A Phase 1 interventional study of Diazoxide oral suspension, 1 mg per kg per dose and Diazoxide oral suspension, 2 mg per kg per dose in Hyperinsulinemia, Insulin Resistance and Non-Alcoholic Fatty Liver Disease, sponsored by Columbia University. Completed at 1 site in United States. Open to participants aged 18 Years to 70 Years. Per ClinicalTrials.gov, last updated 2026-01-07.
Sponsored by Columbia University · Phase 1, Interventional, and Basic science
The goal of this clinical trial is to compare a two-week course of diazoxide (at two different doses) and placebo in people with overweight/obesity and insulin resistance (IR) with, or at high risk for, non-alcoholic fatty liver disease (NAFLD). The main questions it aims to answer are how mitigation of compensatory hyperinsulinemia with diazoxide affects parameters of glucose and lipid metabolism (how people with IR and NAFLD respond to lowering high insulin levels so that the investigators can see what happens to how the liver handles fat and sugar).
Participants will:
Researchers will compare fasting blood tests at intervals during the study period in participants randomized (like the flip of a coin) to diazoxide 1 mpk, diazoxide 2 mpk, or placebo, to see how the drug treatment affects plasma glucose, serum insulin, and serum lipid parameters (triglycerides, free fatty acids, and apolipoprotein B). They will also consume heavy (deuterated) water to assess de novo lipogenesis (building of new fatty acids by the liver).
Non-alcoholic fatty liver disease (NAFLD) is an under-appreciated complication of lipid dysmetabolism in type 2 diabetes (T2DM). Although it appears that insulin resistance (IR) is a mechanism common to both, the pathophysiology of its connection to unhealthy fat accumulation in the liver remains unclear. The investigators propose that the hyperinsulinemia that accompanies IR drives the excess hepatic de novo lipogenesis (DNL) that characterizes IR-associated NAFLD (IR-NAFLD). As such, despite its potential impact on glucose tolerance, lowering insulin levels might attenuate the pro-steatotic drive in patients with IR. The investigators' long-term objective, therefore, is to blunt endogenous insulin secretion using the insulin anti-secretagogue diazoxide in order to assess the impact on DNL. However, in order to optimize diazoxide treatment conditions, the investigators must first perform a pilot \& feasibility study.
This is a single-center, randomized, double blinded, placebo-controlled clinical trial to provide pilot and feasibility data on the use of diazoxide oral suspension to ameliorate hyperinsulinemia in participants with overweight/obesity and insulin resistance (prediabetic state or elevated Homeostasis Model Assessment of Insulin Resistance (HOMA-IR) score, + fasting hyperinsulinemia) who are diagnosed with, or clinically judged to be at high risk of, NAFLD. Participants will be randomized to one of three parallel arms: placebo, diazoxide at 1 mg per kg of body weight (mpk) per dose, or diazoxide at 2 mpk per dose, for a total of 27 doses over 14 days. They will also consume heavy (deuterated) water for a total of 32 doses of 50 ml over 14 days to measure de novo lipogenesis, an exploratory endpoint. They will present for outpatient blood draws and saliva collections after an overnight fast at four time points during the study course. Additionally, participants will follow a weight-maintaining diet and wear a professional continuous glucose monitor (CGM) throughout.
Evidence of insulin resistance, represented by any or all of the following criteria:
i. Meeting either of the American Diabetes Association's definitions for prediabetes or IFG on screening labs:
and/or
ii. Homeostasis Model of Insulin Resistance (HOMA-IR) score ≥ 2.73
Exclusion Criteria:
Concerns arising at screening visit (any of the following):
i. Documented weight loss of ≥ 5.0% of baseline within the previous 6 months
ii. Abnormal blood pressure (including on treatment, if prescribed) • Systolic blood pressure \< 95 mm Hg or > 160 mm Hg, and/or
iii. Abnormal resting heart rate \< 60 bpm or ≥ 100 bpm
iv. Abnormal screening electrocardiogram (or if on file, performed within previous 90 d):
New or previously unknown ischaemic changes that persist on repeat EKG:
•• ST segment elevations
•• T-wave inversions
v. Laboratory evidence of diabetes mellitus:
vi. Positive qualitative serum β-hCG (human chorionic gonadotropin, beta subunit; i.e., pregnancy test) in women of childbearing potential
vii. Liver function abnormalities
viii. Abnormal screening triglycerides > 500 mg/dL
ix. Abnormal screening serum electrolytes (any of the following) • Sodium, potassium, chloride, or bicarbonate levels that are considered clinically significant according to the clinical judgment of the PI • Creatinine equating to estimated glomerular filtration rate \< 60 mL/min/1.73 m2
