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Fu Y#, Chen Y#, Liu D, Yang D, Liu Z, Wang Y, Wang J, Wang X, Xu X, Li X, He J, Jiang J, Zhai W, Huang L, He T, Xia X, Cai C, Wang Y*, Jiang H*. Abundance of tigecycline resistance genes and association with antibiotic residues in Chinese livestock farms. Journal of Hazard Materials.2021, 409:124921.
Wang Y#, Xu C#, Zhang R#, Chen Y#, Shen Y#, Hu F#, Liu D, Lu J, Guo Y, Xia X, Jiang J, Wang X, Fu Y, Yang L, Wang J, Li J, Cai C, Yin D, Che J, Fan R, Wang Y, Qing Y, Liao K, Chen H, Zou M, Liang L, Tang J, Shen Z, Wang S, Yang X, Wu C, Xu S*, Walsh TR*, Shen J*. Changes in colistin resistance and mcr-1 abundance in Escherichia coli of animal and human origins following the ban of colistin-positive additives in China: an epidemiological comparative study. The Lancet Infectious Disease. 2020, 20(10):1161-1171.
He T#, Wang R#, Liu D#, Walsh TR, Zhang R, Lv Y, Ke Y, Ji Q, Wei R, Liu Z, Shen Y, Wang G, Sun L, Lei L, Lv Z, Li Y, Pang M, Wang L, Sun Q, Fu Y, Song H, Hao Y, Shen Z, Wang S, Chen G, Wu C, Shen J*, Wang Y*. Emergence of plasmid-mediated high-level tigecycline resistance genes in animals and humans. Nature Microbiology. 2019, 4:1450-1456.
Li J#, Bi Z#, Ma S#, Chen B#, Cai C, He J, Schwarz S, Sun C, Zhou Y, Yin J, Hulth A, Wang Y, Shen Z, Wang S, Wu C, Nilsson LE, Walsh TR, B?rjesson S, Shen J, Sun Q*, Wang Y*. Inter-host transmission of carbapenemase-producing Escherichia coli among humans and backyard animals. Environmental Health Perspectives. 2019, 127(10):107009.
Zou ZY#, Lei L#, Chen QY, Wang YQ, Cai C, Li WQ, Zhang Z, Shao B*, Wang Y*. Prevalence and dissemination risk of antimicrobial-resistant Enterobacteriaceae from shared bikes in Beijing, China. Environment International. 2019, 132:105119.
Shen Y#, Lv Z#, Yang L #, Liu D #, Ou Y, Xu C, Liu W, Yuan D, Hao Y, He J, Li X, Zhou Y, Walsh TR, Shen J, Xia J, Ke Y* and Wang Y*. Integrated Aquaculture Contributes to the Transfer of MCR-1 Between Animals and Humans Via the Aquaculture Supply Chain. Environment International. 2019, 130:104708.
Shen Y#, Zhou H#, Xu J, Wang Y, Zhang Q, Walsh TR, Shao B, Wu C, Hu Y, Yang L, Shen Z, Wu Z, Sun Q, Ou Y, Wang Y, Wang S, Wu Y, Cai C, Li J, Shen J*, Zhang R*, Wang Y*. Anthropogenic and environmental factors associated with high prevalence of mcr-1 carriage in humans across China. Nature Microbiology. 2018,3(9):1054-1062.
Wang X, Wang Y, Zhou Y, Li J, Yin W, Wang S, Zhang S, Shen J, Shen Z*, Wang Y*. Emergence of a novel mobile colistin resistance gene, mcr-8, in NDM-producing Klebsiella pneumoniae. Emerging Microbes & Infections. 2018, 7(1): 122 2018.07.04.
Wang Y#, Tian GB#, Zhang R#, Shen Y#, Tyrrell JM, Huang X, Zhou H, Lei L, Li HY, Doi Y, Fang Y, Ren H, Zhong LL, Shen Z, Zeng KJ, Wang S, Liu JH, Wu C, Walsh TR*, Shen J*. Prevalence, risk factors, outcomes, and molecular epidemiology of mcr-1-positive Enterobacteriaceae in patients and healthy adults from China: an epidemiological and clinical study. Lancet Infectious Diseases. 2017, 17:390-399.
Wang Y#, Zhang R#, Li J, Wu Z, Yin W, Schwarz S, Tyrrell JM, Zheng Y, Wang S, Shen Z, Liu Z, Liu J, Lei L, Li M, Zhang Q, Wu C, Zhang Q, Wu Y, Walsh TR*, Shen J*. Comprehensive resistome analysis reveals the prevalence of NDM and MCR-1 in Chinese poultry production. Nature Microbiology. 2017, 2:16260.
Yin W, Li H, Shen Y, Liu Z, Wang S, Shen Z, Zhang R, Walsh TR, Shen J, Wang Y*. Novel Plasmid-Mediated Colistin Resistance Gene mcr-3 in Escherichia coli. mBio. 2017, 8 (3), e00543-17.
Liu YY#, Wang Y#, Walsh TR, Yi LX, Zhang R, Spencer J, Doi Y, Tian G, Dong B, Huang X, Yu LF, Gu D, Ren H, Chen X, Lv L, He D, Zhou H, Liang Z, Liu JH*, Shen J*. Emergence of plasmid-mediated colistin resistance mechanism MCR-1 in animals and human beings in China: a microbiological and molecular biological study. Lancet Infectious Diseases. 2016, 16(2):161-168.
Wang Y#, Lv Y#, Cai J#, Schwarz S#, Cui L, Hu Z, Zhang R, Li J, Zhao Q, He T, Wang D, Wang Z, Shen Y, Li Y, Feβler AT, Wu C, Yu H, Deng X, Xia X, Shen J*. A novel gene, optrA, that confers transferable resistance to oxazolidinones and phenicols and its presence in Enterococcus faecalis and Enterococcus faecium of human and animal origin. Journal of Antimicrobial Chemotherapy. 2015, 70:2182-2190.