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Bariatric Surgery: Microbiome & Diabetes

Changes in the Intestinal and Oral Microbiome of Morbidly Obese Patients Undergoing Gastric Bypass Surgery in Relation to Insulin Resistance and Metabolic Syndrome

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03723486
Enrollment
120
Registered
2018-10-29
Start date
2015-11-30
Completion date
2023-12-30
Last updated
2022-11-02

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

Conditions

Obesity

Keywords

Morbidly obese, Insulin resistance, Metabolic syndrome, Intestinal microbiome, Gastric bypass, Oral microbiome

Brief summary

This study is a prospective cohort study, following 80 morbidly obese patients undergoing bariatric surgery, specifically Roux-en-Y gastric bypass (RYGB). The investigators are measuring intestinal microbiota (IM) and oral microbiota (OM) at the beginning before any treatment, at the time of surgery, which is after a very low calorie standard diet, and 1 and 6 months after surgery. The investigators assess whether changes in IM are related to changes in insulin resistance (IR), other features of the metabolic syndrome (MetS) and OM.

Detailed description

Morbid obesity is associated with not only type 2 diabetes (T2D) of morbidly obese patients), but also cardiovascular complications, all of which remarkably improved and even resolved with bariatric surgery, of which the RYGB surgery has become the gold standard. Many studies have shown that within a few weeks post-RYGB there is dramatic improvement in IR and/or T2D independent of weight loss that ensues. These results led us to hypothesize that changes in intestinal microbiome (IM) composition and metagenome may be independently associated with improvement in metabolic parameters in humans undergoing RYGB. Another aspect of RYGB that has not been studied is the potential changes in oral microbiome (OM) and salivary proteome (SP) and their relationship with weight loss and metabolic improvement. Understanding the OM and SP in morbidly obese patients before and after RYGB is important because shifts in the OM and SP may explain the susceptibility of these patients for oral infections like periodontal disease, which is more prevalent and severe in this population, particularly if T2D is present To our knowledge there are no longitudinal studies the relation between oral and intestinal microbiome before and after bariatric surgery. Furthermore, there are no studies looking at the effect of weight-reduction with the very low calorie diet (VLCD) Optifast regimen on IM, which the investigators plan to do. As IM may contribute to obesity and IR/T2D, the latter being the most dominant feature of the MetS. However, whether specific IM compositions are associated with improvement of obesity, IR/T2D and other features of the MetS is not clear; and the effects of RYGB on IM for treatment of these disorders in morbid obesity have not been well studied. The investigators will conduct a prospective observational study of morbidly obese patients undergoing RYGB, in which the investigators will measure the intestinal microbiome before and after surgery along with insulin resistance and metabolic syndrome. Baseline measurements will be done before the pre-operative run-in with the very low calorie Optifast regimen (800 kcal/d) given before the laparoscopic RYGB (1 week/100 lbs body weight) to reduce the liver size for surgical access. Preoperatively, Optifast likely leads to changes in IM (never assessed) in addition to weight loss and improvement in MetS parameters. Aim: To track the changes in IM structure and function (metagenome) of morbidly obese patients undergoing laparoscopic RYGB through 3 stages - a) before vs. after pre-op Optifast weight reduction treatment 24; and post-op RYGB at b) 1 month; and at c) 6 months. The investigators will correlate the specific changes in IM through these stages, to improvement in IR and other features of the MetS. At the same time points the investigators will also measure the OM, salivary flow rate and SP, as well as oral inflammatory load.

Interventions

None listed

Sponsors

Canadian Institutes of Health Research (CIHR)
CollaboratorOTHER_GOV
University Health Network, Toronto
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 65 Years
Healthy volunteers
No

Inclusion criteria

* Morbidly obese patients (BMI \> 40 kg/m2 or BMI \>35-40 kg/m2 with other severe weight loss responsive comorbidities, undergoing laparoscopic RYGB surgery).

Exclusion criteria

* regular intake of non-steroidal anti-inflammatory drugs; prebiotics, probiotics or antibiotics or any experimental drug in the 3 months prior to study entry; type 1 diabetes, chronic gastrointestinal diseases, previous gastrointestinal surgery modifying the anatomy, smoking; pregnancy or breastfeeding; patients not tolerating Optifast; bariatric surgery other than RYGB patients.

Design outcomes

Primary

MeasureTime frameDescription
Change in HOMA-IRChange from Baseline HOMA-IR at 6 months post bariatric surgeryHOMA-IR which represents insulin resistance and is calculated based on (glucose \[mmol/L\] x insulin \[mU/L\] / 22.5).

Secondary

MeasureTime frameDescription
Stool Sample: qPCR4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryStool sample analysis
Stool Sample: Short Chain fatty acid4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryStool sample analysis
Stool Sample: Metagenome.4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryStool sample analysis
Appetite assessment4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryAppetite questionnaire
Anthropometry:Height4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryAnthropometric height
Anthropometry: weight4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryAnthropometric weight
Anthropometry: Waist circumference4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryAnthropometric measurements (measured in cm)
Anthropometry: Hip-circumference4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryAnthropometric measurements (measured in cm)
Questionnaires: Food record4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryGeneral questionnaire
Questionnaires: Activity Log4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryGeneral questionnaire
Questionnaires: Environmental questionnaire4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryGeneral questionnaire
Stool Sample: 16S sequencing4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryStool sample analysis
Oral microbiome: Saliva4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryOral sample
Oral microbiome: Mouth rinse4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryOral sample
Oral microbiome: Oral Plaque4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryOral sample
Oral microbiome: Tongue plaque4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryOral sample
C peptide4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryBlood work measurements (measured in pmol/L)
HbA1c4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryBlood work measurements (measured in %)
Glucose4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryBlood work measurement (measured mmol/L)
Fasting Insulin4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryBlood work measurement (measured in pmol/L)
Plasma endotoxin4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryBlood work measurement of lipopolysaccharide
Gut Hormone4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryBlood work measurement
Questionnaires: Dental questionnaire,4 time points; pre-Optifast (baseline), post-Optifast (at the time of surgery), 1 and 6 months post surgeryGeneral questionnaire

Countries

Canada

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026