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Vitamin E and DHA-EE on NAFLD - Randomized, Double-Blind, Placebo-Controlled, Parallel-Group Clinical Trial (PUVENAFLD)

The Effect of Vitamin E and Docosahexaenoic Acid Ethyl Ester on Non-Alcoholic Fatty Liver Disease (NAFLD) - Randomized, Double-Blind, Placebo-Controlled, Parallel-Group Clinical Trial (PUVENAFLD)

Status
Completed
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04198805
Acronym
PUVENAFLD
Enrollment
205
Registered
2019-12-13
Start date
2020-01-03
Completion date
2022-09-01
Last updated
2023-05-25

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

Conditions

Non-Alcoholic Fatty Liver, Non-Alcoholic Fatty Liver Disease, Non-Alcoholic Steatohepatitis

Keywords

Non-Alcoholic Fatty Liver Disease, Non-Alcoholic Fatty Liver, NAFL, NAFLD, Vitamin E, DHA

Brief summary

Multicenter, randomized, double-blinded, placebo-controlled clinical trial is focused on novel treatments for non-alcoholic fatty liver disease (NAFLD), the most common cause of chronic liver disease. The primary objective of the study is to determine the clinical efficacy and safety of Vitamin E \[(all-rac)-α-tocopheryl acetate\] and Omega-3 fatty acid (DHA EE) compared to placebo on reducing liver fat content in participants with NAFLD. There is currently no approved drug treatment for NAFLD or NASH. While several new targets are being evaluated, they are not sufficiently powered to provide definitive data. There is, therefore, a need for well-designed, appropriately powered efficacy (phase 2) trials to define the utility of newer therapies for NAFLD. The combination of Vitamin E and DHA may provide optimal benefit for patients with NAFLD due to their associated mechanisms of action, namely Vitamin E's antioxidant action, preventing lipid oxidation of long-chain fatty acids such as DHA and thus preventing the propagation of free radicals and ROS.

