(1):e02693‒18. 链接1

[12] Thorpe H, Booton R, Kallonen T, Gibbon MJ, Couto N, Passet V, et al. One Health or Three? Transmission modelling of Klebsiella isolates reveals ecological barriers to transmission between humans, animals and the environment. 2022 bioRxiv: 455249.

[13] Iovine NM, Blaser MJ. Antibiotics in animal feed and spread of resistant Campylobacter from poultry to humans. Emerg Infect Dis 2004;10(6):1158‒9. 链接1

[14] Muloi D, Ward MJ, Pedersen AB, Fèvre EM, Woolhouse MEJ, van Bunnik BAD. Are food animals responsible for transfer of antimicrobial-resistant Escherichia coli or their resistance determinants to human populations? A systematic review. Foodborne Pathog Dis 2018;15(8):467‒74. 链接1

相关研究