The Microbial Genetics of Antibiotic Cycling
- 2 January 2000
- journal article
- review article
- Published by Cambridge University Press (CUP) in Infection Control & Hospital Epidemiology
- Vol. 21 (S1) , S22-S31
- https://doi.org/10.1086/503170
Abstract
Cycling of currently available antibiotics to reduce resistance is an attractive concept. For cycling strategies to be successful, their implementation must have a demonstrable impact on the prevalence of resistance determinants already dispersed throughout the hospital and associated healthcare facilities. While antibiotic use in hospitals clearly constitutes a stimulus for the emergence of resistance, it is by no means the only important factor. The incorporation of resistance determinants into potentially stable genetic structures, including bacteriophages, plasmids, transposons, and the more newly discovered movable elements termedintegronsandgene cassettes,forces some degree of skepticism about the potential for such strategies in institutions where resistance determinants are already prevalent. In particular, the expanding role of integrons may pose an ultimate threat to formulary manipulations such as cycling. Despite these concerns, the crisis posed by antimicrobial resistance warrants investigation of any strategy with the potential for reducing the prevalence of resistance. Over the next decade, new studies with carefully designed outcomes should determine the utility of antibiotic cycling as one control measure for nosocomial resistance.Keywords
This publication has 75 references indexed in Scilit:
- Antimicrobial Cycling: Lessons Learned From the Aminoglycoside ExperienceInfection Control & Hospital Epidemiology, 2000
- Quinolone-ResistantCampylobacter jejuniInfections in Minnesota, 1992–1998New England Journal of Medicine, 1999
- Intestinal colonization of a human subject by vancomycin-resistant Enterococcus faeciumClinical Microbiology & Infection, 1999
- Antibiotic‐Selective EnvironmentsClinical Infectious Diseases, 1998
- Ceftazidime-Resistant Klebsiella pneumoniae and Escherichia coli Bloodstream Infection: A Case-Control and Molecular Epidemiologic InvestigationThe Journal of Infectious Diseases, 1996
- Molecular Genetics of Resistance to Both Ceftazidime and β-Lactam-β-Lactamase Inhibitor Combinations in Klebsiella pneumoniae and In Vivo Response to β-Lactam TherapyThe Journal of Infectious Diseases, 1996
- Clinical and molecular epidemiology of acinetobacter infections sensitive only to polymyxin B and sulbactamThe Lancet, 1994
- Origin and evolution of DNA associated with resistance to methicillin in staphylococciTrends in Microbiology, 1994
- Movable genetic elements and antibiotic resistance in enterococciEuropean Journal of Clinical Microbiology & Infectious Diseases, 1990
- Antibiotic-Associated Pseudomembranous Colitis Due to Toxin-Producing ClostridiaNew England Journal of Medicine, 1978