Research Topic: intestinal barrier function

The Effect of 2′-Fucosyllactose on Gut Health in Aged Mice

This research shows that 2′-fucosyllactose, a natural compound found in breast milk, can significantly improve gut health in older mice. The treatment strengthened the intestinal barrier, reduced harmful inflammation, and increased beneficial bacteria populations. These findings suggest that 2′-FL could be developed as a food supplement to help older people maintain better digestive and immune health.

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Prebiotics and Probiotics Supplementation in Pigs as a Model for Human Gut Health and Disease

Pigs are excellent models for studying human digestive health because their gut anatomy and function closely resemble humans. This review shows that prebiotics (special food compounds) and probiotics (beneficial bacteria) can improve gut health and strengthen the intestinal barrier in both healthy pigs and those with infections. These findings suggest that similar treatments might help prevent and treat digestive diseases in humans.

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Interventions targeting the gut-liver axis: A potential treatment strategy for metabolic dysfunction-associated steatotic liver disease

Your gut bacteria play a crucial role in liver health. When harmful bacteria build up in your gut, they can trigger liver inflammation and fat accumulation, leading to fatty liver disease. Researchers found that simple lifestyle changes like intermittent fasting, eating certain foods that feed good bacteria, and maintaining a healthy diet can restore healthy gut bacteria, strengthen your intestinal barrier, and reduce liver disease. This gut-focused approach could offer new ways to prevent and treat fatty liver disease beyond current treatments.

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A novel synbiotic formulation prevents calcium oxalate stones by restoring gut microbiota homeostasis

This study tested a special probiotic and prebiotic combination to prevent kidney stones caused by too much oxalate in the body. The formula containing three beneficial bacteria strains and a plant-based fiber worked better than any single component alone. The treatment restored healthy gut bacteria, protected the intestinal lining, and reduced the amount of oxalate reaching the kidneys, effectively preventing stone formation in animal models.

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