Skip to main content
OpenTrials
Recruiting

NCT Number: NCT06092476

Trial to Evaluate Efficacy+Safety of Revita DMR Treatment Paradigm 1 and Retreatment in Type 2 Diabetes Patients

The objective of this study is to evaluate feasibility, safety, and efficacy of endoscopic DMR Treatment Paradigm 1 (compared to sham) and to evaluate feasibility, safety, and efficacy of re-treatment with DMR at 24 weeks (compared to baseline and a single DMR procedure) in patients with type 2 diabetes with non-insulin glucose lowering medications.

Recruiting

Interested in participating?

Request Info

Key information

Age range

18 year–75 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Amsterdam UMC, locatie VUmc

Amsterdam, Netherlands

Location status: Recruiting

Location contact

Kim van den Hoek, MD

CONTACT

[email protected]

0031621357593

About this study

The objective of this study is to evaluate feasibility, safety, and efficacy of endoscopic DMR Treatment Paradigm 1 (compared to sham) and to evaluate feasibility, safety, and efficacy of re-treatment with DMR at 24 weeks (compared to baseline and a single DMR procedure) in patients with type 2 diabetes with non-insulin glucose lowering medications.

The aimed effect is an adequate or improved glucose regulation and a decrease of HbA1c. Secondary effects include improved cardiovascular, hepatic, and metabolic parameters.

Who can participate

Healthy volunteers accepted: No

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

Inclusion criteria

  • Diagnosed with Type 2 Diabetes.
  • Age ≥ 18 to ≤ 75 years.
  • Insulin naïve patients who are on stable dose (maximally approved or tolerated dose) of 2 or more glucose lowering drugs, including metformin, sulphonylurea (SU), (sodium-glucose cotransporter-2) inhibitors (SGLT-2i), Glucagon-like peptide-1 receptor agonists (GLP-1RA) or dipeptidyl peptidase 4 inhibitor (DPP-4i) and/or, thiazolidinedionderivaten (TZD) for at least 12 weeks.
  • BMI ≥ 24 and ≤ 40 kg/m2
  • HbA1c of ≥ 54 mmol/mol (7.5%) and ≤ 86 mmol/mol (10.0%).
  • Signed and dated written informed consent in accordance with Good Clinical Practice (GCP) and local legislation.