x. Uric acid level above the upper limit of normal
xi. Glucose-6-phosphate dehydrogenase below the lower limit of normal
COVID-19 precautions
i. Unwillingness to comply with masking requirements per hospital policy
ii. Active, documented COVID-19 at any time after screening
Reproductive concerns
i. Women of childbearing potential not using highly effective contraception, defined as:
ii. Women currently pregnant (tested by serum and/or urine β-hCG)
iii. Women currently breastfeeding
Concerns related to glucose metabolism
i. History of having met any of the American Diabetes Association's definitions of diabetes mellitus (i.e., overt diabetes):
ii. History of gestational diabetes mellitus within the previous 5 years
iii. Use of most antidiabetic medications within the 90 days prior to screening
iv. Clinical concern for absolute insulin deficiency (e.g., type 1 diabetes, pancreatic disease)
Concerns related to lipid metabolism
i. Known diagnoses of familial hypercholesterolemia, familial combined hyperlipidemia, or familial hyperchylomicronemia
ii. Use of certain lipid-lowering drugs within the 90 days prior to screening:
Known, documented history (i.e., not to be newly screened/tested for study purposes), at the time of screening, of any of the following medical conditions:
i. Pancreatic pathology, including but not limited to:
ii. Cardiovascular disease (N.B. uncomplicated hypertension is not exclusionary)
iii. Chronic kidney disease, Stage 3 or higher (estimated glomerular filtration rate \< 60 mL/min/1.73 m2), of any cause
iv. Chronic liver disease other than uncomplicated NAFLD, including but not limited to:
Infiltrative disorders (e.g., sarcoidosis, hemochromatosis, Wilson disease)
v. Gout
vi. Chronic viral illness (N.B. diagnosis based only on medical history; the investigators will not test for any of these viruses at any point in this study)
vii. Malabsorptive conditions
viii. Active seizure disorder (including controlled with antiepileptic drugs)
ix. Psychiatric diseases that:
Require use of anti-dopaminergic antipsychotic drugs associated with significant weight gain/metabolic dysfunction (e.g., clozapine, olanzapine), monoamine oxidase inhibitors, tricyclic antidepressants, or lithium
x. Glucose-6-phosphate dehydrogenase (G6PD) deficiency
xi. Other endocrinopathies:
xii. Venous thromboembolic disease (deep vein thrombosis or pulmonary embolism) or any required use of therapeutic anticoagulation
xiii. Active malignancy, or hormonally active benign neoplasm, except allowances for:
Use of certain medications currently or within 90 d prior to screening:
i. Prescribed medications used for any of the indications in the preceding list of excluded conditions, or their use within 90 d prior to screening, except allowances for:
ii. Vasodilating drugs for any indication: hydralazine, nitrates, phosphodiesterase-5 inhibitors (e.g., sildenafil, tadalafil), minoxidil (oral)
iii. Phenytoin or fosphenytoin for any indication
iv. Oral or parenteral corticosteroids (at greater than prednisone 5 mg daily, or equivalent) for more than 3 days within the previous 90 days; topical and inhaled formulations are permitted
v. Fludrocortisone
vi. Opioids
History of certain weight-loss (bariatric) surgeries, including:
i. Roux-en-Y gastric bypass
ii. Biliopancreatic diversion
iii. Restrictive procedures (lap band, sleeve gastrectomy) performed within past 6 months
Positive urine drug screen, except for:
Participants will ingest a placebo solution (27 doses over 14 days) formulated to approximate the taste of diazoxide oral suspension. Blinding will occur by completely covering single-dose oral syringes with labels.
Drug: Placebo · Device: FreeStyle Libre Pro · Drug: Deuterated water (2H2O/D2O)
Participants will ingest diazoxide oral suspension at 1 mg per kg body weight per dose (27 doses over 14 days). Blinding will occur by completely covering single-dose oral syringes with labels.
Drug: Diazoxide oral suspension, 1 mg per kg per dose · Device: FreeStyle Libre Pro · Drug: Deuterated water (2H2O/D2O)
Participants will ingest diazoxide oral suspension at 2 mg per kg body weight per dose (27 doses over 14 days). Blinding will occur by completely covering single-dose oral syringes with labels.
Drug: Diazoxide oral suspension, 2 mg per kg per dose · Device: FreeStyle Libre Pro · Drug: Deuterated water (2H2O/D2O)
Diazoxide oral suspension provided in label-obscured single-use oral syringes at 1 mg per kg per dose (total of 27 doses over 14 days).
Also known as: Proglycem
Diazoxide oral suspension provided in label-obscured single-use oral syringes at 2 mg per kg per dose (total of 27 doses over 14 days).
