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Role of Canagliflozin on CD34+ Cells in Patients With Type 2 Diabetes

Role of Canagliflozin on Gene Expression and Function of CD34+ Endothelial Progenitor Cells and Renal Function in Patients With Type 2 Diabetes

Status
Completed
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02964585
Enrollment
34
Registered
2016-11-16
Start date
2016-11-30
Completion date
2020-09-30
Last updated
2022-12-07

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

Conditions

Type 2 Diabetes Mellitus

Keywords

Type 2 Diabetes Mellitus, Endothelial Cells, Cellular Biomarker, Endothelial Dysfunction, CD34+, Impaired renal function

Brief summary

The investigators hypothesize that Cana may be able to improve number and function of CD34+ endothelial progenitor cells. The investigators also propose that this expected cardiovascular benefit is independent of HbA1C reduction. Subjects will begin taking 100 mg of Cana or placebo after initial 4 weeks. Subjects will be withdrawn from the study if the medication or placebo is not tolerated.

Detailed description

Diabetes affects more than 11% of adults in the United States and this is projected to nearly double by 2025. Both diabetes and obesity are associated with endothelial dysfunction, oxidative stress, endothelial cell inflammation, cardiovascular pro-thrombotic states and are the most common causes of kidney disease. Use of a sodium-glucose linked transporter (SGLT-2) inhibitor has shown promise in improving glycemic control, weight reduction, hypertension and even changes in circulating Renin-angiotensin-aldosterone system (RAAS) and nitric oxide (NO). However, whether these group of drugs have any effect on cardiovascular disease (CVD) risk modification or on endothelium or endothelial progenitor cells as a surrogate of cardiovascular and renal risk outcome measure, is unclear. The investigators have previously shown that CD34+ cells, derived from peripheral blood can act as a cellular biomarker that is more reliable than serum based markers for CVD risk estimation. Serum based inflammatory markers are not useful until the endothelium is already damaged and inflamed. Such serum based biomarkers takes several months to change and gives no preventive and predictable information as to whether a particular medication may affect future endothelium. This is why the study of endothelium progenitors is crucial. In the investigators' previous study of a prediabetes population with an aerobic exercise intervention, the investigators have demonstrated that CD34+ cells are responsive to a change in therapy or intervention within 2-4 weeks and can be used as a reliable non serum based cellular bio-marker. CD34+ cells or endothelial progenitor cells have been used clinically to improve collateral circulation and have been extensively studied as a robust cardiovascular biomarker. Therefore studying CD34+ cells in patients, with or without Canagliflozin (Cana) can give vital information about the medication and its effect on endothelium. This is particularly important as another SGLT2 inhibitor Empagliflozin has shown unparalleled positive cardiovascular effects with an oral hypoglycemic agent. Of course, the question arises whether this clinical trial effect is secondary to glucose effect or direct effect of SGLT2 inhibitor on endothelium. Multiple glucose transporters have been identified in human cells these include GLUTs, SGLTs and even taste receptors (such as TLR2 and TLR3). The investigators know SGLT transporters are present in tubular cells and clearly blocking of SGLT2 in these cells is beneficial. Information on glucose transporter in stem or progenitor cells is almost nil. In our lab the investigators have shown presence of GLUT1, SGLTs and TLR3 on CD34+ cells. The investigators have also demonstrated that hyperglycemia is toxic to CD34+ cells, more than CD31+ positive mature endothelial cells. The investigators hypothesize that blocking SGLT2 in CD34+ cells will be beneficial rather than detrimental. As far as glucose uptake in CD34+ cells are concerned other glucose transporters should be sufficient, in fact lesser amount of glucose entry in a hyperglycemic milieu (type 2 DM patients) may be less pro-inflammatory and less pro-apoptotic. Our preliminary data indicates that mRNA gene expression of both SGLT1 and SGLT2 are noted on human CD34+ cells however only SGLT2 mRNA gene expression is up-regulated several fold in human CD34+ cells in presence of hyperglycemia (20mM glucose). However non primary commercially obtained human endothelium (HUVEC) do not show similar results. An explanation could be SGLT2 expression decreases as the cell transitions from progenitor to mature endothelium. From these results the investigators believe SGLT2 inhibitor will be effective on progenitors and not mature endothelium. The investigators therefore hypothesize that CD34+ cells will be an ideal biomarker to study the effect of the drug. It is possible that Cana, by blocking SGLT2 receptors, may influence other CD34+ cell surface receptors including other glucose transporters and influence its function (most importantly migration). If a particular medication positively influences stem/progenitor cell migration then that medication can positively influence endothelial dysfunction and vascular complications from diabetes. The investigators are particularly interested to note effect of Canagliflozin, a SGLT2 inhibitor on other glucose transporters such as GLUT 1 and 4 while looking at SGLT 1 and 2 on CD34+ cells. It will be helpful to discern these effects particularly when choice of oral diabetic medication in a type 2 diabetes population is practically limited to metformin, DPP4 inhibitors and SGLT2 inhibitors. The investigators plan to investigate the effect of Cana on CD34+ cells, in a placebo matched study. The investigators plan to recruit subjects with type 2 diabetes with the following characteristics: 1) overweight, mild and moderately obese (BMI=25.0-39.9); 2) individuals with early type 2 diabetes (≤15 years) with inadequate control, HbA1C= 7.0 to 10.0%, on Metformin (1-2 grams/day) 3) with no history or presence of macrovascular complication and CKD no higher than stage 2. The subjects will be on Metformin as per ADA, Metformin is the 1st line of care along with life-style modification. While Metformin on its own may affect inflammatory biomarkers, the effect is minimal at best, particularly in presence of CKD and endothelial dysfunction. Also both placebo and the cana group will be on Metformin. The investigators will recruit a total of 40 patients (20 individuals/per group) with approximately a 20% drop out rate over two years and the investigators hope to retain 32 individuals (16/group). Individuals in each group will be matched by sex, age, and race. Participants will be assessed at baseline (week 0), and at 2 and 4 months of drug intake.

