A multidisciplinary working group developed 15 recommendation statements to provide practical guidance for optimizing surgical antibiotic prophylaxis in the era of antimicrobial resistance.
How should surgical antibiotic prophylaxis be optimized in the era of antimicrobial resistance?
This position paper provides 15 practical recommendations for optimizing surgical antibiotic prophylaxis to mitigate the risks associated with multidrug-resistant organisms.
Background: Although surgical antibiotic prophylaxis (SAP) is considered a standard of care for preventing surgical site infections, the rising incidence of antimicrobial resistance (AMR) increases the likelihood of infections caused by multidrug-resistant organisms (MDROs), which may be associated with worse surgical outcomes. Methods: A multidisciplinary working group was convened by the Italian Multidisciplinary Society for the Prevention of Healthcare-Associated Infections (SIMPIOS) to define key measures for optimizing SAP in the era of AMR. Selecting the most appropriate SAP in patients colonized with MDROs is a complex decision that cannot be generalized, as it depends on both host factors and the specific surgical procedure. At present, there is limited evidence of SAP in these patients. Results: This position paper aims to provide practical guidance for optimizing SAP in the context of an AMR era. It is structured in three sections: (1) core principles of surgical antibiotic prophylaxis; (2) the role of screening, decolonization, and targeted prophylaxis for MDROs; and (3) barriers to changing surgeons’ prescribing behaviours. Conclusions: The working group developed 15 recommendation statements based on scientific evidence.
Sartelli et al. (Sat,) conducted a review in Surgical site infections and antimicrobial resistance. Surgical antibiotic prophylaxis was evaluated on Development of recommendation statements for optimizing surgical antibiotic prophylaxis. A multidisciplinary working group developed 15 recommendation statements to provide practical guidance for optimizing surgical antibiotic prophylaxis in the era of antimicrobial resistance.