Detailed description

Background information Non-alcoholic fatty liver disease (NAFLD) is characterized by excessive fat accumulation in the liver and is defined by evidence of hepatic steatosis (via imaging or histology) and is not due to secondary liver fat accumulation from excessive alcohol consumption or hereditary disorders (e.g., Wilson's disease). NAFLD is most commonly associated with metabolic syndrome, consisting of obesity, insulin resistance, elevated blood pressure, and dyslipidemia. NAFLD is one of the most common causes of chronic liver disease, globally with a prevalence as high as 30% in Western countries. It includes a spectrum of diseases from steatosis to non-alcoholic steatohepatitis (NASH), liver fibrosis, cirrhosis, and hepatocellular carcinoma. Non-alcoholic fatty liver does not involve hepatocellular injury in the form of ballooning hepatocytes, whereas NASH is defined by steatosis, inflammation, and hepatocyte injury (ballooning) with or without fibrosis. The causes of NAFLD are likely due to a combination of genetic and physiologic factors, namely those that promote oxidative stress and inflammation such as metabolic syndrome, visceral adiposity, and changes in intestinal microbiota. NAFLD is significantly associated with increased risk of Type II Diabetes and cardiovascular disease and increased overall mortality compared to age-matched controls. There is currently no approved drug treatment for NAFLD or NASH. Dietary restrictions for weight loss and increased physical activity are the recommended therapies, albeit with limited success. Investigational products Vitamin E \[(all-rac)-α-tocopheryl acetate\] Vitamin E is a fat-soluble vitamin that is synthesized naturally in plants in four tocopheryl forms: α, β, γ, and δ. All-rac-α-tocopheryl acetate has the highest biological activity in animal models, and it is the α-tocopheryl form that is used to prevent and treat Vitamin E deficiency in humans. Functionally, Vitamin E is an anti-oxidant and peroxyl radical scavenger. It is an inhibitor of lipid peroxidation and can also inhibit and modulate intracellular signaling molecules, e.g., protein kinase C, and nicotinamide adenine dinucleotide phosphate (NADPH) oxidase. α-tocopheryl regulates gene expression of several intracellular enzymes such as 5-lipoxygenase and cyclooxygenase and has anti-inflammatory activity (i.e., decreasing cytokine release and plasma C reactive protein). It is also known to inhibit platelet adhesion and aggregation. \\ DHA Ethyl Ester Long-chain polyunsaturated fatty acid (LC-PUFA), docosahexaenoic acid (DHA) is an essential omega-3 fatty acid for brain, eye and cardiovascular development and health. It significantly reduces triglycerides (TGs), lowers heart rate, lowers blood pressure, and reduces the risk of cardiac death by an overall 8%. Both DHA and eicosapentaenoic acid (EPA) have anti-thrombotic, anti-inflammatory, and anti-oxidative properties. As NAFLD patients are at significantly greater risk of cardiovascular disease and higher overall mortality, the cardioprotective effects of DHA are significant and may be beneficial in the NAFLD population. Potential mechanisms for DHA's effects in NAFLD include the reduction of TG synthesis via activation of peroxisome proliferator-activated receptors (PPAR-α and γ), which accelerates fatty acid oxidation in liver mitochondria. DHA is also known to have an integral role in maintaining and improving cell membrane fluidity, as a fatty acid that is incorporated into the phospholipids of the membrane, thereby optimizing surface receptors and signal transduction pathways in liver cells. The anti-inflammatory role of DHA in NAFLD may be mediated through activation of adiponectin secretion through adults with NAFLD. MRI-PDFF is also an appropriate technique to diagnose and stage disease in those with metabolic syndrome and NAFLD. The clinical trial is designed to test the combination of Vitamin E and DHA against placebo, to demonstrate efficacy and safety. Rationale for conducting the clinical study The combination of Vitamin E and DHA has not been tested in previous clinical trials of adults with NAFLD. This combination may provide optimal benefit for patients with NAFLD due to their associated mechanisms of action, namely Vitamin E's antioxidant action, preventing lipid oxidation of long-chain fatty acids such as DHA and thus preventing the propagation of free radicals and ROS. Vitamin E's protection of LC-PUFA DHA, therefore, assists it in maintaining cell membrane stability and optimal signaling. Their combined anti-inflammatory effects (e.g., inhibiting pro-inflammatory cytokines, increasing adiponectin, and producing docosanoids to resolve inflammation) may also be efficacious for those with metabolic syndrome and NAFLD. The combination of Vitamin E and DHA will correctly be used in this study to determine if a reduction in liver fat occurs after six months of co-administration, using a magnetic resonance imaging (MRI) technique, proton density fat fraction (PDFF). PDFF imaging is non-invasive and highly sensitive to detect liver steatosis in patients with NAFLD.

Interventions

DIETARY_SUPPLEMENTVitamin E [(all-rac)-α-tocopheryl acetate]

Vitamin E (1000 mg) once daily for 6 months (1 capsule) and matching placebos (2 matched capsules) for 6 months

DIETARY_SUPPLEMENTOmega-3 fatty acid (DHA EE)

DHA EE (1.89 g) once daily for 6 months (2 capsules) and matching placebo for DHA EE (1 matched capsule for 6 months)

COMBINATION_PRODUCTOmega-3 fatty acid (DHA EE) & Vitamin E [(all-rac)-α-tocopheryl acetate]

DHA EE (1.89 g) once daily for 6 months and Vitamin E (1000 mg) once daily for 6 months

OTHERPlacebo

Matching soybean placebo (3 capsules) of all arms daily for 6 months.

Sponsors

DSM Nutritional Products, Inc.
CollaboratorINDUSTRY
Naga P. Chalasani
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
QUADRUPLE (Subject, Caregiver, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Male or female gender * ≥18 years of age * A new diagnosis or reconfirmation of previously known fatty liver by imaging (ultrasound or CT or MRI), or by liver biopsy within ≤ 4 years * Fibroscan CAP score \>300db * Hepatic fat fraction ≥12% by MRI PDFF * ALT≥ 40 U/L * eGFR/Creatinine Clearance ≥ 60ml/min * Participants with previously diagnosed Type 2 diabetes (up to 50% of sample): they must either be taking anti-diabetic medications, or their fasting (\>10 hours) glucose must be ≥ 100 mg/dL at the time of screening * Stable weight (±5%) for at least 3 months * Subjects willing and able to give written informed consent and to understand, to participant and to comply with the clinical study requirements.

