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Bariatric Surgery and Gut Microbiota Changes Over Time

Longitudinal Evaluation of Gut Microbiota and Fecal Metabolome Following Roux-en-Y Gastric Bypass: Clinical Implications and Identification of Predictive Biomarkers

Status
Not yet recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07381140
Acronym
RYGB-MICROGUT
Enrollment
100
Registered
2026-02-02
Start date
2026-04-01
Completion date
2028-04-01
Last updated
2026-02-05

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Gut Microbiota, Healthy Participants, Obese Patients, Obese Patients With Bariatric Surgery

Keywords

gut microbiota, stool metabolome, obesity, bariatric surgery, Roux-en-Y gastric bypass, Long-read sequencing

Brief summary

The goal of this observational study is to learn how bariatric surgery affects gut bacteria and gut-related metabolic products over time in adults with obesity. The study includes adults aged 18 to 65 years who are undergoing Roux-en-Y gastric bypass (RYGB) surgery, as well as adults with obesity treated with diet alone and healthy normal-weight adults. The main questions it aims to answer are: How does bariatric surgery change the composition and diversity of gut bacteria over time? How are these changes related to weight loss and improvement of obesity-related health conditions? Researchers will compare people undergoing bariatric surgery with people with obesity treated with diet alone and with healthy normal-weight individuals to see if surgery leads to specific changes in gut bacteria and stool metabolites that are linked to better clinical outcomes. Participants will: Provide stool samples at scheduled time points over 12 months Provide blood samples and undergo routine clinical assessments Take part in follow-up visits to monitor weight, metabolic health, and gastrointestinal symptoms

Detailed description

Obesity is a complex and multifactorial condition associated with metabolic, inflammatory, and gastrointestinal alterations. In recent years, the gut microbiota has emerged as a key factor involved in energy balance, metabolic regulation, and systemic inflammation. Alterations in gut microbial composition and function have been consistently observed in individuals with obesity and are thought to contribute to metabolic dysfunction. Bariatric surgery, particularly Roux-en-Y gastric bypass (RYGB), is one of the most effective treatments for severe obesity and its related comorbidities. Beyond weight loss, this procedure induces profound changes in gastrointestinal anatomy and nutrient flow, which may significantly influence the gut microbiota and the metabolites it produces. However, the timing, persistence, and clinical relevance of these microbial and metabolic changes over the long term are not yet fully understood. This prospective observational study is designed to evaluate longitudinal changes in gut microbiota composition and fecal metabolome following bariatric surgery and to explore their association with clinical and metabolic outcomes. Participants undergoing bariatric surgery will be followed over a 12-month period and compared with individuals with obesity receiving dietary treatment and with healthy normal-weight individuals. This comparative approach allows the identification of changes specifically related to surgery rather than to weight loss alone or to normal temporal variability. Gut microbiota will be analyzed using DNA-based sequencing approaches, while fecal metabolites will be assessed to capture functional changes in microbial activity. These biological data will be integrated with clinical and laboratory parameters to explore relationships between gut-related changes and outcomes such as weight loss, metabolic improvement, inflammation, and intestinal barrier function. By providing a longitudinal and integrated view of gut microbiota and metabolome remodeling after bariatric surgery, this study aims to improve understanding of the biological mechanisms underlying surgical outcomes and to support the identification of potential biomarkers that may help predict individual responses and guide more personalized approaches to obesity management.

Interventions

None listed

Sponsors

Azienda Ospedaliera Specializzata in Gastroenterologia Saverio de Bellis
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 65 Years
Healthy volunteers
Yes

Inclusion criteria

(RYGB Group): * Age between 18 and 65 years. * Adults with a body mass index (BMI) ≥ 35 kg/m² with related comorbidities, or BMI ≥ 40 kg/m², who are candidates for Roux-en-Y gastric bypass (RYGB) surgery only.

Exclusion criteria

(RYGB Group): * Treatment with antibiotics within the last 3 weeks, or probiotics/prebiotics within the last 4-6 weeks, or systemic corticosteroids within the 8 weeks prior to baseline (T0). * Participation in dietary regimens or calorie restriction programs in the weeks prior to enrollment. * Chronic inflammatory bowel diseases (e.g., Crohn's disease, ulcerative colitis), ongoing enteric infections, or active neoplasms. * Previous organ transplant or ongoing systemic immunosuppressive therapy. * Pregnancy or breastfeeding. * Previous major gastrointestinal surgery. * Chronic alcohol consumption above moderate levels or substance use disorder. Inclusion Criteria (Obese Control Group): * Age between 18 and 65 years. * Adults with BMI ≥ 30 kg/m² who are candidates for structured dietary treatment. Inclusion Criteria (Healthy Control Group): * Age between 18 and 65 years. * Normal weight (BMI between 18.5 and 24.9 kg/m²). * Normal metabolic function: fasting glucose below threshold, normal ALT/AST, no diagnosis of diabetes or metabolic syndrome. * No chronic gastrointestinal diseases or conditions that could alter the gut microbiota.

Design outcomes

Primary

MeasureTime frameDescription
Long-Term Changes in Gut Microbiota After Bariatric Surgeryfrom enrollment up to 12 months of follow-upLongitudinal changes in the composition and diversity of the gut microbiota (alpha diversity, beta diversity, and relative abundance of key bacterial taxa) in patients undergoing Roux-en-Y gastric bypass (RYGB) surgery, assessed using 16S rRNA gene sequencing (short-read and full-length), compared with the Obese Control and Healthy Control groups.

Secondary

MeasureTime frameDescription
Comparison of Short- and Long-Read 16S Sequencingfrom enrollment up to 12 months of follow-upCompare the performance of short-read (V3-V4) and long-read (full-length 16S rRNA) sequencing technologies in terms of taxonomic resolution and biomarker identification.
Fecal Metabolome Changes and Predictive Microbe-Metabolite Signatures After Bariatric Surgeryfrom enrollment up to 12 months of follow-upAssess changes in the fecal metabolome over time after bariatric surgery and Identify microbe-metabolite signatures predictive of clinical response to bariatric surgery.
Association Between Gut Microbiota and Clinical Outcomesfrom enrollment up to 12 months of follow-upAnalyze the association between gut microbiota changes and clinical/metabolic parameters (weight loss, comorbidities, inflammatory and intestinal permeability markers)

Countries

Italy

Contacts

CONTACTDomenica Mallardi, Biologist
domenica.mallardi@irccsdebellis.it+390804994129
CONTACTFrancesco Russo, MD
francesco.russo@irccsdebellis.it+390804994129

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 6, 2026