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Pulmonary infections in critical/intensive care - rapid diagnosis and optimizing antimicrobial usage
1Division of Pulmonary Sciences and Critical Care Medicine, Department of Medicine, Denver Health Medical Center, School of Medicine, University of Colorado, Denver, Colorado, USA.
Purpose Of Review:
Diagnosis of pulmonary infection, including hospital-acquired pneumonia (HAP) and ventilator-associated pneumonia (VAP) in the critically ill patient remains a common and therapeutically challenging diagnosis with significant attributable morbidity, mortality, and cost. Current clinical approaches to surveillance, early detection and, conventional culture-based microbiology are inadequate for optimal targeted antibiotic treatment and stewardship. Efforts to enhance diagnosis of HAP and VAP and the impact of these novel approaches on rational antimicrobial selection and stewardship are the focus of recent studies reviewed here.
Recent Findings:
Recent consensus guidelines for diagnosis and management of HAP and VAP are relatively silent on the potential role of novel rapid microbiological techniques and reply heavily on conventional culture strategies of noninvasively obtained (including endotracheal aspirate samples). Novel rapid microbiological diagnostics, including nucleic acid amplification, mass spectrometry, and fluorescence microscopy-based technologies are promising approaches for the future. Exhaled breath biomarkers, including measurement of VOC represent a future approach.
Summary:
Further validation of novel diagnostic technology platforms will be required to evaluate their utility for enhancing diagnosis and guiding treatment of pulmonary infections in the critically ill. However, the integration of novel diagnostics for rapid microbial identification, resistance phenotyping, and antibiotic sensitivity testing into usual care practice could significantly transform the care of patients and potentially inform improved targeted antimicrobial selection, de-escalation, and stewardship.
Insights
Diagnosing hospital-acquired pneumonia (HAP) and ventilator-associated pneumonia (VAP) in critically ill patients is challenging. Novel rapid diagnostics show promise for improving treatment and antimicrobial stewardship.
Area of Science:
- Critical care medicine
- Infectious diseases
- Microbiology
Background:
- Diagnosing pulmonary infections like HAP and VAP in critically ill patients presents significant challenges.
- Current methods relying on conventional culture-based microbiology are insufficient for optimal antibiotic selection and stewardship.
- These infections contribute to substantial morbidity, mortality, and healthcare costs.
Purpose of the Study:
- To review recent studies focusing on enhanced diagnostic approaches for HAP and VAP.
- To evaluate the impact of novel diagnostic strategies on antimicrobial selection and stewardship.
- To address the limitations of current diagnostic methods in critically ill patients.
Main Methods:
- Review of recent literature and consensus guidelines on HAP and VAP diagnosis.
- Analysis of novel rapid microbiological diagnostic technologies.
- Consideration of exhaled breath biomarkers, including volatile organic compounds (VOCs).
Main Results:
- Current guidelines predominantly rely on conventional culture methods, often overlooking novel rapid diagnostics.
- Emerging technologies like nucleic acid amplification, mass spectrometry, and fluorescence microscopy offer promising alternatives.
- Exhaled breath biomarkers represent a potential future diagnostic avenue.
Conclusions:
- Further validation of novel diagnostic platforms is essential for clinical integration.
- Implementing rapid diagnostics can significantly improve patient care by enabling targeted antimicrobial selection, de-escalation, and stewardship.
- These advancements have the potential to transform the management of pulmonary infections in the critically ill.
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