978
associated with contaminated handwashing sinks. Emerg Infect Dis 2012;18:1242–1247.
9. Leung G, Gray TJ, YL Cheong E, Haertsch P, Gottlieb T. Persistence of related bla-IMP-4 metallo-beta-lactamase–producing Enterobacteriaceae from clinical and environmental specimens within a burns unit in Australia—a six-year retrospective study. Antimicrob Resist Infect Control 2013;2:1–8.
10. Vergara-Lopez S, Dominguez MC, Conejo MC, Pascual A, Rodriguez- Bano J. Wastewater drainage system as an occult reservoir in a protracted clonal outbreak due to metallo-B-lactamase–producing Klebsiella oxytoca. Clin Microbiol Infect 2013;19:E490–E498.
11. Breathnach AS, Cubbon MD, Karunaharan RN, Pope CF. Multidrug- resistant Pseudomonas aeruginosa outbreaks in two hospitals: association with contaminated hospital wastewater systems. J Hosp Infect 2012;82:19–24.
12. Tofteland S, Naseer U, Lislevand JH, Sundsfjord A, Samuelsen O. A long- term low-frequency hospital outbreak of KPC-producing Klebsiella pneumonia involving intergenus plasmid diffusion and a persisting environmental reservoir. Plos One 2013;8:1–8.
13. Kotsanas D, Cheong WRPLI, Korman TM, et al. “Down the drain”: carbapenem-resistant bacteria in intensive care unit patient’s and hand washing sinks. Med J Austral 2013;198:267–269.
14. Wolf I, Bergervoet PWM, Sebens FW, van den Oever HLA, Savelkoul PHM, van der Zwet WC. The sink as a correctable source of extended- spectrum beta-lactamase contamination for patients in the intensive care unit. J Hosp Infect 2014;87:126–130.
15. Wendel AF, Kolbe-Busch S, Ressina S, Schulze-Robbecke R, Kindgen- Milles D. Detection and termination of an extended low-frequency hospital outbreak of GIM-1–producing Pseudomonas aeruginosa ST111 in Germany. Am J Infect Control 2015;43:635–639.
16. Leitner E, Zarfel G, Luxner J, et al. Contaminated handwashing sinks as the source of a clonal outbreak of KPC-2–producing Klebsiella oxytoca on a hematology ward. Antimicrob Agent Chemo 2015;59:714–716.
17. Davis RJ, Jensen SO, Van Hal S, et al. Whole-genome sequencing in real- time investigation and management of a Pseudomonas aeruginosa outbreak on a neonatal intensive care unit. Infect Control Hosp Epidemiol 2015;36:1058–1064.
18. Chapuis A, Amoureux L, Bador J, et al. Outbreak of extended-spectrum beta-lactamase–producing Enterobacter cloacae with high MIC’sof quaternary ammonium compounds in a hematology ward associated with contaminated sinks. Front Microbiol 2016;7:1070.
19. Stjarne Aspelund A, Sjostrom K, Liljequist BO, Morgelin M, Melander E, Pahlman LI. Acetic acid as a decontamination method for sink drains in a nosocomial outbreak of metallo-beta-lactamase–producing. Pseudomonas aeruginosa. J Hosp Infect 2016;94:13–20.
20. Bousquet A, Mee-Marquet N, Dubost C, et al. Outbreak of CTX-M-15– producing Enterobacter cloacae associated with therapeutic beds and syphons in an intensive care unit. Am J Infect Control 2017;45:1160–1164.
21. Amoureux L, Riedweg K, Chapuis A, et al. Nosocomial infections with IMP-19–producing Pseudomonas aeruginosa linked to contaminated sinks, France. Emerg Infect Dis 2017;23:304–307.
22. Mahida N, Clarke M, White G, Vaughan N, Bowell T. Outbreak of Enterobacter cloacae with New Delhi metallo-beta-lactamase (NDM)-1: challenges in epidemiological investigation and environmental deconta- mination. J Hosp Infect 2017;97:64–65.
23. DeGeyter D, Blommaert L, Verbraeken N, et al. The sink as a potential source of transmission of carbapenemase-producing Enterobacteriaceae in the intensive care unit. Antimicrob Resist Infect Control 2017;6:1–6.
24. Gbaguidi-Haore H, Varin A, Cholley P, Thouverez M, Hocquet D, Bertrand X. A bundle of measures to control an outbreak of Pseudomonas aeruginosa associated with P-trap contamination. Infect Control Hosp Epidemiol 2018;39:164–169.
25. Kac G, Podglajen I, Vaupre S, Colardelle N, Buu-Hof A, Gutmann L. Molecular epidemiology of extended-spectrum beta-lactamase–producing Enterobacteriaceae isolated from environmental and clinical specimens in a cardiac surgery intensive care unit. Infect Control Hosp Epidemiol 2004;25:852–855.
