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Updated: Jun 9, 2026

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Published on: July 31, 2019
Gut microbiome-derived metabolites as predictors of bariatric surgery outcomes
Esther Ugo Alum1, Akunna Perpetua Emeruwa2, David Chukwu Obasi3
1Department of Research and Publications, Kampala International University, P. O. Box 20000, Kampala, Uganda.
Background:
Bariatric surgery remains the most effective treatment for severe obesity and obesity-associated metabolic disorders. However, substantial interindividual variability exists in postoperative weight loss and type 2 diabetes mellitus remission. Increasing evidence suggests that gut microbiome-derived metabolites may influence metabolic responses after bariatric surgery.
Objective:
This narrative review synthesizes current evidence regarding the predictive role of gut microbiome-derived metabolites, particularly short-chain fatty acids, bile acids, and tryptophan-derived metabolites, in bariatric surgery outcomes.
Methods:
A narrative literature review was conducted using PubMed, Web of Science, Embase, and ClinicalTrials.gov to identify studies published through May 2026. Studies examining associations between microbiome-derived metabolites and postoperative bariatric outcomes were reviewed and narratively synthesized.
Results:
Available evidence suggests that higher preoperative levels of beneficial microbiome-derived metabolites are associated with improved postoperative weight loss, enhanced insulin sensitivity, and greater likelihood of type 2 diabetes mellitus remission. Short-chain fatty acids appear to influence satiety and glucose metabolism, bile acids regulate metabolic signaling through farnesoid X receptor and Takeda G protein receptor 5 pathways, and tryptophan metabolites modulate inflammation and gut-brain communication. Nevertheless, findings remain inconsistent because of methodological heterogeneity, limited cohort sizes, and differences in metabolomic profiling techniques.
Conclusion:
Gut microbiome-derived metabolites represent promising candidate biomarkers for predicting bariatric surgery outcomes. However, large-scale longitudinal studies using standardized metabolomic approaches are required before clinical implementation can be achieved.
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