Related Experiment Video
Updated: Feb 13, 2026

Murine Oropharyngeal Aspiration Model of Ventilator-associated and Hospital-acquired Bacterial Pneumonia
Published on: June 28, 2018
Resistance Trends and Treatment Options in Gram-Negative Ventilator-Associated Pneumonia
Nathaniel J Rhodes1,2, Caroline E Cruce3,4, J Nicholas O'Donnell5
1Department of Pharmacy Practice, Midwestern University, Chicago College of Pharmacy, 555 31st St., Downers Grove, IL, 60515, USA. nrhode@midwestern.edu.
Purpose Of Review:
Hospital-acquired and ventilator-associated pneumonia (VAP) are frequent causes of infection among critically ill patients. VAP is the most common hospital-acquired bacterial infection among mechanically ventilated patients. Unfortunately, many of the nosocomial Gram-negative bacteria that cause VAP are increasingly difficult to treat. Additionally, the evolution and dissemination of multi- and pan-drug resistant strains leave clinicians with few treatment options. VAP patients represent a dynamic population at risk for antibiotic failure and under-dosing due to altered antibiotic pharmacokinetic parameters. Since few antibiotic agents have been approved within the last 15 years, and no new agents specifically targeting VAP have been approved to date, it is anticipated that this problem will worsen. Given the public health crisis posed by resistant Gram-negative bacteria, it is essential to establish a firm understanding of the current epidemiology of VAP, the changing trends in Gram-negative resistance in VAP, and the current issues in drug development for Gram-negative bacteria that cause VAP.
Recent Findings:
Rapid identification technologies and phenotypic methods, new therapeutic strategies, and novel treatment paradigms have evolved in an attempt to improve treatment outcomes for VAP; however, clinical data supporting alternative treatment strategies and adjunctive therapies remain sparse. Importantly, new classes of antimicrobials, novel virulence factor inhibitors, and beta-lactam/beta-lactamase inhibitor combinations are currently in development. Conscientious stewardship of new and emerging therapeutic agents will be needed to ensure they remain effective well into the future.
Insights
Ventilator-associated pneumonia (VAP) is a growing public health crisis due to difficult-to-treat Gram-negative bacteria. New treatments are in development, but careful stewardship is crucial for long-term effectiveness.
Area of Science:
- Critical care medicine
- Infectious diseases
- Pharmacology
Background:
- Hospital-acquired and ventilator-associated pneumonia (VAP) are significant infections in critically ill patients.
- Nosocomial Gram-negative bacteria causing VAP are increasingly resistant to antibiotics, limiting treatment options.
- Few new antibiotics for VAP have been approved, exacerbating the public health crisis of antimicrobial resistance.
Purpose of the Study:
- To review the current epidemiology of VAP.
- To examine changing trends in Gram-negative resistance patterns in VAP.
- To discuss challenges in developing new drugs for Gram-negative bacteria causing VAP.
Main Methods:
- Literature review of recent studies on VAP epidemiology and treatment.
- Analysis of antimicrobial resistance trends in Gram-negative pathogens.
- Evaluation of current drug development pipelines for VAP.
Main Results:
- Despite advancements in rapid identification and new therapeutic strategies, clinical data supporting alternative VAP treatments are limited.
- New antimicrobial classes, virulence factor inhibitors, and beta-lactam/beta-lactamase inhibitors are under development.
- Effective stewardship of new and existing agents is essential to preserve their efficacy.
Conclusions:
- Understanding VAP epidemiology and resistance is critical.
- Novel therapeutic agents are emerging but require careful implementation.
- Antimicrobial stewardship is paramount for sustained treatment effectiveness against resistant Gram-negative VAP.
Related Concept Videos
Gram-negative Bacterial Protein Secretion Systems
Treatment Resistant Cancers
Mechanical Ventilation II: Invasive Ventilation
Negative-Pressure Ventilators
Negative-pressure ventilators create a vacuum around the chest or body to draw air into the lungs, simulating breathing. This method does not require an...
Mechanical Ventilation III: Noninvasive Ventilation
Noninvasive Positive-Pressure Ventilation...
Pneumonia I: Introduction
Risk Factors
Various factors influence the likelihood of developing pneumonia. Age plays a crucial role, with infants, children under two, and individuals over 65 at increased risk due to their...
Pneumonia II: Pathophysiology

