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Published on: May 2, 2018
Gut Microbiota and Sinusoidal Vasoregulation in MASLD: A Portal Perspective
Gyorgy Baffy1,2, Piero Portincasa3
1Section of Gastroenterology, Department of Medicine, VA Boston Healthcare System, Boston, MA 02130, USA.
Abstract:
Metabolic dysfunction-associated steatotic liver disease (MASLD) is a common condition with heterogeneous outcomes difficult to predict at the individual level. Feared complications of advanced MASLD are linked to clinically significant portal hypertension and are initiated by functional and mechanical changes in the unique sinusoidal capillary network of the liver. Early sinusoidal vasoregulatory changes in MASLD lead to increased intrahepatic vascular resistance and represent the beginning of portal hypertension. In addition, the composition and function of gut microbiota in MASLD are distinctly different from the healthy state, and multiple lines of evidence demonstrate the association of dysbiosis with these vasoregulatory changes. The gut microbiota is involved in the biotransformation of nutrients, production of de novo metabolites, release of microbial structural components, and impairment of the intestinal barrier with impact on innate immune responses, metabolism, inflammation, fibrosis, and vasoregulation in the liver and beyond. The gut-liver axis is a conceptual framework in which portal circulation is the primary connection between gut microbiota and the liver. Accordingly, biochemical and hemodynamic attributes of portal circulation may hold the key to better understanding and predicting disease progression in MASLD. However, many specific details remain hidden due to limited access to the portal circulation, indicating a major unmet need for the development of innovative diagnostic tools to analyze portal metabolites and explore their effect on health and disease. We also need to safely and reliably monitor portal hemodynamics with the goal of providing preventive and curative interventions in all stages of MASLD. Here, we review recent advances that link portal metabolomics to altered sinusoidal vasoregulation and may allow for new insights into the development of portal hypertension in MASLD.
Insights
Metabolic dysfunction-associated steatotic liver disease (MASLD) progression is linked to gut microbiota changes and portal hypertension. Understanding portal circulation may unlock new diagnostic tools for MASLD complications.
Area of Science:
- Hepatology
- Gastroenterology
- Metabolic Disorders
Background:
- Metabolic dysfunction-associated steatotic liver disease (MASLD) presents heterogeneous outcomes, with advanced stages risking portal hypertension.
- Early sinusoidal vasoregulatory changes and increased intrahepatic resistance mark the onset of portal hypertension in MASLD.
- Gut microbiota dysbiosis is associated with vasoregulatory alterations in MASLD, impacting liver health via the gut-liver axis.
Purpose of the Study:
- To review recent advances linking portal metabolomics to sinusoidal vasoregulation in MASLD.
- To explore the role of the gut-liver axis and portal circulation in MASLD progression.
- To highlight the need for innovative diagnostic tools for portal metabolites and hemodynamics.
Main Methods:
- Review of current literature on MASLD, gut microbiota, portal hypertension, and metabolomics.
- Analysis of the gut-liver axis and its influence on hepatic sinusoidal function.
- Discussion of the importance of portal circulation in disease pathogenesis.
Main Results:
- Gut microbiota composition and function are altered in MASLD, contributing to vasoregulatory changes.
- The gut-liver axis plays a critical role in nutrient biotransformation, immune responses, and inflammation in MASLD.
- Portal circulation is a key connection influencing liver metabolism, fibrosis, and vasoregulation.
Conclusions:
- Portal metabolomics and hemodynamics are crucial for understanding MASLD progression and predicting portal hypertension.
- Innovative diagnostic tools for portal circulation are needed for effective MASLD management.
- Targeting the gut-liver axis and portal hemodynamics may offer new therapeutic strategies for MASLD.
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