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10.1093/jacamr/dlaa049

http://scihub22266oqcxt.onion/10.1093/jacamr/dlaa049
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suck abstract from ncbi


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pmid34192248      JAC+Antimicrob+Resist 2020 ; 2 (3): dlaa049
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  • PRO: The COVID-19 pandemic will result in increased antimicrobial resistance rates #MMPMID34192248
  • Clancy CJ; Buehrle DJ; Nguyen MH
  • JAC Antimicrob Resist 2020[Sep]; 2 (3): dlaa049 PMID34192248show ga
  • We argue that the COVID-19 pandemic will result in increased antimicrobial resistance (AMR). Broad-spectrum antibiotic use is common among hospitalized COVID-19 patients and in excess of reported secondary infection rates, suggesting unnecessary prescribing. Selection pressure is likely to be particularly intense in COVID-19 epicentres and within non-epicentre hospital units dedicated to COVID-19 care. Risk factors that increase the likelihood of hospitalization or poor outcomes among COVID-19 patients, such as advanced age, nursing home residence, debilitation, diabetes and cardiopulmonary or other underlying systemic diseases, also predispose to AMR infections. Worry for AMR emergence is heightened since first-wave COVID-19 epicentres were also AMR epicentres. Disruptive direct and indirect effects of COVID-19 globally on economic systems, governance and public health expenditure and infrastructure may fuel AMR spread. We anticipate that the impact of COVID-19 on AMR will vary between epicentres and non-epicentres, by geographic region, hospital to hospital within regions and within specific hospital units.
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