Exclusion criteria

* Evidence of alternative causes of hepatic steatosis or other forms of chronic liver disease, e.g. Hep.B, Hep.C * Evidence of acute Hepatitis A * Serum ALT or AST ≥ 250 U/L * Serum Alkaline Phosphatase \> 2 ULN * Total bilirubin \> 2 ULN in the absence of Gilbert's Syndrome \[In patients with Gilbert's Syndrome, direct bilirubin must not exceed 2 ULN\] * HbA1c≥9.5% * Decompensated acute or chronic liver disease * Clinical, imaging or histological evidence of cirrhosis * Use of anti-NASH drugs (e.g. thiazolidinediones) in the 3 months prior to randomization * Use of a non-stable dose of statins or fibrates in the 3 months prior to randomization * Use of fish oil, algal oil or Krill oil supplements, drugs or foods fortified with omega-3s in the 2 months prior to randomization (\>200mg DHA/d and/or \>60mg EPA/d by FFQ) * Known intolerance to vitamin E or DHA * Malabsorption of Vit E (e.g. due to steatorrhea, chronic pancreatitis, severe cholestasis) * Vitamin E supplementation of greater than 100 IU/day in the 3 months prior to randomization * History of bariatric surgery (jejunoileal bypass or gastric weight loss surgery) or currently undergoing evaluation for bariatric surgery * History of biliary diversion * Known positivity for antibody to Human Immunodeficiency Virus (HIV) * Patients with coagulopathy (PT ≥3 sec.from ULN), thrombocytopenia (\<70K) * Contraindication to MRI (implants, metal…) * Active, serious medical disease or disease diagnosis of a life-expectancy less than 5 years * Ongoing or recent alcohol consumption \> 21 drinks (1 drink= 12 oz regular beer, or 5 oz wine, or 1.5 oz distilled spirits) per week in men and \> 14 drinks per week in women as per subject self-report as part of medical history. * Active substance abuse, such as oral, inhaled or injected illicit drugs (except marijuana), in the year prior to screening * Women of childbearing potential: positive pregnancy test during screening or at randomization or unwillingness to use an effective form of birth control during the trial * Women who are breastfeeding * Any other condition which, in the opinion of the investigator would impede compliance or hinder completion of the study * Subjects who are enrolled in an interventional clinical study or have received an investigational new drug or product within the last 30 days prior to screening * Participants diagnosed with type 1 diabetes

Design outcomes

Primary

MeasureTime frameDescription
Change in Hepatic Fat Fraction [%] Between of Vitamin E and DHA EE vs PlaceboBaseline to 6 monthsA change in liver fat content relative to baseline between Vitamin E and DHA EE vs placebo. This will be measured by MRI-PDFF at baseline and after 6 months of intervention (value at 6 months minus value at baseline).

