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Leaky Gut and Gut-Liver Axis in Liver Cirrhosis: Clinical Studies Update
1Department of Gastroenterology, Nara Medical University, Kashihara, Japan.
Abstract:
Portal blood flows into the liver containing the gut microbiome and its products such as endotoxin and bacterial DNA. The cirrhotic liver acts and detoxifies as the initial site of microbial products. In so-called "leaky gut," the increased intestinal permeability for bacteria and their products constitutes an important pathogenetic factor for major complications in patients with liver cirrhosis. Prolonged gastric and small intestinal transit may induce intestinal bacterial overgrowth, a condition in which colonic bacteria translocate into the small gut. Cirrhotic patients further show gut dysbiosis characterized by an overgrowth of potentially pathogenic bacteria and a decrease in autochthonous nonpathogenic bacteria. Pathological bacterial translocation (BT) is a contributing factor in the development of various severe complications. Bile acids (BAs) undergo extensive enterohepatic circulation and play important roles in the gut-liver axis. BT-induced inflammation prevents synthesis of BAs in the liver through inhibition of BA-synthesizing enzyme CYP7A1. A lower abundance of 7α-dehydroxylating gut bacteria leads to decreased conversion of primary to secondary BAs. Decreases in total and secondary BAs may play an important role in the gut dysbiosis characterized by a proinflammatory and toxic gut microbiome inducing BT and endotoxemia, as addressed in my previous reviews. Selective intestinal decontamination by the use of various antimicrobial drugs for management of complications has a long history. Lactobacillus GG decreasing endotoxemia is reported to improve the microbiome with beneficial changes in amino acid, vitamin and secondary BA metabolism. Current approaches for hepatic encephalopathy are the use of nonabsorbable antibiotics and disaccharides. Probiotics may become an additional therapeutic option for advanced liver cirrhosis.
Insights
In liver cirrhosis, a "leaky gut" allows bacterial products to enter the liver, causing complications. Probiotics show promise in improving gut microbiome health and potentially treating advanced liver disease.
Area of Science:
- Gastroenterology
- Hepatology
- Microbiology
Background:
- Liver cirrhosis is associated with increased intestinal permeability, leading to bacterial translocation.
- Gut dysbiosis and bacterial products like endotoxin contribute to cirrhosis complications.
- Bile acid metabolism is disrupted in cirrhosis due to gut dysbiosis and inflammation.
Purpose of the Study:
- To review the role of gut dysbiosis and bacterial translocation in liver cirrhosis.
- To explore the impact of bacterial translocation on bile acid metabolism.
- To discuss potential therapeutic strategies targeting the gut microbiome.
Main Methods:
- Review of existing literature on gut microbiome, bacterial translocation, and liver cirrhosis.
- Analysis of the interplay between gut-liver axis, bile acids, and inflammation.
- Discussion of current and emerging therapeutic interventions.
Main Results:
- Increased intestinal permeability and bacterial translocation are key pathogenetic factors in cirrhosis complications.
- Bacterial translocation-induced inflammation impairs bile acid synthesis and alters bile acid profiles.
- Gut dysbiosis contributes to a proinflammatory microbiome, endotoxemia, and hepatic encephalopathy.
Conclusions:
- Targeting the gut microbiome, including the use of probiotics like Lactobacillus GG, may offer therapeutic benefits for liver cirrhosis.
- Restoring gut barrier function and modulating the microbiome are crucial for managing cirrhosis complications.
- Further research into probiotics and selective intestinal decontamination is warranted for advanced liver disease.
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