Interventions

DRUGCanagliflozin

100 mg

DRUGPlacebo

1 tablet daily for 16 weeks

Sponsors

Janssen Scientific Affairs, LLC
CollaboratorINDUSTRY
George Washington University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
DOUBLE (Subject, Investigator)

Eligibility

Sex/Gender
ALL
Age
30 Years to 70 Years
Healthy volunteers
No

Inclusion criteria

* Age 30-70 years * Currently treated with any combination of the following anti-diabetic therapies: metformin (1-2 grams), insulin, GLP-1 agonists, a DPP-IV inhibitor, or sulfonylureas * Hemoglobin A1C (HbA1C) between 7.0% and 10.0% * Body Mass Index (BMI) between 25 and 39.9 kg/m\^2 (both inclusive)

Exclusion criteria

* Type 1 diabetes * History of hyperosmolar nonketotic coma * History of diabetic ketoacidosis in the last 3 months * Abnormal CBC that is judged by physician to be unsafe to enroll or low hematocrit (\<28 UNITS). * History of pancreatitis * History of diabetic ketoacidosis in the last 3 months * History of cancer (except basal cell carcinoma and cancer that is cured or not active or being treated in the past 5 years) * Heart attack or stroke within 6 months of screening * Clinically significant coronary and/or peripheral vascular disease that would be unsafe to enroll in the study. * Statin use started or dose change in the last 3 months * CKD Stages 3,4 and 5 * Use of oral or injectable anti-diabetic medication other than any combination of the following anti-diabetic therapies: metformin (1-2 grams), insulin, GLP-1 agonists, a DPP-IV inhibitor, or sulfonylureas currently, or in the past 1 month. * Use of consistent long-term steroid medication (oral, inhaled, injected) within the last 3 months * Uncontrolled inflammatory disease, or current chronic use of anti-inflammatory drugs within the last 3 months. \*\*This will be judged on a case by case basis by the PI\*\* * Implanted devices (e.g., pacemakers) that may interact with Body Composition scale * Untreated Systolic Blood Pressure \> 150 mmHg and diastolic Blood Pressure \> 90 mmHg * Active wounds or recent surgery within 3 months * Untreated hyper/hypothyroidism Physical and Laboratory Test Findings: * Pre-existing liver disease and/or ALT and AST \>2.5X's UNL * Serum creatinine levels ≥2.0 * Estimated CrCl \< 60 mL/min (measured by eGFR value) * Triglycerides \>450 mg/dL Allergies and Adverse Drug Reactions: * Subjects with a history of any serious hypersensitivity reaction to Cana or another SGLT2 inhibitor. Sex and Reproductive Status: * Women in reproductive age group will be included in the study but encouraged to use contraceptive method to avoid pregnancy within 16 weeks of study duration. * Women who are pregnant or breast-feeding will be excluded. Other