Secondary

MeasureTime frameDescription
Change in Hepatic Fat Fraction [%] Between DHA EE vs Placebo ArmBaseline to 6 monthsChange in liver fat content relative to baseline between DHA EE vs placebo arm. This will be measured by MRI-PDFF at baseline and after 6 months of intervention (value at 6 months minus value at baseline).
Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist Circumference.Baseline to 6 monthsEvaluation of baseline and 6 month measurements of waist circumference in the DHA EE and /or Vitamin E intervention over a 6 month period.
Change After 6 Months of DHA EE and /or Vitamin E Intervention in the Anthropometric Measure, Bodyweight.Baseline to 6 monthsEvaluation of baseline and 6-month measurements of body weight in the DHA EE and /or Vitamin E intervention over a 6 month period.
Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist-to-hip Ratio .Baseline to 6 monthsEvaluation of baseline and 6-month measurements of waist-to-hip ratio (the circumference of the waist divided by the circumference of the hips) in the DHA EE and /or Vitamin E intervention over a 6 month period.
Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Body Mass Index (BMI)Baseline to 6 monthsEvaluation of baseline and 6-month measurements of body mass index (BMI) in the DHA EE and /or Vitamin E intervention over a 6 month period.
Change in Insulin Levels to Determine Insulin ResistanceBaseline to 6 months
Change in Liver Enzymes (ALT) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.Baseline to 6 monthsEvaluation of baseline and 6-month liver enzymes: alanine transaminase (ALT) in the DHA EE and /or Vitamin E intervention over a 6 month period value at (6 months minus value at baseline).
Change in Liver Enzymes (AST) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.Baseline to 6 monthsEvaluation of baseline and 6-month liver enzymes: aspartate aminotransferase (AST) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Liver Enzymes Bilirubin in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.Baseline to 6 monthsEvaluation of baseline and 6-month liver enzymes: Bilirubin in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Liver Enzymes Alkaline Phosphatase in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.Baseline to 6 monthsEvaluation of baseline and 6-month liver enzymes: Alkaline Phosphatase in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Fibrosis-4 (FIB-4) ScoreBaseline to 6 monthsThe formula for FIB-4 is: Age (\[yr\] x AST \[U/L\]) / ((PLT \[10(9)/L\]) x (ALT \[U/L\])(1/2)). A value of FIB-4 below 1.30 is considered as low risk for advanced fibrosis; a value of FIB-4 over 2.67 is considered as high risk for advanced fibrosis
Change in Hepatic Fat Fraction [%] Between Vitamin E vs Placebo ArmBaseline to 6 monthsChange in liver fat content relative to baseline between Vitamin E vs placebo arm. This will be measured by MRI-PDFF at baseline and after 6 months of intervention (value at 6 months minus value at baseline).
Change in Plasma DHA EE ConcentrationBaseline to 6 monthsEvaluation of baseline and 6-month plasma DHA EE concentration in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Lipid Profile (HDL-C)Baseline to 6 monthsEvaluation of baseline and 6-month lipid profile (HDL-C) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Lipid Profile (Low Density Lipoprotein (LDL-C))Baseline to 6 monthsEvaluation of baseline and 6-month lipid profile (low density lipoprotein (LDL-C))in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Lipid Profile (Triglycerides)Baseline to 6 monthsEvaluation of baseline and 6-month lipid profile (TGs)in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Lipid Profile (Oxidized LDL)Baseline to 6 monthsEvaluation of baseline and 6-month lipid profile (oxidized LDL) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Health Related Quality of Life Score (Short Form (SF-36))Baseline to 6 monthsEvaluation of baseline and 6-month quality of life score (SF-36) in the DHA EE and /or Vitamin E intervention over a 6 month period (value at 6 months minus value at baseline). The SF-36 consists of eight scaled scores, which are the weighted sums of the questions in their section. Each scale is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. The lower the score the more disability. The higher the score the less disability
Change in Dietary Intake Levels of Long-chain Polyunsaturated Fatty Acids (LC-PUFA ) (i.e. DHA and EPA) as Measured by the Food Frequency Questionnaire (FFQ)Baseline to 6 monthsEvaluation of baseline and 6-month dietary intake levels of LC-PUFA (i.e. DHA and EPA) as measured by the Food Frequency Questionnaire (FFQ)in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Inflammatory Markers (Cytokeratin 18 (CK-18))Baseline to 6 monthsEvaluation of baseline and 6-month inflammatory markers (cytokeratin 18) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Inflammatory Markers (IL-1β)Baseline to 6 monthsEvaluation of baseline and 6-month inflammatory markers (IL-1β) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Inflammatory Markers (TNFα)Baseline to 6 monthsEvaluation of baseline and 6-month inflammatory markers (TNFα) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).
Change in Plasma Vitamin E ConcentrationBaseline to 6 monthsEvaluation of baseline and 6-month plasma Vitamin E concentration in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Countries

