The importance of airway and lung microbiome in the critically ill
Ignacio Martin-Loeches1,2,3, Robert Dickson4,5,6, Antoni Torres7
1Department of Intensive Care Medicine, Multidisciplinary Intensive Care Research Organization (MICRO), St James Hospital, Dublin 8., Ireland. drmartinloeches@gmail.com.
Abstract:
During critical illness, there are a multitude of forces such as antibiotic use, mechanical ventilation, diet changes and inflammatory responses that could bring the microbiome out of balance. This so-called dysbiosis of the microbiome seems to be involved in immunological responses and may influence outcomes even in individuals who are not as vulnerable as a critically ill ICU population. It is therefore probable that dysbiosis of the microbiome is a consequence of critical illness and may, subsequently, shape an inadequate response to these circumstances.Bronchoscopic studies have revealed that the carina represents the densest site of bacterial DNA along healthy airways, with a tapering density with further bifurcations. This likely reflects the influence of micro-aspiration as the primary route of microbial immigration in healthy adults. Though bacterial DNA density grows extremely sparse at smaller airways, bacterial signal is still consistently detectable in bronchoalveolar lavage fluid, likely reflecting the fact that lavage via a wedged bronchoscope samples an enormous surface area of small airways and alveoli. The dogma of lung sterility also violated numerous observations that long predated culture-independent microbiology.The body's resident microbial consortia (gut and/or respiratory microbiota) affect normal host inflammatory and immune response mechanisms. Disruptions in these host-pathogen interactions have been associated with infection and altered innate immunity.In this narrative review, we will focus on the rationale and current evidence for a pathogenic role of the lung microbiome in the exacerbation of complications of critical illness, such as acute respiratory distress syndrome and ventilator-associated pneumonia.
Insights
Critical illness disrupts the lung microbiome, leading to dysbiosis. This imbalance impacts immune responses and may worsen conditions like acute respiratory distress syndrome and ventilator-associated pneumonia.
Area of Science:
- Microbiology
- Critical Care Medicine
- Immunology
Background:
- Critical illness involves factors like antibiotics and mechanical ventilation that disrupt the microbiome.
- Microbiome dysbiosis is linked to immune responses and can affect patient outcomes.
- The lung microbiome, previously thought sterile, is detectable and influenced by micro-aspiration.
Purpose of the Study:
- To review the evidence for the lung microbiome's role in critical illness complications.
- To explore the pathogenic potential of lung dysbiosis in intensive care unit (ICU) patients.
Main Methods:
- Narrative review of existing literature.
- Focus on bronchoscopic findings and culture-independent microbiology.
- Analysis of host-pathogen interactions in the respiratory tract.
Main Results:
- Critical illness significantly alters the lung microbiome composition.
- Dysbiosis is associated with altered inflammatory and immune responses.
- Evidence suggests a pathogenic role for the lung microbiome in complications.
Conclusions:
- Lung microbiome dysbiosis is a consequence of critical illness.
- This dysbiosis can exacerbate conditions such as acute respiratory distress syndrome (ARDS) and ventilator-associated pneumonia (VAP).
- Understanding the lung microbiome is crucial for managing critical illness complications.
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