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CompletedNCT03074630DICEUpdated Aug 4, 2020Results posted

Dapagliflozin and Cholesterol Metabolism in Type 2 Diabetes (DM2)

A Phase 4 interventional study of Dapagliflozin and Rosuvastatin in Diabetes Mellitus, Type 2 and Hypercholesterolemia, sponsored by Amsterdam UMC, location VUmc. Completed at 1 site in Netherlands. Open to participants aged 18 Years to 75 Years. Per ClinicalTrials.gov, last updated 2020-08-04.

Sponsored by Amsterdam UMC, location VUmc · Phase 4, Interventional, and Basic science

Phase
Phase 4
Study type
Interventional
Enrollment
12
Allocation
Not applicable
Ages
18 Years to 75 Years
Sex
All
01

Study summary

Objective: To investigate the effect of 5 weeks dapagliflozin 10 mg once daily treatment on glucose and lipid fluxes in patients with type 2 diabetes.

Study design: Single center single arm (mechanistic) intervention trial.

Study Population: Male or postmenopausal female patients with type 2 diabetes BMI > 25 kg/m2and more than 12 weeks a stable dose of metformin treatment > 1500mg, HbA1C ≥6.5% - \<8.5%, Fasting Plasma Glucose (FPG) \<13.2 mmol/l, LDL cholesterol >2.5 mmol/l, willing to switch to rosuvastatin 10mg once daily for 4 weeks, and then receive 10 mg dapagliflozin once daily orally, for 5 weeks.

Treatment: After a statin washout fase of 4 weeks, baseline cholesterol synthesis will be measured (2H3 Leucine, 2H2O deuterated water). Then, treatment with rosuvastatin 10mg for 4 weeks will be initiated after which, patients will undergo glucose (2H2enriched glucose) and lipid flux (2H3 Leucine, 2H2O deuterated water and oral 1,2,3,4-13C16 - palmitate enrichment measurements) followed by 5 weeks treatment with dapagliflozin 10mg once daily. In the final week glucose/lipid flux measurements will be repeated.

Sample Size: 12 DM2 subjects.

Outcome measures: The primary endpoint is effect of 5 weeks Sodium-Glucose Linked co-transporter (SGLT) 2 inhibition on LDL cholesterol synthesis in patients with DM2. Secondary endpoints are effect of SGLT2 inhibition on triglyceride and cholesterol fluxes as well as (hepatic and peripheral) insulin sensitivity and energy expenditure. Finally, effect of SGLT2 inhibition on dietary intake, liver fat content (MRI liver) and fecal microbiome will be studied at these timepoints.

Read the detailed description

Background: Type 2 diabetes is associated with an increased cardiovascular risk. Besides metformin, a new treatment strategy is oral SGLT2 inhibition (dapagliflozin), Although the recently published, first-in-class cardiovascular outcome trial (EMPA-REG OUTCOME) has suggested a beneficial effect on all cause cardiovascular mortality upon SGLT2 inhibition, a known (class) side effect in worsening of dyslipidemia in all DM2 patients. The investigators thus aim to dissect the effect of SGLT2 inhibition (Dapagliflozin 10mg once daily for 5 weeks) on glucose and lipid fluxes in uncomplicated DM2 subjects.

Objective: To investigate the effect of 5 weeks dapagliflozin 10 mg once daily treatment on glucose and lipid fluxes in patients with type 2 diabetes.

Study design: Single center single arm (mechanistic) intervention trial.

Study Population: Male or postmenopausal female patients with type 2 diabetes BMI > 25 kg/m2and more than 12 weeks a stable dose of metformin treatment > 1500mg, HbA1C ≥6.5% - \<8.5%, FPG\<13.2 mmol/l, LDL cholesterol >2.5 mmol/l, willing to switch to rosuvastatin 10mg once daily for 4 weeks, and then receive 10 mg dapagliflozin once daily orally, for 5 weeks.

