Related Experiment Video
Updated: May 21, 2025

Assessment of Gut Barrier Integrity in Mice Using Fluorescein-Isothiocyanate-Labeled Dextran
Published on: November 18, 2022
Gut integrity in intensive care: alterations in host permeability and the microbiome as potential therapeutic targets
Takehiko Oami1,2, Takashi Shimazui1,2, Tetsuya Yumoto1,3
1Department of Surgery and Emory Critical Care Center, Emory University School of Medicine, 101 Woodruff Circle, Suite WMB 5105, Atlanta, GA, 30322, USA.
Background:
The gut has long been hypothesized to be the "motor" of critical illness, propagating inflammation and playing a key role in multiple organ dysfunction. However, the exact mechanisms through which impaired gut integrity potentially contribute to worsened clinical outcome remain to be elucidated. Critical elements of gut dysregulation including intestinal hyperpermeability and a perturbed microbiome are now recognized as potential therapeutic targets in critical care.
Main Body:
The gut is a finely tuned ecosystem comprising ~ 40 trillion microorganisms, a single cell layer intestinal epithelia that separates the host from the microbiome and its products, and the mucosal immune system that actively communicates in a bidirectional manner. Under basal conditions, these elements cooperate to maintain a finely balanced homeostasis benefitting both the host and its internal microbial community. Tight junctions between adjacent epithelial cells selectively transport essential molecules while preventing translocation of pathogens. However, critical illness disrupts gut barrier function leading to increased gut permeability, epithelial apoptosis, and immune activation. This disruption is further exacerbated by a shift in the microbiome toward a "pathobiome" dominated by pathogenic microbes with increased expression of virulence factors, which intensifies systemic inflammation and accelerates organ dysfunction. Research has highlighted several potential therapeutic targets to restore gut integrity in the host, including the regulation of epithelial cell function, modulation of tight junction proteins, and inhibition of epithelial apoptosis. Additionally, microbiome-targeted therapies, such as prebiotics, probiotics, fecal microbiota transplantation, and selective decontamination of the digestive tract have also been extensively investigated to promote restoration of gut homeostasis in critically ill patients. Future research is needed to validate the potential efficacy of these interventions in clinical settings and to determine if the gut can be targeted in an individualized fashion.
Conclusion:
Increased gut permeability and a disrupted microbiome are common in critical illness, potentially driving dysregulated systemic inflammation and organ dysfunction. Therapeutic strategies to modulate gut permeability and restore the composition of microbiome hold promise as novel treatments for critically ill patients.
Insights
Critical illness impairs gut barrier function, increasing permeability and altering the microbiome. Restoring gut integrity and microbial balance offers promising therapeutic strategies for critically ill patients.
Area of Science:
- Critical care medicine
- Gastroenterology
- Microbiology
Background:
- The gut is hypothesized as a key driver of critical illness, influencing systemic inflammation and multiple organ dysfunction.
- Impaired gut integrity, characterized by hyperpermeability and dysbiosis, is increasingly recognized in critical illness.
- Understanding the mechanisms linking gut dysfunction to clinical outcomes is crucial for developing targeted therapies.
Purpose of the Study:
- To elucidate the mechanisms by which impaired gut integrity contributes to worsened clinical outcomes in critical illness.
- To identify potential therapeutic targets for restoring gut homeostasis in critically ill patients.
Main Methods:
- Review of the gut ecosystem, including microorganisms, epithelial barrier, and mucosal immune system.
- Analysis of how critical illness disrupts gut barrier function, leading to increased permeability and immune activation.
- Exploration of therapeutic strategies targeting epithelial integrity and microbiome modulation.
Main Results:
- Critical illness disrupts the gut barrier, increasing intestinal permeability, epithelial apoptosis, and immune activation.
- The gut microbiome shifts towards a pathobiome, exacerbating systemic inflammation and organ dysfunction.
- Potential therapeutic targets include regulating epithelial cell function, tight junctions, and apoptosis, alongside microbiome-targeted therapies.
Conclusions:
- Increased gut permeability and microbiome disruption are common in critical illness, driving systemic inflammation and organ dysfunction.
- Therapeutic strategies aimed at modulating gut permeability and restoring microbiome composition show promise for critically ill patients.
More Related Videos
Related Concept Videos
Anatomy of the Intestines
Small Intestines
The small intestine is an ~7 meter-long tube with an inner diameter of just 2.5 cm. Since most nutrients are absorbed here, the inner lining of the...
Inflammatory Bowel Disease V: Surgical Management
Here are some common surgical interventions for IBD:
Chronic Bowel Disorders: Introduction
Irritable Bowel Syndrome (IBS) is a common disorder affecting the gastrointestinal tract. The distinctive feature is recurrent abdominal pain associated with altered bowel movements, manifesting as constipation, diarrhea, or fluctuating between both. The...
Physiology of Enteric Nervous System and Gut Health

