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Updated: Mar 1, 2026

Murine Oropharyngeal Aspiration Model of Ventilator-associated and Hospital-acquired Bacterial Pneumonia
Published on: June 28, 2018
Ventilator-Associated Pneumonia: The Role of Emerging Diagnostic Technologies
Marin H Kollef1, Carey-Ann D Burnham2
1Division of Pulmonary and Critical Care Medicine, Washington University School of Medicine, St. Louis, Missouri.
Abstract:
Antibiotic resistance has emerged as a key determinant of outcome in patients with serious infections along with the virulence of the underlying pathogen. Within the intensive care unit (ICU) setting, ventilator-associated pneumonia (VAP) is a common nosocomial infection that is frequently caused by multidrug-resistant bacteria. Antimicrobial resistance is a growing challenge in the care of critically ill patients. Escalating rates of antibiotic resistance add substantially to the morbidity, mortality, and cost related to infection in the ICU. Both gram-positive organisms, such as methicillin-resistant Staphylococcus aureus and vancomycin-intermediate S. aureus, and gram-negative bacteria, including Pseudomonas aeruginosa, Acinetobacter species, carbapenem-resistant Enterobacteriaceae, such as the Klebsiella pneumoniae carbapenemase-producing bacteria, and extended spectrum β-lactamase organisms, have contributed to the escalating rates of resistance seen in VAP and other nosocomial infections. The rising rates of antimicrobial resistance have led to the routine empiric administration of broad-spectrum antibiotics even when bacterial infection is not documented. Moreover, there are several new broader-spectrum antibiotics that have recently become available and others scheduled for approval in the near future. The challenge to ICU clinicians is how to most effectively utilize these agents to maximize patient benefits while minimizing further emergence of resistance. Use of rapid diagnostics may hold the key for achieving this important balance. There is an urgent need for integrating the administration of new and existing antibiotics with the emerging rapid diagnostic technologies in a way that is both cost-effective and sustainable for the long run.
Insights
Antibiotic resistance in intensive care units (ICUs) increases patient risk and healthcare costs. Integrating rapid diagnostics with new antibiotics is crucial for effective treatment and minimizing further resistance.
Area of Science:
- Critical Care Medicine
- Infectious Diseases
- Microbiology
Background:
- Antibiotic resistance is a major factor influencing patient outcomes in serious infections.
- Ventilator-associated pneumonia (VAP) in ICUs is often caused by multidrug-resistant bacteria, escalating morbidity, mortality, and costs.
- Rising antimicrobial resistance necessitates broad-spectrum antibiotic use, even without documented infection.
Purpose of the Study:
- To address the challenge of effectively utilizing new and existing antibiotics in critically ill patients.
- To explore strategies for balancing patient benefit with the minimization of further antibiotic resistance.
- To highlight the role of rapid diagnostics in managing antimicrobial resistance in the ICU.
Main Methods:
- Review of current literature on antibiotic resistance in VAP and ICU settings.
- Analysis of the impact of multidrug-resistant organisms on patient care.
- Discussion of the potential of rapid diagnostic technologies in antimicrobial stewardship.
Main Results:
- Escalating antibiotic resistance, driven by various gram-positive and gram-negative pathogens, complicates VAP treatment.
- The availability of new broad-spectrum antibiotics presents both opportunities and challenges for clinicians.
- Rapid diagnostics offer a promising approach to optimize antibiotic use and combat resistance.
Conclusions:
- Effective utilization of new and existing antibiotics alongside rapid diagnostics is essential for improving patient outcomes in the ICU.
- Integrating diagnostic technologies with antimicrobial administration is vital for cost-effective and sustainable resistance management.
- There is an urgent need for a balanced approach to antibiotic therapy in ICUs to combat the growing threat of antimicrobial resistance.
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