Design outcomes

Primary

MeasureTime frameDescription
Gene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)16 weeks post Canagliflozin treatment reportedTo determine whether 4 months of Canagliflozin modifies CD34+ cell number, gene expression and migration function. The investigators will obtain a total of approximately 95 mL of peripheral blood per visit. Of these 95 mL, 60-70 mL will be used to obtain CD34+ cells from mononuclear cell (MNC) population and 25-35 mL for biochemistry and plasma ELISA assays. MNC will be obtained from whole blood similar to protocols described before \[13,14\]. MNCs will be put through CD34 magnetic bead column to obtain CD34+ cells (Miltenyi Biotec). Purity of CD34+ cells, post sort, usually is above 90%, to be verified by FACS analysis.
Gene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Percentages)16 weeks post Canagliflozin treatment reportedTo determine whether 4 months of Canagliflozin modifies CD34+ cell number, gene expression and migration function. The investigators will obtain a total of approximately 95 mL of peripheral blood per visit. Of these 95 mL, 60-70 mL will be used to obtain CD34+ cells from mononuclear cell (MNC) population and 25-35 mL for biochemistry and plasma ELISA assays. MNC will be obtained from whole blood similar to protocols described before \[13,14\]. MNCs will be put through CD34 magnetic bead column to obtain CD34+ cells (Miltenyi Biotec). Purity of CD34+ cells, post sort, usually is above 90%, to be verified by FACS analysis.
Gene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Counts)16 weeks post Canagliflozin treatment reportedTo determine whether 4 months of Canagliflozin modifies CD34+ cell number, gene expression and migration function. The investigators will obtain a total of approximately 95 mL of peripheral blood per visit. Of these 95 mL, 60-70 mL will be used to obtain CD34+ cells from mononuclear cell (MNC) population and 25-35 mL for biochemistry and plasma ELISA assays. MNC will be obtained from whole blood similar to protocols described before \[13,14\]. MNCs will be put through CD34 magnetic bead column to obtain CD34+ cells (Miltenyi Biotec). Purity of CD34+ cells, post sort, usually is above 90%, to be verified by FACS analysis.
Gene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Proliferation)16 weeks post Canagliflozin treatment reportedTo determine whether 4 months of Canagliflozin modifies CD34+ cell number, gene expression and migration function. The investigators will obtain a total of approximately 95 mL of peripheral blood per visit. Of these 95 mL, 60-70 mL will be used to obtain CD34+ cells from mononuclear cell (MNC) population and 25-35 mL for biochemistry and plasma ELISA assays. MNC will be obtained from whole blood similar to protocols described before \[13,14\]. MNCs will be put through CD34 magnetic bead column to obtain CD34+ cells (Miltenyi Biotec). Purity of CD34+ cells, post sort, usually is above 90%, to be verified by FACS analysis.

Secondary

MeasureTime frameDescription
Resting Metabolic Rate (RMR)16 weeks post Canagliflozin treatmentUsing ReeVue (trademark) machine, with or without SGLT2 inhibitor therapy to ascertain if Cana has any effect on RMR. Other related trials have shown weight loss but effect on metabolic rate has not been studied .
Pulse Wave Velocity16 weeks post Canagliflozin treatment reported (also measured at 8 weeks)Vessel health assessed by using arterial tonometry with the SphygmoCor CP system from ATCOR .
Serum Endothelial Inflammatory Markers (2)measured at 8 and 16 (reported) weeks post treatmentHighly selective C-reactive protein (hs-CRP)
Glycemic Control16 weeks post Canagliflozin treatment reportedMeasured from blood glucose values (fasting) during visit
Body Fat Percentage16 weeks post Canagliflozin treatmentMeasured using a Tanita body composition scale
Serum Endothelial Inflammatory Markers (1)measured at 8 and 16 (reported) weeks post treatmentIL-6, and TNF-alpha
Kidney Function Markers16 weeks post Canagliflozin treatment reportedCreatinine Clearance and Kidney Function measured from compiled results from a urine sample and blood tests
Creatinine (Urine)16 weeks post Canagliflozin treatment reportedCreatinine Clearance and Kidney Function measured from compiled results from a urine sample and blood tests
Microalbumin16 weeks post Canagliflozin treatment reportedCreatinine Clearance and Kidney Function measured from compiled results from a urine sample and blood tests
eGFR16 weeks post Canagliflozin treatment reportedCreatinine Clearance and Kidney Function measured from compiled results from a urine sample and blood tests
Augmentation Index (Pulse Wave Analysis)16 weeks post Canagliflozin treatment reported (also measured at 8 weeks)Vessel health assessed by using arterial tonometry with the SphygmoCor CP system from ATCOR. Higher values generally correlate with increased cardiovascular risk.
Fasting Lipid Profile16 weeks post Canagliflozin treatment reported (also measured at 8 weeks)Measured from a serum blood Lipid Panel: cholesterol and serum ketone bodies
Glycemic Control (HbA1C)16 weeks post Canagliflozin treatment reportedAs determined by HbA1C values
BMI16 weeks post Canagliflozin treatmentDetermined as weight in kg divided by height in meters squared

