Growing evidence suggests a potential role of intestinal microbiota in irritable bowel syndrome (IBS) pathophysiology and symptom generation. Earlier studies based on classic microbiologic techniques hypothesized the presence of qualitative changes in intestinal microbiota in IBS patients. Recently, studies with molecular techniques have provided evidence of significant changes in microbial profiles in IBS and that the composition may be correlated with certain symptoms reported by patients. Although these studies are far from being exhaustive and conclusive they provide promising results that deserve further investigation. In addition, initial evidence indicated the presence of increased amounts of bacteria in the upper small intestine of IBS patients, a condition know as small intestinal bacterial overgrowth. However, the results of these studies have provided contradictory results suggesting that this area requires further work. These qualitative and quantitative changes in intestinal microbiota may induce different effects on the intestinal mucosa including mucosal barrier defects and immune activation which may contribute to symptom generation. Studies in IBS patients have attempted to target changes in intestinal microflora with different therapeutic approaches, such as the use of prebiotics, probiotics, synbiotics, and nonabsorbable and systemic antibiotics. Overall, the results obtained in probiotic clinical trials suggest some beneficial effect over placebo in the relief of IBS symptoms. However, these results, although encouraging, should be confirmed in larger well-designed, placebo-controlled studies. A number of open questions remain to be addressed, including the dose, type, and time of administration of probiotics.
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http://dx.doi.org/10.1097/MCG.0b013e31817da129 | DOI Listing |
Semin Immunopathol
January 2025
Department of Medicine II, Medical Faculty Mannheim, University Medical Center Mannheim, Heidelberg University, Mannheim, Germany.
The brain-gut axis constitutes the basis for the bidirectional communication between the central nervous system and the gastrointestinal tract driven by neural, hormonal, metabolic, immunological, and microbial signals. Alterations in the gut microbiome composition as observed in inflammatory bowel diseases can modulate brain function and emerging empirical evidence has indicated that interactions among the brain-gut microbiome-axis seem to play a significant role in the pathogenesis of both inflammatory bowel diseases and psychiatric disorders and their comorbidity. Yet, the immunological and molecular mechanisms underlying the co-occurrence of inflammatory bowel diseases and psychological symptoms are still poorly understood.
View Article and Find Full Text PDFInn Med (Heidelb)
January 2025
Lehrstuhl für Ernährung und Immunologie, School of Life Sciences, Technische Universität München, Gregor-Mendel-Straße 2, 85354, Freising, Deutschland.
Background: The intestinal microbiota comprises all living microorganisms in the gastrointestinal tract and is crucial for its function. Clinical observations and laboratory findings confirm a central role of the microbiota in chronic inflammatory bowel diseases (IBD). However, many mechanistic details remain unclear.
View Article and Find Full Text PDFGut
January 2025
Microbiome-Host Interactions, INSERM U1306, CNRS UMR6047, Institut Pasteur, Université Paris Cité, Paris, France
Background: Non-absorbed dietary emulsifiers, including carboxymethylcellulose (CMC), directly disturb intestinal microbiota, thereby promoting chronic intestinal inflammation in mice. A randomised controlled-feeding study (Functional Research on Emulsifiers in Humans, FRESH) found that CMC also detrimentally impacts intestinal microbiota in some, but not all, healthy individuals.
Objectives: This study aimed to establish an approach for predicting an individual's sensitivity to dietary emulsifiers via their baseline microbiota.
PLoS Pathog
January 2025
Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, United Kingdom.
Whipworms (Trichuris spp) are ubiquitous parasites of humans and domestic and wild mammals that cause chronic disease, considerably impacting human and animal health. Egg hatching is a critical phase in the whipworm life cycle that marks the initiation of infection, with newly hatched larvae rapidly migrating to and invading host intestinal epithelial cells. Hatching is triggered by the host microbiota; however, the physical and chemical interactions between bacteria and whipworm eggs, as well as the bacterial and larval responses that result in the disintegration of the polar plug and larval eclosion, are not completely understood.
View Article and Find Full Text PDFBackgrounds: Abuse of feed supplement can cause oxidative stress and inflammatory responses in Gallus gallus. Synbiotics are composed of prebiotics and probiotics and it possess huge application potentials in the treatment of animal diseases.
Methods: This study examined the effect of d-tagatose on the probiotic properties of L.
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