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Completed

NCT Number: NCT05120661

Elucidating the Role of Human Small Intestine Microbiota in Explaining Differences in Postprandial Glucose Responses

It has been shown that person-specific factors, such as the fecal microbiome, influenced postprandial glycemia. The small intestine is the site of nutrient digestion and absorption. The small intestine microbiota is amendable by dietary changes, and plays a key role in host adaptability to dietary variations. The role of the human small intestine microbiota in regulating postprandial glycemic responses towards food products will be investigated. First a screening will take place with to choose the test products that elicit most differential glucose responses and to select subjects with differential postprandial response to the same food product. The study will be a 6-day randomized cross-over trial with two test days. Four test (food) products, each containing 50 gram carbohydrates, and an oral glucose tolerance test will be provided to participants. Twenty men or women (BMI≥25 kg/m2, 40-75 years old) will be included. The main study parameters/endpoints are the food product-induced plasma glucose responses (iAUC) and the small intestine microbiota.

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Key information

Age range

40 year–75 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Wageningen University

Wageningen, Gelderland, Netherlands

About this study

Rationale: It has been shown that person-specific factors, such as the fecal microbiome, influenced postprandial glycemia. The small intestine is the site of nutrient digestion and absorption. The small intestine microbiota is amendable by dietary changes, and plays a key role in host adaptability to dietary variations. Differences in small intestine microbiota are hypothesized to be key in explaining the interpersonal differences in glycemic responses.

Objective: To investigate the role of the human small intestine microbiota in regulating postprandial glycemic responses towards food products.

Study design: The subjects will wear a continuous glucose monitor during the screening and the study. First a screening (14 days in total) will take place with to choose the test products (2 out of 4) that elicit most differential glucose responses and to select subjects with differential postprandial response to the same food product. Also an OGTT will be performed. The study will be a randomized cross-over trial with two test days (length of trial is 6 days in total). During the trial, the subjects will be intubated with a naso-jejunum catheter.

Study population: Twenty men or women (BMI≥25 kg/m2, 40-75 years old). Intervention (if applicable): Four test (food) products, each containing 50 gram carbohydrates, and an oral glucose tolerance test.

Main study parameters/endpoints: test (food) product-induced plasma glucose responses (iAUC), small intestine microbiota.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Males and females
  • BMI≥25 kg/m2
  • Age 40-75 years
  • Signed informed consent

Exclusion criteria

  • Having a history of medical or surgical events that may either put the subject at risk because of participation in the study, or influence the results of the study, including diabetes type 1, a swallowing disorder, gastrointestinal or liver disease, renal failure, cancer, nose/throat diseases, gastric bypass surgery, use of anticoagulants;
  • Having a bleeding/coagulation disorder, including hemophilia, Von Willebrand disease, Bernard-Soulier, Glanzmann thrombasthenia or thrombocytopenia;
  • Use of antibiotics within 2 months of starting the study or planned during the study;
  • Use of medication that could influence the study results, such as diabetes treatment;
  • Use of pro- and prebiotic supplements;
  • Sensitive to medical skin adhesives;
  • Having an allergy or intolerance towards compounds in the test products;
  • Follows a vegan diet;
  • Excessive alcohol consumption (on average >21 glasses/week for men and >14 glasses/week for women);
  • Currently a research subject in another clinical trial;
  • Having blood vessels that are too difficult for inserting a cannula/blood drawing'
  • Having a hemoglobin level <8.5 mmol/l (men) or <7.5 mmol/l (women);
  • Being a blood donor during the duration of the study;
  • Not having a General Practitioner (GP);
  • Being an employee of Wageningen University, division Human Nutrition and Health.

Treatment and study plan

Food Product

Other

a food product containing 50 gram carbohydrates

Primary outcomes

  1. postprandial glucose response (iAUC) per test product

    Time frame: 0-120 minutes

    iAUC glucose

  2. small intestine microbiome

    Time frame: at baseline

    the relative composition (%) and the functional capacity (%) of the small intestine microbiota

Secondary outcomes

  1. macronutrients in the small intestinal aspirates

    Time frame: 0-240 minutes

    amounts of carbohydrates, proteins, fats

  2. presence and production of (bacterial) degradation products in the small intestinal aspirates

    Time frame: 0-240 minutes

    concentrations of organic acids and short-chain fatty acids

  3. digestive enzymes in the small intestinal aspirates

    Time frame: 0-240 minutes

    concentrations of amylase

  4. non-absorbable marker in the small intestinal aspirates

    Time frame: 0-240 minutes

    peg-4000 concentrations

  5. blood HbA1c

    Time frame: 0-240 minutes

    concentrations of HbA1c

  6. blood glucose

    Time frame: 0-240 minutes

    concentrations glucose (e.g. GLP-1, PYY)

  7. blood insulin

    Time frame: 0-240 minutes

    concentrations of insulin

  8. blood glucagon

    Time frame: 0-240 minutes

    concentrations of glucagon

  9. blood total triglycerides

    Time frame: 0-240 minutes

    concentrations of triglycerides

  10. blood total free fatty acids

    Time frame: 0-240 minutes

    concentrations of free fatty acids

  11. plasma gut hormones

    Time frame: 0-240 minutes

    concentrations of gut hormones (e.g. GLP-1, PYY)

  12. breath 13C-lactosyl ureide

    Time frame: 0-240 minutes

    concentrations of 13C-lactosyl ureide

  13. breath hydrogen

    Time frame: 0-240 minutes

    concentrations of hydrogen (ppm)

  14. breath methane

    Time frame: 0-240 minutes

    concentrations of methane (ppm)

  15. Oral microbiome composition

    Time frame: baseline

    microbiota relative composition (%)

  16. Salivary α-amylase

    Time frame: 0-240 minutes

    concentrations of a-amylase

  17. Fecal microbiota composition

    Time frame: baseline

    microbiota relative composition (%)

Sponsors and collaborators

Lead sponsor

Wageningen University

Other

Registry information

Official study title

Elucidating the Role of Human Small Intestine Microbiota in Interpersonal Differences in GLYcemic Responses Upon Consumption of Food Products: A Proof of Principle Study

Acronym: GLYSIMI

Important dates

Study start
2021
Primary completion
2022
Study completion
2022
First posted
Nov 15, 2021
Registry last updated
Mar 28, 2024

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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