Countries

United States

Participant flow

Participants by arm

ArmCount
Active Arm
100 mg of Canagliflozin for 16 weeks Canagliflozin: 100 mg
15
Placebo Arm
Placebo for 16 weeks Placebo: 1 tablet daily for 16 weeks
14
Total29

Baseline characteristics

CharacteristicActive ArmPlacebo ArmTotal
3-hydroxy-butyric acid0.01 mmol/mol Creatinine
STANDARD_DEVIATION 0.01
0.03 mmol/mol Creatinine
STANDARD_DEVIATION 0.01
0.01 mmol/mol Creatinine
STANDARD_DEVIATION 0.02
Acetoacetic Acid1.08 mmol/mol Creatinine
STANDARD_DEVIATION 0.24
0.72 mmol/mol Creatinine
STANDARD_DEVIATION 0.25
0.90 mmol/mol Creatinine
STANDARD_DEVIATION 0.24
Age, Continuous55.64 years
STANDARD_DEVIATION 7.75
59.15 years
STANDARD_DEVIATION 11.24
57.72 years
STANDARD_DEVIATION 9.65
Augmentation Index24.2 Percent Aug pressure of Pulse Pressure
STANDARD_DEVIATION 2.8
22.1 Percent Aug pressure of Pulse Pressure
STANDARD_DEVIATION 2.9
22.95 Percent Aug pressure of Pulse Pressure
STANDARD_DEVIATION 1.94
Blood Pressure
Diastolic
81.14 mmHg
STANDARD_DEVIATION 2.04
74.92 mmHg
STANDARD_DEVIATION 1.94
78.34 mmHg
STANDARD_DEVIATION 1.51
Blood Pressure
Systolic
125.79 mmHg
STANDARD_DEVIATION 3.07
125.77 mmHg
STANDARD_DEVIATION 5.28
125.78 mmHg
STANDARD_DEVIATION 2.98
BMI30.71 kg/m^2
STANDARD_DEVIATION 1.41
33.11 kg/m^2
STANDARD_DEVIATION 1.08
31.55 kg/m^2
STANDARD_DEVIATION 0.92
Body Fat Percentage32.92 percentage of body fat
STANDARD_DEVIATION 2.39
39.65 percentage of body fat
STANDARD_DEVIATION 2.64
36.14 percentage of body fat
STANDARD_DEVIATION 1.86
%CD34+0.94 percentage of MNCs
STANDARD_DEVIATION 0.19
1.01 percentage of MNCs
STANDARD_DEVIATION 0.19
0.98 percentage of MNCs
STANDARD_DEVIATION 0.18
Colony Forming Units6.08 CFU
STANDARD_DEVIATION 1.95
10.30 CFU
STANDARD_DEVIATION 2.03
8.14 CFU
STANDARD_DEVIATION 0.98
C-reactive Protein0.54 mg/dL
STANDARD_DEVIATION 0.2
1.03 mg/dL
STANDARD_DEVIATION 0.2
0.79 mg/dL
STANDARD_DEVIATION 0.2
Creatinine0.96 mg/dL
STANDARD_DEVIATION 0.05
0.84 mg/dL
STANDARD_DEVIATION 0.05
0.90 mg/dL
STANDARD_DEVIATION 0.04
eGFR80.24 mL/min
STANDARD_DEVIATION 4.27
85.22 mL/min
STANDARD_DEVIATION 4.43
82.43 mL/min
STANDARD_DEVIATION 3.08
HbA1C8.39 percentage of hemoglobin
STANDARD_DEVIATION 0.36
7.93 percentage of hemoglobin
STANDARD_DEVIATION 0.33
8.14 percentage of hemoglobin
STANDARD_DEVIATION 0.24
HDL42.96 mg/dL
STANDARD_DEVIATION 3.47
51.56 mg/dL
STANDARD_DEVIATION 3.6
47.0 mg/dL
STANDARD_DEVIATION 2.5
Insulin2.50 mg/dL