Treatment: After a statin washout fase of 4 weeks, baseline cholesterol synthesis will be measured (2H3 Leucine, 2H2O deuterated water). Then, treatment with rosuvastatin 10mg for 4 weeks will be initiated after which, patients will undergo glucose (2H2enriched glucose) and lipid flux (2H3 Leucine, 2H2O deuterated water and oral 1,2,3,4-13C16 - palmitate enrichment measurements) followed by 5 weeks treatment with dapagliflozin 10mg once daily. In the final week glucose/lipid flux measurements will be repeated.

Outcome measures: The primary endpoint is effect of 5 weeks SLGT2 inhibition on LDL cholesterol synthesis in patients with DM2. Secondary endpoints are effect of SGLT2 inhibition on triglyceride and cholesterol fluxes as well as (hepatic and peripheral) insulin sensitivity and energy expenditure. Finally, effect of SGLT2 inhibition on dietary intake, liver fat content (MRI liver) and fecal microbiome will be studied at these timepoints.

Sample Size: Based on published data, the investigators expect 10% higher plasma LDL level (from 3.1 ± 0.8 to 1.7 ± 0.4 mmol/l ) upon SGLT2 inhibition in DM2. DM2 subjects have concomitant LDL- ApoB synthesis (1.8 ± 0.4 gram/day) after 4 weeks of rosuvastatin 10mg. Assuming an increase in LDL-apoB synthesis of 0.3 gram/day with SD of 0.4 and using single-sided test (with alfa of 0.05 and 85% power), the sample size needs to be 11 DM2 subjects on dapagliflozin 10mg treatment. Taking a 10% patient dropout rate, the aim is to include 12 DM2 subjects in total.

Nature and extent of the burden and risks associated with participation, benefit and group relatedness: The risk for patients to participate in this study is minimal. All of the stable isotopes are GMP produced and analyses techniques have been previously used and published by the investigators. Also, REE and liver MRI measurements are not associated with adverse events. Both rosuvastatin and dapagliflozin have been approved by FDA/EMA and are widely prescribed. In total 470 ml blood (100 ml per lipidflux day, 90 ml per clamp day) will be drawn over period of 13 weeks (divided over 5 visits).

02

Conditions studied

  • Diabetes Mellitus, Type 2
  • Hypercholesterolemia
03

In context

Diabetes Mellitus, Type 2

9,359 studies on the registry are indexed under Diabetes Mellitus, Type 2; 1,318 are open to participants now.

This study's enrollment of 12 is below the median of 80 across 7,525 interventional studies indexed under Diabetes Mellitus, Type 2.

Browse Diabetes Mellitus, Type 2 studies →

Lead sponsor

Amsterdam UMC, location VUmc is the lead sponsor of 302 studies on the registry; 84 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years to 75 Years
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • Male or postmenopausal female patients ;
  • Type 2 diabetes mellitus(HbA1C ≥6.5% - \<8.5%)
  • At least 12 weeks of stable dose metformin treatment, FPG\<13.2 mmol/l
  • LDL cholesterol >2.5 mmol/l
  • Willing to switch used statin to rosuvastatin 10mg once daily
  • 18-75 years of age
  • Ability to provide informed consent

Exclusion criteria

Exclusion Criteria:

  • History of cardiovascular event
  • Smoking
  • exogenous insulin use
  • Creatinin clearance \< 60ml/min
  • Alcohol abuse (>4 units/day)
  • AST or ALT elevation (>2.5x upper limit)
  • Contraindication to MR scanning (i.e. pacemaker, metallic foreign body, claustrophobia)
05

Study design

Phase
Phase 4
Primary purpose
Basic science
Allocation
Not applicable
Intervention model
Single group
Masking
None (open label)
Enrollment
12 participants (actual)

Study arms

  • Experimental
    Dapagliflozin 10mg and Rosuvastatin 10mg

    Rosuvastatin 10mg once daily for 9 weeks, with 5 weeks of once daily Dapagliflozin 10mg added

    Drug: Dapagliflozin · Drug: Rosuvastatin

Interventions

  • DrugDapagliflozin

    5 weeks 10mg dapagliflozin once daily

    Also known as: Forxiga

  • DrugRosuvastatin

    9 weeks 10mg dapagliflozin once daily

    Also known as: Crestor

06

What researchers measure

Primary outcomes

  1. Change in Plasma LDL Cholesterol

    Before and after 5 weeks of dapagliflozin on rosuvastatin background.

