Fructose malabsorption induces dysbiosis and increases anxiety in Human and animal models
Coursan, A.; Polve, D.; Leroi, A.-M.; Monnoye, M.; Roussin, L.; Tavolacci, M.-P.; Quillard Muraine, M.; Maccarone, M.; Guerin, O.; Houivet, E.; Guerin, C.; Brunel, V.; Bellenger, J.; De-Barros, J.-P. P.; Gourcerol, G.; Naudon, L.; Laye, S.; Madore, C.; Fioramonti, X.; Melchior, C.; Douard, V.
Show abstract
Background & AimsExcessive fructose intake is a growing public health concern, yet many individuals have a lower absorption capacity than the average intake, leading to widespread chronic fructose malabsorption. This results in intestinal fructose spillover, disrupting gut microbiota and triggering peripheral inflammation, which, along with neuroinflammation, plays a key role in mood disorders. This study investigates the connection between fructose malabsorption and mood disorders by examining gut microbiota changes in a human cohort and exploring their links with neuroinflammation in a GLUT5-KO mouse model. MethodsIn a human cohort, fructose malabsorption was assessed using a breath hydrogen test, while plasma lipopolysaccharide (LPS) levels and anxiety traits (measured using the State-Trait Anxiety Inventory, STAI) were analyzed. Gut microbiota composition was characterized through 16S rRNA sequencing, and dietary fructose intake was recorded. In the preclinical study, Glut5-KO mice, which lack intestinal fructose transport, were fed a 5% fructose diet for four weeks. Behavioral assays assessed anxiety- and depressive-like behaviors, while gut microbiota composition and microglia-associated gene expression were analyzed. ResultsAmong the recruited healthy volunteers, 60% exhibited fructose malabsorption, along with elevated plasma LPS levels, increased anxiety traits on the STAI, and distinct gut microbiota alterations, partially linked to fructose intake patterns. The average daily fructose intake was 30 g per individual, with significant variability in dietary sources. In the preclinical model, Glut5-KO mice on a 5% fructose diet displayed increased anxiety- and depressive-like behaviors, pronounced gut microbiota shifts, and altered expression of microglia-associated genes. ConclusionsThese findings highlight the complex interplay between dietary fructose, gut microbiota, and neuroinflammation in shaping mental health. Chronic fructose malabsorption may contribute to mood disorders through gut dysbiosis and microglia-dependent neuroinflammation, warranting further investigation into dietary interventions. HIGHLIGHTSO_LIFructose malabsorption is associated with anxiety traits in healthy volunteers. C_LIO_LIFructose malabsorption enhances anxiety-like behaviors in malabsorptive Glut5-KO mice. C_LIO_LIFructose malabsorption is associated with gut microbiota dysbiosis in human and preclinical mouse model of fructose malabsorption in association with fructose intake C_LIO_LIFructose malabsorption increases neuroinflammation and alters microglia functions in malabsorptive Glut5-KO mice. C_LI
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Effect of a novel food rich in miraculin on the intestinal microbiome of malnourished patients with cancer and dysgeusia 95%
- Impact of formate supplementation on body weight and plasma amino acids 94%
- Inflammatory dietary potential is associated with vitamin depletion and gut microbial dysbiosis in early pregnancy 93%
Similar papers in this journal
- Metabolite-based dietary supplementation in human type 1 diabetes is associated with microbiota and immune modulation 96%
- Gut microbiome, diet and symptom interactions in irritable bowel syndrome 95%
- CViewer: A Java-based statistical framework for integration of shotgun metagenomics with other omics datasets 94%
Similar papers in this journal
- Analysis of human colostrum reveals differential co-occurrence networks of metabolites, microbiota, and cytokines in maternal obesity 94%
- Effects of the DailyColors™ Polyphenol Supplement on Serum Proteome, Cognitive Function, and Health in Older Adults at Risk of Cognitive and Functional Decline 93%
- Loss of Diurnal Oscillatory Rhythms in Gut Microbiota Correlates with Progression of Atherosclerosis 93%
Similar papers in this journal
- Dietary cystine restriction increases the proliferative capacity of the small intestine of mice 94%
- Prenatal exposure to the probiotic Lactococcus lactis decreases anxiety-like behavior and modulates cortical cytoarchitecture in a sex specific manner. 94%
- Obesity-induced gut microbiota dysbiosis can be ameliorated by fecal microbiota transplantation: a multiomics approach. 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.