STANDARD_DEVIATION 0.2
2.49 mg/dL
STANDARD_DEVIATION 0.21
2.50 mg/dL
STANDARD_DEVIATION 0.2
LDL/HDL2.19 unitless (ratio)
STANDARD_DEVIATION 0.15
1.68 unitless (ratio)
STANDARD_DEVIATION 0.15
1.94 unitless (ratio)
STANDARD_DEVIATION 0.13
Leptin28.36 ug/dL
STANDARD_DEVIATION 3.3
39.84 ug/dL
STANDARD_DEVIATION 3.34
33.29 ug/dL
STANDARD_DEVIATION 4.02
Mean MNC147.75 cells*10^6/mL
STANDARD_DEVIATION 15.54
167.00 cells*10^6/mL
STANDARD_DEVIATION 16.08
157.04 cells*10^6/mL
STANDARD_DEVIATION 10.41
Nephrin5.39 ug/dL
STANDARD_DEVIATION 0.51
6.15 ug/dL
STANDARD_DEVIATION 0.55
5.77 ug/dL
STANDARD_DEVIATION 0.54
PODXL7.05 ug/dL
STANDARD_DEVIATION 0.31
6.72 ug/dL
STANDARD_DEVIATION 0.33
6.89 ug/dL
STANDARD_DEVIATION 0.31
Pulse wave velocity9.59 m/s
STANDARD_DEVIATION 0.66
11.19 m/s
STANDARD_DEVIATION 0.64
10.81 m/s
STANDARD_DEVIATION 0.4
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
4 Participants1 Participants5 Participants
Race (NIH/OMB)
Black or African American
6 Participants9 Participants15 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
White
5 Participants4 Participants9 Participants
Region of Enrollment
United States
15 participants14 participants29 participants
SDF-1a5.49 pg/mL
STANDARD_DEVIATION 0.46
6.34 pg/mL
STANDARD_DEVIATION 0.47
5.92 pg/mL
STANDARD_DEVIATION 0.46
Sex: Female, Male
Female
7 Participants6 Participants13 Participants
Sex: Female, Male
Male
8 Participants8 Participants16 Participants
Total Cholesterol167.78 mg/dL
STANDARD_DEVIATION 9.74
163.40 mg/dL
STANDARD_DEVIATION 10.09
166.60 mg/dL
STANDARD_DEVIATION 7.08

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 150 / 14
other
Total, other adverse events
0 / 150 / 14
serious
Total, serious adverse events
0 / 150 / 14

Outcome results

Primary

Gene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Counts)

To determine whether 4 months of Canagliflozin modifies CD34+ cell number, gene expression and migration function. The investigators will obtain a total of approximately 95 mL of peripheral blood per visit. Of these 95 mL, 60-70 mL will be used to obtain CD34+ cells from mononuclear cell (MNC) population and 25-35 mL for biochemistry and plasma ELISA assays. MNC will be obtained from whole blood similar to protocols described before \[13,14\]. MNCs will be put through CD34 magnetic bead column to obtain CD34+ cells (Miltenyi Biotec). Purity of CD34+ cells, post sort, usually is above 90%, to be verified by FACS analysis.