    Time frame: 5 weeks

Secondary outcomes

  1. Change in Plasma HDL Cholesterol

    Change in plasma HDL cholesterol following dapagliflozin

    Time frame: 12 weeks

  2. Change in Total Cholesterol

    Change in total cholesterol following dapagliflozin

    Time frame: 5 weeks

  3. Change in Plasma Triglycerides

    Change in plasma Triglycerides following dapagliflozin

    Time frame: 5 weeks

  4. Change in Plasma FFA

    Change in plasma FFA following dapagliflozin

    Time frame: 5 weeks

  5. Change in Cholesterol Fluxes

    Including cholesterol production, cholesterol excretion, cholesterol degradation. Before and after 5 weeks of dapagliflozin on rosuvastatin background.

    Time frame: 5 weeks

  6. Change in Triglyceride Fluxes

    Including cholesterol production, cholesterol excretion, cholesterol degradation. Before and after 5 weeks of dapagliflozin on rosuvastatin background

    Time frame: 5 weeks

  7. Change in Peripheral Insulin Sensitivity

    Before and after 5 weeks of dapagliflozin on rosuvastatin background, measured as glucose disposal during hyperinsulinemic euglycemic clamp

    Time frame: 5 weeks

  8. Liver Fat MRI Spectrum

    Before and after 5 weeks of dapagliflozin on rosuvastatin background

    Time frame: 5 weeks

  9. Fecal Microbiome Composition

    Before and after 5 weeks of dapagliflozin on rosuvastatin background, different bacterial strains will be quantified in fresh fecal samples.

    Time frame: 5 weeks

  10. Bile Salt Excretion

    Before and after 5 weeks of dapagliflozin on rosuvastatin background

    Time frame: 5 weeks

  11. Urinary Glucose Excretion

    Before and after 5 weeks of dapagliflozin on rosuvastatin background

    Time frame: 5 weeks

  12. Urinary Sodium Excretion

    Before and after 5 weeks of dapagliflozin on rosuvastatin background

    Time frame: 5 weeks

07

Results

Posted Aug 4, 2020
Limitations and caveats
The comparatively small number of participants, the absence of a control group and short follow-up time limit the study and we only included subjects with uncomplicated type 2 diabetes on metformin monotherapy.

Participant flow

Participant flow — Overall Study
MilestoneDapagliflozin
Started12
Completed11
Not completed1

Outcome measures

PrimaryChange in Plasma LDL Cholesterol

Before and after 5 weeks of dapagliflozin on rosuvastatin background.

Time frame:
5 weeks
Reported as:
Median · mmol/L
Change in Plasma LDL Cholesterol
mmol/LDapagliflozin
Change in Plasma LDL Cholesterol-0.1 (-0.2 to 0.2)
SecondaryChange in Plasma HDL Cholesterol

Change in plasma HDL cholesterol following dapagliflozin

Time frame:
12 weeks
Reported as:
Median · mmol/L
Change in Plasma HDL Cholesterol
mmol/LDapagliflozin
Change in Plasma HDL Cholesterol0.08 (-0.03 to 0.13)
SecondaryChange in Total Cholesterol

Change in total cholesterol following dapagliflozin

Time frame:
5 weeks
Reported as:
Median · mmol/L
Change in Total Cholesterol
mmol/LDapagliflozin
Change in Total Cholesterol-0.01 (-0.42 to 0.29)
SecondaryChange in Plasma Triglycerides

Change in plasma Triglycerides following dapagliflozin

Time frame:
5 weeks
Reported as:
Median · mmol/L
Change in Plasma Triglycerides
mmol/LDapagliflozin
Change in Plasma Triglycerides0.10 (-0.41 to 0.34)
SecondaryChange in Plasma FFA

Change in plasma FFA following dapagliflozin

Time frame:
5 weeks
Reported as:
Median · mmol/L
Change in Plasma FFA
mmol/LDapagliflozin
Change in Plasma FFA0.20 (0.04 to 0.78)
SecondaryChange in Cholesterol Fluxes

Including cholesterol production, cholesterol excretion, cholesterol degradation. Before and after 5 weeks of dapagliflozin on rosuvastatin background.