Philip C. Carling
26. Tokatlidou D, Tsivitanidou M, Pournaras S, Ikonomidis A. Outbreak caused by a multidrug-resistant Klebsiella pneumonia clone carrying blaVIM-12 in a university hospital. J Clin Microbiol 2008;46:1005–1008.
27. Suarez C, Peria C, Arch O, Dominguez MA, Tubau F, Juan C, Gavalda L, Sora M. A large sustained endemic outbreak of multiresistant Pseudomo- nas aeruginosa: a new epidemiological scenario for nosocomial acquisi- tion. BMC Infect Dis 2011;11:272.
28. Betteridge T, Merlino J, Natoli J, Cheong EY, Gottlieb T, Stokes HW. Plasmids and bacterial strains mediating multidrug-resistant hospital- acquired infections are coresidents of the hospital environment. Microb Drug Resist 2013;19:104–109.
29. Seara N, Oteo J, Carillo R, et al. Interhospital spread of NDM-7-producing Klebsiella pneumonia belonging to ST437 in Spain. Int J Antimicrob Agents 2015;46:169–173.
30. Kossow A, Kampmeier S, Willems S, et al. Control of multidrug-resistant Pseudomonas aeruginosa in allogeneic hematopoietic stem cell transplant recipients by a novel bundle including remodeling of sanitary and water supply systems. Clin Inf Dis 2017;65:935–942.
31. Varin A, Valot B, Cholley P, Morel C, Thouverez M, Hocquet D, Bertrand X. High prevalence and moderate diversity of Pseudomonas aeruginosa in the U-bends of high-risk units in hospital. Int J Hyg Environ Health 2017;220:880–885.
32. Paopradit P, Srinitiwarawong K, Ingviya N, Singkhamanan K, Vuddhakul V. Distribution and characterization of Stenotrophomonas maltophilia isolates from environmental and clinical samples in Thailand. J Hosp Infect 2017;97:185–191.
33. Jencson AL, Cadnum JL, Piedrahita C, Donskey CJ. Hospital sinks are a potential nosocomial source of Candida infections. Clinical Infect Dis 2017;65:1954–1955.
34. Khariman CA, Weingarten RA, Conlan S, et al. Horizontal transfer of carbapenemase-encoding plasmids and comparison with hospital epidemiology data. Antimicrob Agents Chemother 2016;60:4910–4919.
35. Kotay S, Chai W, Guilford W, Barry K, Mathers AJ. Spread from the sink to the patient: in situ study using green fluorescent protein (GFP)-expressing Escherichia coli to model bacterial dispersion from hand-washing sink-trap reservoirs. Appl Environ Microbiol 2017;83:e03327–16.
36. Grabowski ME, Kang H, Wells KM, Sifri CD, Mathers AJ, Lobo JM. Provider role in transmission of carbapenem-resistant Enterobacteriaceae. Infect Control Hosp Epidemiol 2017;38:1329–1334.
37. Roux D, Aubier B, Cochard H, Quentin R, van der Mee-Marquet N. Contaminated sinks in intensive care units: an underestimated source of extended-spectrum beta-lactamase–producing Enterobacteriaceae in the patient environment. J Hosp Infect 2013;85:106–111.
38. Chen LF, Anderson DJ, Paterson DL. Overview of the epidemiology and the threat of Klebsiella pneumonia carbapenemase (KPC) resistance. Infect Drug Resist 2012;5:133–141.
39. Moquet O, Bouchiat C, Kinana A, et al. Class D OXA-48 carbapenemase in multidrug-resistant Enterobacteria, Senegal. Emerg Infect Dis 2011;17:143–144.
40. Khan AS, Dancer SJ, Humphreys H. Priorities in the prevention and control of multidrug-resistant Enterobacteriaceae in hospitals. J Hosp Infect 2012;82:85–93.
41. Palmore TN, Henderson DK. Intensifying the focus of the contribution of the inanimate environment to healthcare-associated infections. Ann Intern Med Oct 20 2015;163:642–643.
42. Bloomfield S, Exner M, Flemming HC, Goroncy-Bermes P, Rutala W. Less-known or hidden reservoirs of infection and implications for adequate prevention strategies: where to look and what to look for. GMS Hyg Infect Control 2015;10:Doc04.
43. Kanamori H, Weber DJ, Rutala WA. Healthcare outbreaks associated with a water reservoir and infection prevention strategies. Clin Infect Dis 2016;62:1423–1435.
44. Kizny Gordon AE, Mathers AJ, Cheong EYL, Gottlieb T, Kotay S, Walker AS. The hospital water environment as a reservoir for carbapenem- resistant organisms causing hospital-acquired infections—a systematic review of the literature. Clin Infect Dis 2017;64:1435–1444.
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