Time frame: 16 weeks post Canagliflozin treatment reported

ArmMeasureGroupValue (MEAN)Dispersion
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Counts)Mean MNC count155.09 cells*10^6/mLStandard Deviation 15.54
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Counts)Mean CD34+ve cell count (x100)2682.93 cells*10^6/mLStandard Deviation 491.44
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Counts)Mean MNC count155.09 cells*10^6/mLStandard Deviation 16.08
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Counts)Mean CD34+ve cell count (x100)3157.36 cells*10^6/mLStandard Deviation 508.69
Primary

Gene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Percentages)

To determine whether 4 months of Canagliflozin modifies CD34+ cell number, gene expression and migration function. The investigators will obtain a total of approximately 95 mL of peripheral blood per visit. Of these 95 mL, 60-70 mL will be used to obtain CD34+ cells from mononuclear cell (MNC) population and 25-35 mL for biochemistry and plasma ELISA assays. MNC will be obtained from whole blood similar to protocols described before \[13,14\]. MNCs will be put through CD34 magnetic bead column to obtain CD34+ cells (Miltenyi Biotec). Purity of CD34+ cells, post sort, usually is above 90%, to be verified by FACS analysis.

Time frame: 16 weeks post Canagliflozin treatment reported

ArmMeasureGroupValue (MEAN)Dispersion
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Percentages)Percent of CD34+0.93 percentage of MNCsStandard Deviation 0.17
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Percentages)Percent of CD31+2.58 percentage of MNCsStandard Deviation 0.35
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Percentages)Percent CD34+ and CD184+0.37 percentage of MNCsStandard Deviation 0.09
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Percentages)Percent of CD34+1.23 percentage of MNCsStandard Deviation 0.21
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Percentages)Percent of CD31+2.16 percentage of MNCsStandard Deviation 0.43
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Percentages)Percent CD34+ and CD184+0.61 percentage of MNCsStandard Deviation 0.11
Primary

Gene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Proliferation)

To determine whether 4 months of Canagliflozin modifies CD34+ cell number, gene expression and migration function. The investigators will obtain a total of approximately 95 mL of peripheral blood per visit. Of these 95 mL, 60-70 mL will be used to obtain CD34+ cells from mononuclear cell (MNC) population and 25-35 mL for biochemistry and plasma ELISA assays. MNC will be obtained from whole blood similar to protocols described before \[13,14\]. MNCs will be put through CD34 magnetic bead column to obtain CD34+ cells (Miltenyi Biotec). Purity of CD34+ cells, post sort, usually is above 90%, to be verified by FACS analysis.

Time frame: 16 weeks post Canagliflozin treatment reported

ArmMeasureValue (MEAN)Dispersion
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Proliferation)7.53 Colony forming units (CFU)Standard Deviation 1.89
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Cell Proliferation)13.69 Colony forming units (CFU)Standard Deviation 2.1
Primary

Gene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)

To determine whether 4 months of Canagliflozin modifies CD34+ cell number, gene expression and migration function. The investigators will obtain a total of approximately 95 mL of peripheral blood per visit. Of these 95 mL, 60-70 mL will be used to obtain CD34+ cells from mononuclear cell (MNC) population and 25-35 mL for biochemistry and plasma ELISA assays. MNC will be obtained from whole blood similar to protocols described before \[13,14\]. MNCs will be put through CD34 magnetic bead column to obtain CD34+ cells (Miltenyi Biotec). Purity of CD34+ cells, post sort, usually is above 90%, to be verified by FACS analysis.

Time frame: 16 weeks post Canagliflozin treatment reported

ArmMeasureGroupValue (MEAN)Dispersion
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)VEGEF-A1.12 ng/mL in serumStandard Deviation 0.19
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)NOS30.34 ng/mL in serumStandard Deviation 0.21
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)EDN12.10 ng/mL in serumStandard Deviation 0.27
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)Catalase0.20 ng/mL in serumStandard Deviation 0.26
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)PECAM1.28 ng/mL in serumStandard Deviation 0.12
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)GPX352.25 ng/mL in serumStandard Deviation 0.54
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)CXCR4 Expression1.58 ng/mL in serumStandard Deviation 0.18
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)SDF 10 NG0.26 ng/mL in serumStandard Deviation 0.03
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)KDR1.16 ng/mL in serumStandard Deviation 0.2
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)SOD21.36 ng/mL in serumStandard Deviation 0.24
Active ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)CXCL12 Expression0.63 ng/mL in serumStandard Deviation 0.18
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)SOD20.92 ng/mL in serumStandard Deviation 0.24
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)CXCL12 Expression0.33 ng/mL in serumStandard Deviation 0.17
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)CXCR4 Expression0.90 ng/mL in serumStandard Deviation 0.18
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)EDN11.03 ng/mL in serumStandard Deviation 0.29
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)VEGEF-A0.83 ng/mL in serumStandard Deviation 0.19
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)PECAM0.89 ng/mL in serumStandard Deviation 0.12
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)KDR0.5 ng/mL in serumStandard Deviation 0.2
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)NOS3-0.25 ng/mL in serumStandard Deviation 0.21
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)Catalase-0.61 ng/mL in serumStandard Deviation 0.26
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)GPX351.71 ng/mL in serumStandard Deviation 0.54
Placebo ArmGene Expression and Function Change of CD34+ Endothelial Progenitor Cells (Protein Expression)SDF 10 NG0.23 ng/mL in serumStandard Deviation 0.03
Secondary