Time frame:
5 weeks

No measurements were reported for this outcome.

SecondaryChange in Triglyceride Fluxes

Including cholesterol production, cholesterol excretion, cholesterol degradation. Before and after 5 weeks of dapagliflozin on rosuvastatin background

Time frame:
5 weeks

No measurements were reported for this outcome.

SecondaryChange in Peripheral Insulin Sensitivity

Before and after 5 weeks of dapagliflozin on rosuvastatin background, measured as glucose disposal during hyperinsulinemic euglycemic clamp

Time frame:
5 weeks
Reported as:
Mean · umol/kg/min
Change in Peripheral Insulin Sensitivity
umol/kg/minDapagliflozin
Change in Peripheral Insulin Sensitivity1.6 ± 10.7
SecondaryLiver Fat MRI Spectrum

Before and after 5 weeks of dapagliflozin on rosuvastatin background

Time frame:
5 weeks

No measurements were reported for this outcome.

SecondaryFecal Microbiome Composition

Before and after 5 weeks of dapagliflozin on rosuvastatin background, different bacterial strains will be quantified in fresh fecal samples.

Time frame:
5 weeks

No measurements were reported for this outcome.

SecondaryBile Salt Excretion

Before and after 5 weeks of dapagliflozin on rosuvastatin background

Time frame:
5 weeks

No measurements were reported for this outcome.

SecondaryUrinary Glucose Excretion

Before and after 5 weeks of dapagliflozin on rosuvastatin background

Time frame:
5 weeks
Reported as:
Median · mg/min
Urinary Glucose Excretion
mg/minDapagliflozin
Urinary Glucose Excretion44 (20 to 64)
SecondaryUrinary Sodium Excretion

Before and after 5 weeks of dapagliflozin on rosuvastatin background

Time frame:
5 weeks

No measurements were reported for this outcome.

Adverse events

Collected over 5 weeks. Non-serious events are listed at a 0% frequency threshold.

Adverse event summary by group
GroupDeathsSeriousOther
Adverse Events0/12 (0%)0/12 (0%)1/12 (8.3%)
Most frequent other events
Most frequent other events
EventAdverse Events
genital fungal infectionRenal and urinary disorders1/12

Baseline characteristics

Age, Categorical
Age, Categorical(Participants)Dapagliflozin
<=18 years0
Between 18 and 65 years9
>=65 years2
Age, Continuous
Age, Continuous(years)Dapagliflozin
Median64 (50 to 76)
Sex: Female, Male
Sex: Female, Male(Participants)Dapagliflozin
Female2
Male9
Ethnicity (NIH/OMB)
Ethnicity (NIH/OMB)(Participants)Dapagliflozin
Hispanic or Latino0
Not Hispanic or Latino11
Unknown or Not Reported0
Region of Enrollment
Region of Enrollment(participants)Dapagliflozin
Netherlands11
08

Study locations

1 site
  • Academic Medical Center
    Amsterdam, North Holland 1105AZ, Netherlands
09

References and documents

Study documents

  • Protocol and statistical analysis plan · Jun 27, 2015

Documents are hosted by the registry — open the source record to download them.

Individual participant data

Plan to share: No

10

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Aug 4, 2020, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
11

Registry details

Key details

Study ID
NCT03074630
Lead sponsor
Amsterdam UMC, location VUmc
Collaborators
Academisch Medisch Centrum - Universiteit van Amsterdam (AMC-UvA)
Responsible party
D van Raalte (PI, Amsterdam UMC, location VUmc) — Principal investigator
First posted
Mar 9, 2017
Start date
May 2016
Primary completion
Apr 2018
Completion
Apr 2018
Results posted
Aug 4, 2020
Last update
Aug 4, 2020

Study contacts

Max Nieuwdorp, MD/PhD
principal investigator · Academisch Medisch Centrum - Universiteit van Amsterdam (AMC-UvA)

Oversight

Data monitoring committee
No
View the source record on ClinicalTrials.gov ↗

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