Exclusion criteria

  • Uncontrolled hyperglycemia with a glucose level >270 mg/dl (>15.0 mmol/L) after an overnight 8-hour fasting at the end of run-in and confirmed by a second measurement on the consecutive day.
  • Subjects who are using insuline.
  • Known case of absolute insulin deficiency as indicated by a fasting plasma C-peptide value of <0.6 ng/ml (<0,2 nmol/L).
  • Diagnosis of autoimmune diabetes/Type 1 diabetes mellitus, monogenic (neonatal or maturity onset diabetes of the young (MODY)) diabetes or Type 1 diabetes in adults/latent autoimmune diabetes of adults (LADA).
  • History of more than 1 severe hypoglycemia episode or unawareness within past 6 months in which third party assistance was needed.
  • Clinically significant valvular heart disease or severe aortic stenosis.
  • Acute coronary syndrome (non-ST wave elevated myocardial infarction (STEMI), STEMI and unstable angina pectoris), stroke or transient ischemic attack within the past 3 months.
  • Indication of acute liver disease, defined by serum levels of either ALT (SGPT), AST (SGOT), or alkaline phosphatase above 3 x upper limit of normal (ULN).
  • Presence of acute or chronic active hepatitis B or C (except if hepatitis C is cured) or cirrhosis; or hepatic decompensation during the last 6 months; or alcoholic or autoimmune chronic hepatitis.
  • Impaired renal function, defined as estimated Glomerular Filtration rate (eGFR) < 45 ml/min/1.73m2 or end stage renal failure or on dialysis.
  • Diagnosed with esophageal motility disorder or Glomerular Filtration rate (GERD) gr 3 or diagnosed during screening endoscopy.
  • Known history of a structural or functional disorder of the stomach, e.g. active gastric ulcer, chronic gastritis, gastric varices, hiatal hernia, stomach cancer or any other disorder of the stomach.
  • Previous GI surgery that could affect the ability to treat the duodenum such as patients who have had a Billroth 2, Roux-and-Y gastric bypass, gastric sleeve or other similar procedures.
  • Known intestinal autoimmune disease, including Celiac disease, or pre-existing symptoms of lupus erythematosus, scleroderma, or other autoimmune connective tissue disorder, which affects the small intestine.
  • Patients with active helicobacter pylori infection. Patients may be enrolled if they had history of h-pylori infection and were successfully treated.
  • History of active malignancy or partial remission from clinically significant malignancy within the past 5 years. With the exception of basal or squamous cell skin cancer or carcinoma in situ or those received curative treatment and in complete remission for 5 years or if subject confirmed as cancer free.
  • Blood dyscrasias or any disorders causing hemolysis or unstable Red Blood Cells (sickle cell trait is allowed).
  • Known case of severe peripheral vascular disease.
  • Clinically active systemic infection.
  • Known immunocompromised status, including individuals who have undergone organ transplantation, chemotherapy, or radiotherapy within the past 12 months, clinically significant leukopenia or positive for the human immunodeficiency virus (HIV), on potential immunosuppressants.
  • Current treatment with systemic steroids or change in dosage of thyroid hormones within 6 weeks prior to consent or any other uncontrolled endocrine disorder.
  • Use of anticoagulation therapy (such as warfarin, coumadin, Novel Oral AntiCoagulants (NOAC) or anti-platelet agents (such as thienopyridine) which cannot be discontinued for 5-7 days or 2 drug half-lives before the procedure; Acetylsalicylic acid does not need to be discontinued.
  • Actively participating in weight loss program or using medications for weight loss 3 months prior to randomization.
  • General contraindications to deep or conscious sedation or general anesthesia or high risk (e.g., American Society of Anesthesiologists Classification (ASA) 4 or higher) or contraindications to upper GI Endoscopy.
  • Nursing or Pregnant women or women of child bearing potential who are unwilling to practice acceptable method of birth control.
  • History of alcohol, legal or illegal drug and substance abuse.
  • Intake of an investigational drug in another trial within 30 days prior to consent or active participation in another clinical trial of an investigational drug or device.
  • Any other clinical or mental condition which would jeopardize subject's safety or makes subject a poor candidate for clinical trial participation.

Treatment and study plan

Revita® DMR Treatment

Device

The Revita® System is an endoscopic treatment consisting of a single catheter and console designed to lift the duodenal mucosa with saline followed by controlled circumferential hydrothermal ablation of the mucosa. For this study Revita® DMR procedure will be conducted as follows:

DMR Treatment Paradigm 1- After initial 2 Lift and Ablate step, remaining Lift: Ablate steps will be conducted in 1:1 manner.

Other names: Revita® DMR Treatment Paradigm 1, Revita Duodenal Mucosal Resurfacing

Sham Procedure

Other

The sham control for the Revita DMR procedure.

Primary outcomes

  1. Safety endpoint

    Time frame: 12 weeks post DMR and 12 weeks post retreatment with DMR

    Safety endpoint is evaluated 12 weeks post DMR and 12 weeks post retreatment with DMR

    • Number (percentage) of patients experienced device and procedure-related Serious Adverse Events (SAEs), Unanticipated Device Effects (UADEs), Serious Adverse Device Effects (SADEs), Suspected Unexpected Serious Adverse Reaction (SUSARs)
  2. Feasibility endpoint 1

    Time frame: During procedure

    Feasibility endpoint is evaluated during and after the procedure:

    • Number of ablations, whether a DMR was successful (>3 ablations)
  3. Feasibility endpoint 2

    Time frame: During procedure

    Feasibility endpoint is evaluated during and after the procedure:

    • Procedure time, defined as time between catheter in and catheter out.
  4. Efficacy endpoint 1

    Time frame: 24 weeks post DMR/sham

    Efficacy is evaluated at 24 weeks compared to baseline and sham:

    • Mean change in Fasting Plasma Glucose (FPG)/Flash Glucose Monitoring (FGM)
  5. Efficacy endpoint 2

    Time frame: 24 weeks post DMR/sham

    Efficacy is evaluated at 24 weeks compared to baseline and sham:

    • Change in HbA1c

Secondary outcomes

  1. Secondary safety endpoint

    Time frame: Through study completion, an average of 1 or 1,5 years

    Secondary safety endpoint is evaluated during follow-up and compared to baseline and sham at week 24 and compared to baseline and 12 weeks after (re)-DMR for all patients: incidences and event rates of hypoglycemic events during complete study period

