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The Use of Channel-Purge Storage for Gastrointestinal Endoscopes Reduces Microbial Contamination

Published online by Cambridge University Press:  03 June 2015

Philippe Saliou*
Affiliation:
Infection Control Unit, Brest Teaching Hospital, Brest, France
Franck Cholet
Affiliation:
Department of Gastrointestinal Endoscopy, Brest Teaching Hospital, Brest, France
Julien Jézéquel
Affiliation:
Department of Gastrointestinal Endoscopy, Brest Teaching Hospital, Brest, France
Michel Robaszkiewicz
Affiliation:
Department of Gastrointestinal Endoscopy, Brest Teaching Hospital, Brest, France Université de Bretagne Occidentale, Brest, France
Hervé Le Bars
Affiliation:
Department of Microbiology, Brest Teaching Hospital, Brest, France.
Raoul Baron
Affiliation:
Infection Control Unit, Brest Teaching Hospital, Brest, France
*
Address correspondence to Philippe Saliou, MD, Service d’hygiène hospitalière, CHRU Morvan, 2 avenue Foch, 29200 Brest, France (philippe.saliou@chu-brest.fr).

Abstract

Storage cabinets for heat-sensitive endoscopes (SCHEs) are designed to store gastrointestinal (GI) endoscopes in a clean, dry and well-ventilated cupboard to prevent microbiological proliferation. The use of SCHEs in a GI endoscopy unit has significally reduced the rate of contaminated endoscopes (13.0% vs 45.0%, P<.001).

Infect. Control Hosp. Epidemiol. 2015;36(9):1100–1102

Type
Concise Communications
Copyright
© 2015 by The Society for Healthcare Epidemiology of America. All rights reserved 

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References

1. Kimmery, MB, Burnett, DA, Carr-Locke, DL, et al. Transmission of infection by gastrointestinal endoscopy. Gastrointest Endosc 1993;39:885888.CrossRefGoogle Scholar
2. Epstein, L, Hunter, JC, Arwady, MA, et al. New Delhi metallo-β-lactamase-producing carbapenem-resistant Escherichia coli associated with exposure to duodenoscopes. JAMA 2014;312:14471455.CrossRefGoogle Scholar
3. Petersen, BT, Chennat, J, Cohen, J, et al. Multisociety guideline on reprocessing flexible GI endoscopes: 2011. Infect Control Hosp Epidemiol 2011;32:527537.Google Scholar
4. Muscarella, LF. Inconsistencies in endoscope-reprocessing and infection-control guidelines: the importance of endoscope drying. Am J Gastroenterol 2006;101:21472154.CrossRefGoogle ScholarPubMed
5. Pineau, L, Villard, E, Duc, DL, Marchetti, B. Endoscope drying/storage cabinet: interest and efficacy. J Hosp Infect 2008;68:5965.Google Scholar
6. Grandval, P, Hautefeuille, G, Marchetti, B, Pineau, L, Laugier, R. Evaluation of a storage cabinet for heat-sensitive endoscopes in a clinical setting. J Hosp Infect 2013;84:7176.Google Scholar
7. Direction générale de la santé (DGS). Circulaire DHOS/E 2/DGS/SD 5 C n° 2003-591 du 17 décembre 2003 relative aux modalités de traitement manuel pour la désinfection des endoscopes non autoclavables dans les lieux de soins. 2003.Google Scholar
8. Direction générale de la santé (DGS). CTINILS. Eléments d’assurance qualité en hygiène relatifs au contrôle microbiologique des endoscopes et à la traçabilité en endoscopie. 2007.Google Scholar
9. Saliou, P, Garlantézec, R, Baron, R, et al. [Microbiological investigation of endoscopes at Brest Hospital over a period from 2007 to 2009]. Pathol Biol (Paris) 2011;59:8893.CrossRefGoogle Scholar
10. Gillespie, EE, Kotsanas, D, Stuart, RL. Microbiological monitoring of endoscopes: 5-year review. J Gastroenterol Hepatol 2008;23:10691074.Google Scholar
11. Carbonne, A, Thiolet, JM, Fournier, S, et al. Control of a multi-hospital outbreak of KPC-producing Klebsiella pneumoniae type 2 in France, September to October 2009. Euro Surveill 2010;15:19734. pii.Google Scholar