Also known as: Proglycem
Flavor-approximate placebo consisting of peppermint extract in diet tonic water, thickened with xanthan gum, provided in label-obscured single-use oral syringes at 2 mg per kg per dose (total of 27 doses over 14 days).
Also known as: Placebo solution
All participants will wear a FreeStyle Libre Pro continuous glucose monitor (CGM) to track glycemic trends in response to study treatments. Investigators and participants will be blinded to CGM readings until after each participant has completed the trial.
All participants will consume 32 aliquots of deuterated water (2H2O/D2O) 50 mL over 14 days to assess hepatic de novo lipogenesis. Tracer enrichment will be determined in blood and saliva.
Also known as: Heavy water
Fasting plasma glucose (absolute values)
Measurement of fasting plasma glucose levels during treatment with diazoxide 1 mpk vs 2 mpk vs placebo (units: mg/dL).
Time frame: Up to Study Day 15
Fasting plasma glucose (relative/change)
Measurement of fasting plasma glucose during treatment with diazoxide 1 mpk vs 2 mpk vs placebo (units: fold difference and/or Δmg/dL versus other groups).
Time frame: Up to Study Day 15
Fasting plasma/serum insulin (absolute values)
Measurement of fasting endogenous insulin levels during treatment with diazoxide 1 mpk vs 2 mpk vs placebo (units: micro-international units \[µIU\] per mL).
Time frame: Up to Study Day 15
Fasting plasma/serum insulin (relative change)
Measurement of fasting endogenous insulin levels during treatment with diazoxide 1 mpk vs 2 mpk vs placebo (units: fold difference and/or ΔµIU/mL versus other groups).
Time frame: Up to Study Day 15
Fasting serum or plasma triglycerides (TG) (absolute values)
Measurement of fasting circulating TG during treatment with diazoxide 1 mpk vs 2 mpk vs placebo (units: mg/dL).
Time frame: Up to Study Day 15
Fasting serum/plasma triglycerides (TG) (relative/change)
Measurement of fasting serum TG during treatment with diazoxide 1 mpk vs 2 mpk vs placebo (units: fold difference and/or Δmg/dL versus other groups).
Time frame: Up to Study Day 15
Fasting serum or plasma free fatty acids (FFA) (absolute values)
Measurement of fasting serum FFA (units: mmol/L) during treatment with diazoxide 1 mpk vs 2 mpk vs placebo
Time frame: Up to Study Day 15
Fasting serum or plasma free fatty acids (FFA) (relative/change)
Measurement of fasting serum FFA during treatment with diazoxide 1 mpk vs 2 mpk vs placebo (units: fold difference and/or Δmmol/L versus other groups)
Time frame: Up to Study Day 15
Fasting serum/plasma apolipoprotein B (ApoB) (absolute values)
Measurement of fasting serum/plasma ApoB during treatment with diazoxide 1 mpk vs 2 mpk vs placebo (units: mg/dL)
Time frame: Up to Study Day 15
Fasting serum/plasma apolipoprotein B (ApoB) (relative/change)
Measurement of fasting serum/plasma ApoB during treatment with diazoxide 1 mpk vs 2 mpk vs placebo (units: mg/dL)
Time frame: Up to Study Day 15
Continuous glucose monitoring (CGM) profile
Measurement of interstitial glucose profiles during treatment with diazoxide 1 mpk vs 2 mpk vs placebo over the 2-week study course
Time frame: Up to Study Day 15
Hepatic de novo lipogenesis (absolute values)
Percent incorporation of newly synthesized fatty acids into serum or VLDL TG (units: %)
Time frame: Up to Study Day 15
Hepatic de novo lipogenesis (relative/change)
Percent incorporation of newly synthesized fatty acids into serum or VLDL TG (units: fold difference and/or ∆% versus other groups)
Time frame: Up to Study Day 15
Deuterium tracer enrichment in body water (measured in blood)
Enrichment of total body water with deuterated water (2H2O/D2O) (units: %)
Time frame: Up to Study Day 15
Deuterium tracer enrichment in body water (measured in saliva)
Enrichment of total body water with deuterated water (2H2O/D2O) (units: %)
Time frame: Up to Study Day 15
Plan to share: Yes — Blood samples will be banked in the Insulin Resistance Biobank and will be made available to other researchers for legitimate research purposes upon request. Associated data will be shared along with specimens in the smallest possible quantity and on a need-to-know basis. No Protected Health Information (PHI) will ever be disclosed to other researchers. All requests will be reviewed by the PI for scientific merit and samples/data will be transferred only upon completion of an Institutional Review Board (IRB)-approved Material Transfer Agreement (MTA) and/or Data Use Agreement (DUA), as appropriate.
Supporting information: Study protocol
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