Augmentation Index (Pulse Wave Analysis)

Vessel health assessed by using arterial tonometry with the SphygmoCor CP system from ATCOR. Higher values generally correlate with increased cardiovascular risk.

Time frame: 16 weeks post Canagliflozin treatment reported (also measured at 8 weeks)

ArmMeasureValue (MEAN)Dispersion
Active ArmAugmentation Index (Pulse Wave Analysis)28.67 percent aug pressure of pulse pressureStandard Deviation 2.8
Placebo ArmAugmentation Index (Pulse Wave Analysis)21.37 percent aug pressure of pulse pressureStandard Deviation 3.2
Secondary

BMI

Determined as weight in kg divided by height in meters squared

Time frame: 16 weeks post Canagliflozin treatment

ArmMeasureValue (MEAN)Dispersion
Active ArmBMI30.53 kg/m^2Standard Error 1.29
Placebo ArmBMI34.64 kg/m^2Standard Error 1.36
Secondary

Body Fat Percentage

Measured using a Tanita body composition scale

Time frame: 16 weeks post Canagliflozin treatment

ArmMeasureValue (MEAN)Dispersion
Active ArmBody Fat Percentage32.46 percentage of body massStandard Error 2.32
Placebo ArmBody Fat Percentage38.58 percentage of body massStandard Error 2.63
Secondary

Creatinine (Urine)

Creatinine Clearance and Kidney Function measured from compiled results from a urine sample and blood tests

Time frame: 16 weeks post Canagliflozin treatment reported

ArmMeasureValue (MEAN)Dispersion
Active ArmCreatinine (Urine)77.08 mmol/LStandard Error 15.58
Placebo ArmCreatinine (Urine)106.23 mmol/LStandard Error 15.62
Secondary

eGFR

Creatinine Clearance and Kidney Function measured from compiled results from a urine sample and blood tests

Time frame: 16 weeks post Canagliflozin treatment reported

ArmMeasureValue (MEAN)Dispersion
Active ArmeGFR79.90 mL/minStandard Error 4.21
Placebo ArmeGFR88.33 mL/minStandard Error 4.52
Secondary

Fasting Lipid Profile

Measured from a serum blood Lipid Panel: cholesterol and serum ketone bodies

Time frame: 16 weeks post Canagliflozin treatment reported (also measured at 8 weeks)

ArmMeasureGroupValue (MEAN)Dispersion
Active ArmFasting Lipid ProfileHDL46.17 mg/dLStandard Deviation 3.48
Active ArmFasting Lipid Profile3-hydroxybutyric acid (ketone body)0.02 mg/dLStandard Deviation 0.01
Active ArmFasting Lipid ProfileLDL96.03 mg/dLStandard Deviation 6.93
Active ArmFasting Lipid ProfileAcetoacetic acid (ketone body)0.69 mg/dLStandard Deviation 0.24
Active ArmFasting Lipid ProfileCholesterol171.57 mg/dLStandard Deviation 9.84
Placebo ArmFasting Lipid ProfileAcetoacetic acid (ketone body)0.30 mg/dLStandard Deviation 0.27
Placebo ArmFasting Lipid ProfileCholesterol147.76 mg/dLStandard Deviation 10.61
Placebo ArmFasting Lipid ProfileHDL51.67 mg/dLStandard Deviation 3.69
Placebo ArmFasting Lipid ProfileLDL82.672 mg/dLStandard Deviation 8.27
Placebo ArmFasting Lipid Profile3-hydroxybutyric acid (ketone body)0.03 mg/dLStandard Deviation 0.01
Secondary