  2. Efficacy endpoint 1: mean change in HbA1c

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 1: mean change in HbA1c

  3. Efficacy endpoint 2: mean Change in Fasting Glucose

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 2: mean Change in Fasting Glucose

  4. Efficacy endpoint 2: mean Change in Time in Range (TIR)

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 2: mean Change in Time in Range

  5. Efficacy endpoint 3: In patients with baseline abnormal Alanine Transaminase (ALT), Aspartate Aminotransferase (AST), and Gamma Glutamyl Transferase (GGT) values, change in ALT, AST, GGT

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 3: In patients with baseline abnormal ALT, AST and GGT values, change in ALT, AST, GGT

  6. Efficacy endpoint 4: Change in body weight

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 4: Change in body weight

  7. Efficacy endpoint 5: Change in Fasting C-peptide

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 5: Change in Fasting C-peptide

  8. Efficacy endpoint 6: Change in FPG

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 6: Change in FPG

  9. Efficacy endpoint 7: Change in homeostasis model assessment for insulin resistance (HOMA-IR)

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 7: Change in HOMA-IR

  10. Efficacy endpoint 8: Change in Framingham Risk Score-Cardiovascular risk score (FRS-CVD)

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 8: Change in Framingham Risk Score-Cardiovascular risk score (FRS-CVD)

  11. Efficacy endpoint 9: Change in MRI-proton density fat fraction (MRI-PDFF)

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 9: Change in MRI-PDFF

  12. Efficacy endpoint 10: Achievement of HbA1c ≤ 53 mmol/mol (7.0%)

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 10: Achievement of HbA1c ≤ 53 mmol/mol (7.0%)

  13. Efficacy endpoint 11: Change in food intake (amount of calories, fat, carbohydrates, proteins etc.) based on intake registration data

    Time frame: Through study completion, an average of 1 or 1,5 years

    Efficacy endpoint 11: Change in food intake (amount of calories, fat, carbohydrates, proteins etc.) based on intake registration data

  14. Mechanistic: Change in resection tissue findings in morphological features

    Time frame: Week 12 after (re)DMR

    Mechanistic: Change in morphological features

  15. Mechanistic: Change in resection tissue findings in functional level changes

    Time frame: Week 12 after (re)DMR

    Mechanistic: Change in functional level changes

  16. Mechanistic: Change in resection tissue findings in cellular level changes

    Time frame: Week 12 after (re)DMR

    Mechanistic: Change in cellular level changes

  17. Mechanistic: Mean Changes in small intestinal biopsy gene expression

    Time frame: Week 12 after (re)DMR

    Mechanistic: Mean Changes in small intestinal biopsy gene expression

  18. Mechanistic: Mean Changes in small intestinal biopsy metabolomics/proteomics

    Time frame: Week 12 after (re)DMR

    Mechanistic: Mean Changes in small intestinal biopsy metabolomics /proteomics

  19. Mechanistic: Change in Plasma Citrulline

    Time frame: Through study completion, an average of 1 or 1,5 years

    Mechanistic: Change in Plasma Citrulline

  20. Mechanistic: Change in Cystatin Value

    Time frame: Through study completion, an average of 1 or 1,5 years

    Mechanistic: Change in Cystatin Value

Study contacts

Contact information is provided by the study sponsor or research team.

Celine BE Busch, MD

CONTACT

[email protected]

+31621357593

Kim van den Hoek, MD

CONTACT

[email protected]

+31621357593

Sponsors and collaborators

Lead sponsor

Academisch Medisch Centrum - Universiteit van Amsterdam (AMC-UvA)

Other

Collaborators

  • Fractyl Health Inc.

Registry information

Official study title

A Randomized Double-blind Sham-controlled Trial to Evaluate Efficacy+Safety of Revita Duodenal Mucosal Resurfacing (DMR) Treatment Paradigm+Retreatment in Patients With Type 2 Diabetes Using Non-insulin Glucose Lowering Medications (REMIND)

Acronym: REMIND

Important dates

Study start
2024
Primary completion
2027
Study completion
2027
First posted
Oct 23, 2023
Registry last updated
Jan 16, 2026

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.

Published trials that share one or more normalized conditions with this study.