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Published on: June 24, 2019
Gut-origin sepsis in the critically ill patient: pathophysiology and treatment
Stelios F Assimakopoulos1, Christos Triantos2, Konstantinos Thomopoulos2
1Department of Internal Medicine, Division of Infectious Diseases, University of Patras Medical School, 26504, Patras, Greece. sassim@upatras.gr.
Introduction:
Gut permeability is increased in critically ill patients, and associated with the development of the systemic inflammatory response syndrome and multiple organ dysfunction syndrome (MODS). The pathogenetic link(s) and potential therapies are an area of intense research over the last decades.
Methods:
We thoroughly reviewed the literature on gut-origin sepsis and MODS in critically ill patients, with emphasis on the implicated pathophysiological mechanisms and therapeutic interventions.
Findings:
Intestinal barrier failure leading to systemic bacterial translocation associated with MODS was the predominant pathophysiological theory for several years. However, clinical studies with critically ill patients failed to provide the evidence of systemic spread of gut-derived bacteria and/or their products as a cause of MODS. Newer experimental data highlight the role of the mesenteric lymph as a carrier of gut-derived danger-associated molecular patterns (DAMPs) to the lung and the systemic circulation. These substances are recognized by pattern recognition receptor-bearing cells in diverse tissues and promote proinflammatory pathways and the development MODS. Therefore, the gut becomes a pivotal proinflammatory organ, driving the systemic inflammatory response through DAMPs release in mesenteric lymph, without the need for systemic bacterial translocation.
Conclusions:
There is an emerging need for application of sensitive non-invasive and easily measured biomarkers of early intestinal injury (e.g., citrulline, intestinal fatty acid protein, and zonulin) in our everyday clinical practice, guiding the early pharmacological intervention in critically ill patients to restore or prevent intestinal injury and improve their outcomes.
Insights
Critically ill patients show increased gut permeability, potentially driving systemic inflammation via mesenteric lymph and danger-associated molecular patterns (DAMPs), not bacterial translocation. Early biomarkers are needed for intervention.
Area of Science:
- Critical care medicine
- Gastroenterology
- Immunology
Background:
- Critically ill patients exhibit heightened gut permeability, linked to systemic inflammatory response syndrome and multiple organ dysfunction syndrome (MODS).
- Pathophysiological mechanisms and therapeutic strategies for gut-origin sepsis and MODS remain active research areas.
Purpose of the Study:
- To review the literature on gut-origin sepsis and MODS in critically ill patients.
- To emphasize implicated pathophysiological mechanisms and therapeutic interventions.
Main Methods:
- Comprehensive literature review.
- Focus on gut-origin sepsis and MODS in critically ill patients.
- Emphasis on pathophysiological mechanisms and therapeutic interventions.
Main Results:
- The theory of intestinal barrier failure causing MODS via bacterial translocation is not consistently supported by clinical data.
- Emerging evidence suggests mesenteric lymph transports gut-derived danger-associated molecular patterns (DAMPs) to systemic circulation, promoting inflammation.
- The gut acts as a proinflammatory organ, driving MODS through DAMPs release via mesenteric lymph, independent of bacterial translocation.
Conclusions:
- Early detection of intestinal injury using biomarkers like citrulline, intestinal fatty acid protein, and zonulin is crucial.
- Non-invasive biomarkers can guide early pharmacological interventions in critically ill patients.
- Improving outcomes in critically ill patients necessitates preventing or restoring intestinal injury.
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