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Seasonal Patterns in Incidence and Antimicrobial Resistance of Common Bacterial Pathogens in Nursing Home Patients and Their Rooms

Dados Bibliográficos

ID22089971
AutoresMarco Cassone (Michigan Medicine, autor correspondente), Julia Mantey (0000-0001-6580-5836, Michigan Medicine), Kyle J Gontjes (0000-0001-8671-7990, University of Michigan), Bonnie J Lansing, Bonnie Lansing (Michigan Medicine), Kristen Gibson (0000-0002-5648-5209, Michigan Medicine), Kristen E Gibson (0000-0003-4071-7914), Joyce Wang (0000-0002-8674-1015, Michigan Medicine), Lona Mody (0000-0002-0260-8007, Michigan Medicine)
Ano2021
Volume9
Páginas671428-671428
Data de publicação2021-07-12
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoFrontiers in Public Health (JOURNAL)
Identificadores do periódicoISSN: 2296-2565 • E-ISSN: 2296-2565
EditoraFrontiers Media SA (PUBLISHER • CH)
DOI10.3389/fpubh.2021.671428
PMID34322470
OpenAlexW3181025594
IdiomaEN
Referências citadas18

Background: Colonization is the main precursor to infection, which may lead to adverse clinical outcomes among older adults in nursing homes (NHs). Understanding seasonal changes in the local burden of common bacterial pathogens is key to implementing appropriate and cost-effective infection prevention measures in this resource-constrained healthcare environment. It is thus surprising that seasonal trends in patient and environmental colonization with major bacterial pathogens are presently unknown in the expanding NH setting. Methods: We examined the seasonal incidence of four major pathogens among 640 nursing home patients and high-touch surfaces within their rooms over 2 years. In cases where a significant number of antimicrobial-resistant strains was found, incidence in antimicrobial-susceptible and antimicrobial-resistant isolates was compared, along with antibiotic use trends. Results: We observed spring peaks in the incidence of vancomycin-resistant enterococci (1.70 peak to trough ratio for both patient and environmental isolates) and methicillin-resistant Staphylococcus aureus (1.95 peak to trough ratio for patient isolates, 1.50 for environmental isolates). We also observed summer peaks in Klebsiella pneumoniae (1.83 and 1.82 peak to trough ratio for patient and environmental isolates, respectively), and ciprofloxacin-resistant Escherichia coli . Susceptible S. aureus and E. coli did not follow seasonal patterns. Conclusions: A meaningful seasonal pattern may be present in the NH setting for several significant pathogens, and especially antimicrobial-resistant ones. Whether such patterns are consistent across geographic areas and over longer periods of time should be a key focus of investigation, in order to better inform timing of surveillance and infection prevention efforts in this setting

Antibiotic resistance · Antibiotics · Antimicrobial · Bacteria · Biology · Ciprofloxacin · Colonization · Drug resistance · Escherichia coli · Infection control · Intensive care medicine · Klebsiella pneumoniae · Staphylococcus aureus · Veterinary medicine · Medicine · Nosocomial Infections in ICU · Pressure Ulcer Prevention and Management · Urinary Tract Infections Management · Microbiology

  • Transmission and Long-Term Colonization Patterns of Staphylococcus aureus in a Nursing Home

    Open Access•Martyna Kasela, Agnieszka Grzegorczyk et al.•International Journal of…•2020

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