The current document is anupdate of the guidelines developed by the EUCAST subcommittee on detection of resistance mechanisms. The EUCAST Steering Committee has carried out the current update. The document has been developed mainly for routine use in clinical laboratories and doesnot cover technical
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procedures for identification of resistance mechanisms at a molecular level by reference or expert laboratories. However, much of the content is also applicable tonational reference laboratories. Furthermore, it is important to note that the document does not cover screening for asymptomatic carriage (colonization) of multidrug-resistant microorganismsor direct detectionof resistancein clinical samples.
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Internationally, there is a growing concern over antimicro-bial resistance (AMR) which is currently estimated to ac-count for more than 700,000 deaths per year worldwide. If no appropriate measures are taken to halt its pro-gress, AMR will cost approximately 10 million lives andabout US$100 trillion
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per year by 2050. In contrast tosome other health issues, AMR is a problem that con-cerns every country irrespective of its level of incomeand development as resistant pathogens do not respect borders.Despite the threat presented by AMR, the 2014 WorldHealth Organization (WHO) and the recent O’Neill re-port describe significant gaps in surveillance, standardmethodologies and data sharing. The 2014 WHOreport identified Africa and South East Asia as the regions without established AMR surveillance systems.
Tadesseet al. BMC Infectious Diseases (2017) 17:616 DOI 10.1186/s12879-017-2713-1
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Antimicrobial Resistance Surveillance and Research Network | This document contains detail procedures on sample collection, transport, isolation, identification of fungi for the diagnosis of invasive fungal infections and antifungal susceptibility testing of yeast
PLOS ONE | www.plosone.org
September 2014 | Volume 9 | Issue 9 | e103657
Nature Reviews Microbiology Vol. 17 (2019)pp.51-62
Antimicrobial susceptibility testing (AST) technologies help to accelerate the
initiation of targeted antimicrobial therapy for patients with infections and could potentially
extend the lifespan of current narrow- spectrum antimicrobials. Althoug
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h conceptually new and
rapid AST technologies have been described, including new phenotyping methods, digital
imaging and genomic approaches, there is no single major, or broadly accepted, technological
breakthrough that leads the field of rapid AST platform development
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Handbook of Foodborne Pathogenic Microorganisms and Natural Toxins
INT J TUBERC LUNG DIS 22(2):197–205 http://dx.doi.org/10.5588/ijtld.17.0245
Stenotrophomonas maltophiliais a nonfermenting Gram-negative rod that is ubiquitous in nature (predominantly occurring in aquatic environments and on plants). Biochemically, it iscatalase positive and oxidase negative, and it produces acid frommaltose (hence the name“maltophilia”). Due to it
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s chargedcell wall surface and biofilm production, it may attach to and survive on abiotic surfaces in clinical settings (eg, central venouscatheters, disinfectant and hand-washing solutions, solutions for hemodialysis, endoscopes, inspiration/expiration circuits of ventilators, nebulizers, tap water, and showerheads).
Health Services Research and Managerial Epidemiology Volume 6: 1-9ªThe Author(s) 2019
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F1000Research 2019, 8:323 Last updated: 17 MAY 2019
Tokar et al. Health Research Policy and Systems (2019) 17:23 https://doi.org/10.1186/s12961-019-0415-4
Tokar A, et al. Sex Transm Infect 2019;95:193–200. doi:10.1136/sextrans-2018-053684