Glycemic Control

Measured from blood glucose values (fasting) during visit

Time frame: 16 weeks post Canagliflozin treatment reported

ArmMeasureValue (MEAN)Dispersion
Active ArmGlycemic Control142.79 mg/dLStandard Deviation 45.24
Placebo ArmGlycemic Control158.0 mg/dLStandard Deviation 38.4
Secondary

Glycemic Control (HbA1C)

As determined by HbA1C values

Time frame: 16 weeks post Canagliflozin treatment reported

ArmMeasureValue (MEAN)Dispersion
Active ArmGlycemic Control (HbA1C)7.85 percentage of hemoglobinStandard Deviation 1.66
Placebo ArmGlycemic Control (HbA1C)8.26 percentage of hemoglobinStandard Deviation 1.52
Secondary

Kidney Function Markers

Creatinine Clearance and Kidney Function measured from compiled results from a urine sample and blood tests

Time frame: 16 weeks post Canagliflozin treatment reported

ArmMeasureGroupValue (MEAN)Dispersion
Active ArmKidney Function MarkersPODXL6.62 ug/dLStandard Error 0.3
Active ArmKidney Function MarkersNephrin5.24 ug/dLStandard Error 0.5
Active ArmKidney Function MarkersWilm's Tumor5.75 ug/dLStandard Error 0.59
Placebo ArmKidney Function MarkersPODXL6.68 ug/dLStandard Error 0.4
Placebo ArmKidney Function MarkersNephrin5.87 ug/dLStandard Error 0.65
Placebo ArmKidney Function MarkersWilm's Tumor6.36 ug/dLStandard Error 0.75
Secondary

Microalbumin

Creatinine Clearance and Kidney Function measured from compiled results from a urine sample and blood tests

Time frame: 16 weeks post Canagliflozin treatment reported

ArmMeasureValue (MEAN)Dispersion
Active ArmMicroalbumin33.97 mg/g creatinineStandard Error 13.24
Placebo ArmMicroalbumin43.41 mg/g creatinineStandard Error 26.17
Secondary

Pulse Wave Velocity

Vessel health assessed by using arterial tonometry with the SphygmoCor CP system from ATCOR .

Time frame: 16 weeks post Canagliflozin treatment reported (also measured at 8 weeks)

ArmMeasureValue (MEAN)Dispersion
Active ArmPulse Wave Velocity10.12 m/sStandard Deviation 0.63
Placebo ArmPulse Wave Velocity11.42 m/sStandard Deviation 0.7
Secondary

Resting Metabolic Rate (RMR)

Using ReeVue (trademark) machine, with or without SGLT2 inhibitor therapy to ascertain if Cana has any effect on RMR. Other related trials have shown weight loss but effect on metabolic rate has not been studied .

Time frame: 16 weeks post Canagliflozin treatment

ArmMeasureValue (MEAN)Dispersion
Active ArmResting Metabolic Rate (RMR)1999.31 kcal/dayStandard Error 67.45
Placebo ArmResting Metabolic Rate (RMR)1863.01 kcal/dayStandard Error 165.91
Secondary

Serum Endothelial Inflammatory Markers (1)

IL-6, and TNF-alpha

Time frame: measured at 8 and 16 (reported) weeks post treatment

ArmMeasureGroupValue (MEAN)Dispersion
Active ArmSerum Endothelial Inflammatory Markers (1)IL-64.56 pg/mLStandard Deviation 4.91
Active ArmSerum Endothelial Inflammatory Markers (1)TNF-alpha1.36 pg/mLStandard Deviation 0.34
Placebo ArmSerum Endothelial Inflammatory Markers (1)IL-63.21 pg/mLStandard Deviation 1.82
Placebo ArmSerum Endothelial Inflammatory Markers (1)TNF-alpha1.63 pg/mLStandard Deviation 0.53
Secondary

Serum Endothelial Inflammatory Markers (2)

Highly selective C-reactive protein (hs-CRP)

Time frame: measured at 8 and 16 (reported) weeks post treatment

ArmMeasureValue (MEAN)Dispersion
Active ArmSerum Endothelial Inflammatory Markers (2)0.63 mg/LStandard Deviation 0.2
Placebo ArmSerum Endothelial Inflammatory Markers (2)0.92 mg/LStandard Deviation 0.2

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