Reducing antimicrobial overuse through targeted therapy for patients with community-acquired pneumonia: a study

Abhishek Deshpande1,2, Ramara Walker3, Rebecca Schulte4

  • 1Center for Value-Based Care Research, Primary Care Institute, Cleveland Clinic, Cleveland, OH, USA. abhishekdp@gmail.com.

Trials
|September 16, 2023
PubMed
Abstract

Insights

Rapid diagnostic tests and pharmacist-led de-escalation can reduce extended-spectrum antibiotic use in community-acquired pneumonia (CAP) patients. This study evaluates these strategies to improve antimicrobial stewardship and patient outcomes.

Area of Science:

  • Infectious Diseases
  • Clinical Trials
  • Antimicrobial Stewardship

Background:

  • Community-acquired pneumonia (CAP) is a major cause of hospitalization and antibiotic use in the US.
  • Current diagnostic methods for CAP are slow and insensitive, leading to prolonged empiric antibiotic therapy.
  • This contributes to increased hospital stays and antimicrobial resistance.

Purpose of the Study:

  • To evaluate the effectiveness of rapid diagnostic testing and pharmacist-led de-escalation in reducing extended-spectrum antibiotic (ESA) use in CAP patients.
  • To assess the independent and combined effects of these interventions.
  • To improve antimicrobial stewardship, patient outcomes, and reduce healthcare costs.

Main Methods:

  • A pragmatic 2x2 factorial cluster-randomized controlled trial across 12 hospitals.
  • Over 12,000 adult CAP patients will be enrolled.
  • Interventions include routine rapid diagnostic testing and pharmacist-led de-escalation for stable patients with negative cultures.

Main Results:

  • The primary outcome is the duration of exposure to extended-spectrum antibiotic (ESA) therapy.
  • Secondary outcomes include viral detection, antiviral treatment, de-escalation rates, antibiotic duration, mortality, ICU transfer, C. difficile infections, AKI, costs, and length of stay.

Conclusions:

  • This study will determine if early etiological agent identification and de-escalation can safely reduce ESA use in CAP.
  • Successful findings could enhance antimicrobial stewardship and patient care.
  • Results may inform clinical guidelines for CAP management.

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