United States

Participant flow

Participants by arm

ArmCount
Vitamin E (1000 mg)
Vitamin E (1000 mg) once daily for 6 months (1 capsule) and matching placebos (2 matched capsules) for 6 months. Vitamin E \[(all-rac)-α-tocopheryl acetate\]: Vitamin E (1000 mg) once daily for 6 months (1 capsule) and matching placebos (2 matched capsules) for 6 months
33
DHA EE (1.89 g)
DHA EE (1.89 g) once daily for 6 months (2 capsules) and matching placebo for DHA EE (1 matched capsule for 6 months). Omega-3 fatty acid (DHA EE): DHA EE (1.89 g) once daily for 6 months (2 capsules) and matching placebo for DHA EE (1 matched capsule for 6 months)
34
DHA EE (1.89 g) and Vitamin E (1000 mg)
DHA EE (1.89 g) once daily for 6 months and Vitamin E (1000 mg) once daily for 6 months. Omega-3 fatty acid (DHA EE) & Vitamin E \[(all-rac)-α-tocopheryl acetate\]: DHA EE (1.89 g) once daily for 6 months and Vitamin E (1000 mg) once daily for 6 months
66
Placebo
Matching soybean oil placebo (3 capsules) of all arms daily for 6 months. Placebo: Matching soybean placebo (3 capsules) of all arms daily for 6 months.
70
Total203

Withdrawals & dropouts

PeriodReasonFG000FG001FG002FG003
Overall StudyDeath0001
Overall StudyEarly Termination8469

Baseline characteristics

CharacteristicVitamin E (1000 mg)TotalPlaceboDHA EE (1.89 g) and Vitamin E (1000 mg)DHA EE (1.89 g)
Age, Continuous51.3 Years
STANDARD_DEVIATION 15.4
50.9 Years
STANDARD_DEVIATION 12.9
50.7 Years
STANDARD_DEVIATION 12.6
50.0 Years
STANDARD_DEVIATION 12.1
52.8 Years
STANDARD_DEVIATION 12.8
Ethnicity (NIH/OMB)
Hispanic or Latino
23 Participants120 Participants40 Participants42 Participants15 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
10 Participants83 Participants30 Participants24 Participants19 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
0 Participants4 Participants2 Participants1 Participants1 Participants
Race (NIH/OMB)
Black or African American
3 Participants13 Participants7 Participants3 Participants0 Participants
Race (NIH/OMB)
More than one race
0 Participants1 Participants0 Participants1 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants1 Participants0 Participants0 Participants1 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants0 Participants0 Participants
Race (NIH/OMB)
White
30 Participants184 Participants61 Participants61 Participants32 Participants
Region of Enrollment
United States
33 participants203 participants70 participants66 participants34 participants
Sex: Female, Male
Female
20 Participants108 Participants34 Participants35 Participants19 Participants
Sex: Female, Male
Male
13 Participants95 Participants36 Participants31 Participants15 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
EG003
affected / at risk
deaths
Total, all-cause mortality
0 / 340 / 340 / 671 / 70
other
Total, other adverse events
6 / 3417 / 3418 / 6725 / 70
serious
Total, serious adverse events
0 / 340 / 341 / 671 / 70

Outcome results

Primary

Change in Hepatic Fat Fraction [%] Between of Vitamin E and DHA EE vs Placebo

A change in liver fat content relative to baseline between Vitamin E and DHA EE vs placebo. This will be measured by MRI-PDFF at baseline and after 6 months of intervention (value at 6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Hepatic Fat Fraction [%] Between of Vitamin E and DHA EE vs Placebo-6.8 Percentage of liver fatStandard Deviation 26.4
PlaceboChange in Hepatic Fat Fraction [%] Between of Vitamin E and DHA EE vs Placebo-8.2 Percentage of liver fatStandard Deviation 18.2
Secondary

Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Body Mass Index (BMI)

Evaluation of baseline and 6-month measurements of body mass index (BMI) in the DHA EE and /or Vitamin E intervention over a 6 month period.

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Body Mass Index (BMI)0.1 kg/m^2Standard Deviation 1.3
PlaceboChange After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Body Mass Index (BMI)0.2 kg/m^2Standard Deviation 1
DHA EE (1.89 g)Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Body Mass Index (BMI)-0.0 kg/m^2Standard Deviation 1.5
PlaceboChange After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Body Mass Index (BMI)-0.0 kg/m^2Standard Deviation 1.3
Secondary

Change After 6 Months of DHA EE and /or Vitamin E Intervention in the Anthropometric Measure, Bodyweight.

Evaluation of baseline and 6-month measurements of body weight in the DHA EE and /or Vitamin E intervention over a 6 month period.

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change After 6 Months of DHA EE and /or Vitamin E Intervention in the Anthropometric Measure, Bodyweight.0.4 kilogram (kg)Standard Deviation 3.7
PlaceboChange After 6 Months of DHA EE and /or Vitamin E Intervention in the Anthropometric Measure, Bodyweight.0.5 kilogram (kg)Standard Deviation 2.7
DHA EE (1.89 g)Change After 6 Months of DHA EE and /or Vitamin E Intervention in the Anthropometric Measure, Bodyweight.0.0 kilogram (kg)Standard Deviation 4.1
PlaceboChange After 6 Months of DHA EE and /or Vitamin E Intervention in the Anthropometric Measure, Bodyweight.-0.0 kilogram (kg)Standard Deviation 3.7
Secondary

Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist Circumference.

Evaluation of baseline and 6 month measurements of waist circumference in the DHA EE and /or Vitamin E intervention over a 6 month period.

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist Circumference.0.8 centimeters (cm)Standard Deviation 6.5
PlaceboChange After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist Circumference.-0.5 centimeters (cm)Standard Deviation 4.9
DHA EE (1.89 g)Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist Circumference.-0.2 centimeters (cm)Standard Deviation 6
PlaceboChange After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist Circumference.0.8 centimeters (cm)Standard Deviation 4.3
Secondary

Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist-to-hip Ratio .

Evaluation of baseline and 6-month measurements of waist-to-hip ratio (the circumference of the waist divided by the circumference of the hips) in the DHA EE and /or Vitamin E intervention over a 6 month period.

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist-to-hip Ratio .0.0 ratioStandard Deviation 0
PlaceboChange After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist-to-hip Ratio .-0.0 ratioStandard Deviation 0
DHA EE (1.89 g)Change After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist-to-hip Ratio .0.0 ratioStandard Deviation 0
PlaceboChange After 6 Months of DHA EE and/ or Vitamin E Intervention in the Anthropometric Measure, Waist-to-hip Ratio .-0.0 ratioStandard Deviation 0
Secondary

Change in Dietary Intake Levels of Long-chain Polyunsaturated Fatty Acids (LC-PUFA ) (i.e. DHA and EPA) as Measured by the Food Frequency Questionnaire (FFQ)

Evaluation of baseline and 6-month dietary intake levels of LC-PUFA (i.e. DHA and EPA) as measured by the Food Frequency Questionnaire (FFQ)in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureGroupValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Dietary Intake Levels of Long-chain Polyunsaturated Fatty Acids (LC-PUFA ) (i.e. DHA and EPA) as Measured by the Food Frequency Questionnaire (FFQ)FFQ EPA0.7 mg per dayStandard Deviation 19.7
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Dietary Intake Levels of Long-chain Polyunsaturated Fatty Acids (LC-PUFA ) (i.e. DHA and EPA) as Measured by the Food Frequency Questionnaire (FFQ)FFQ DHA2.3 mg per dayStandard Deviation 39.7
PlaceboChange in Dietary Intake Levels of Long-chain Polyunsaturated Fatty Acids (LC-PUFA ) (i.e. DHA and EPA) as Measured by the Food Frequency Questionnaire (FFQ)FFQ DHA4.4 mg per dayStandard Deviation 14.9
PlaceboChange in Dietary Intake Levels of Long-chain Polyunsaturated Fatty Acids (LC-PUFA ) (i.e. DHA and EPA) as Measured by the Food Frequency Questionnaire (FFQ)FFQ EPA2.4 mg per dayStandard Deviation 9.4
DHA EE (1.89 g)Change in Dietary Intake Levels of Long-chain Polyunsaturated Fatty Acids (LC-PUFA ) (i.e. DHA and EPA) as Measured by the Food Frequency Questionnaire (FFQ)FFQ DHA-0.7 mg per dayStandard Deviation 8.5
DHA EE (1.89 g)Change in Dietary Intake Levels of Long-chain Polyunsaturated Fatty Acids (LC-PUFA ) (i.e. DHA and EPA) as Measured by the Food Frequency Questionnaire (FFQ)FFQ EPA-0.6 mg per dayStandard Deviation 4.8
PlaceboChange in Dietary Intake Levels of Long-chain Polyunsaturated Fatty Acids (LC-PUFA ) (i.e. DHA and EPA) as Measured by the Food Frequency Questionnaire (FFQ)FFQ EPA-0.8 mg per dayStandard Deviation 7.5
PlaceboChange in Dietary Intake Levels of Long-chain Polyunsaturated Fatty Acids (LC-PUFA ) (i.e. DHA and EPA) as Measured by the Food Frequency Questionnaire (FFQ)FFQ DHA-1.6 mg per dayStandard Deviation 12.5
Secondary

Change in Fibrosis-4 (FIB-4) Score

The formula for FIB-4 is: Age (\[yr\] x AST \[U/L\]) / ((PLT \[10(9)/L\]) x (ALT \[U/L\])(1/2)). A value of FIB-4 below 1.30 is considered as low risk for advanced fibrosis; a value of FIB-4 over 2.67 is considered as high risk for advanced fibrosis

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Fibrosis-4 (FIB-4) Score-0.1 units on a scaleStandard Deviation 0.5
PlaceboChange in Fibrosis-4 (FIB-4) Score-0.2 units on a scaleStandard Deviation 0.5
DHA EE (1.89 g)Change in Fibrosis-4 (FIB-4) Score-0.1 units on a scaleStandard Deviation 0.4
PlaceboChange in Fibrosis-4 (FIB-4) Score-0.0 units on a scaleStandard Deviation 0.5
Secondary

Change in Health Related Quality of Life Score (Short Form (SF-36))

Evaluation of baseline and 6-month quality of life score (SF-36) in the DHA EE and /or Vitamin E intervention over a 6 month period (value at 6 months minus value at baseline). The SF-36 consists of eight scaled scores, which are the weighted sums of the questions in their section. Each scale is directly transformed into a 0-100 scale on the assumption that each question carries equal weight. The lower the score the more disability. The higher the score the less disability

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureGroupValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Health Related Quality of Life Score (Short Form (SF-36))Emotional Well-Being-0.4 score on a scaleStandard Deviation 12.6
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Health Related Quality of Life Score (Short Form (SF-36))Energy/Fatigue0.5 score on a scaleStandard Deviation 16.4
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Health Related Quality of Life Score (Short Form (SF-36))General Health-0.4 score on a scaleStandard Deviation 15.2
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Health Related Quality of Life Score (Short Form (SF-36))Pain0.4 score on a scaleStandard Deviation 15.7
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Health Related Quality of Life Score (Short Form (SF-36))Physical Functioning-1.3 score on a scaleStandard Deviation 21.5
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Health Related Quality of Life Score (Short Form (SF-36))Role Limitations Due to Emotional Problems-0.6 score on a scaleStandard Deviation 33.9
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Health Related Quality of Life Score (Short Form (SF-36))Role Limitations Due to Physical Health-2.5 score on a scaleStandard Deviation 27.1
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Health Related Quality of Life Score (Short Form (SF-36))Social Functioning1.9 score on a scaleStandard Deviation 16.4
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Role Limitations Due to Emotional Problems7.7 score on a scaleStandard Deviation 21.7
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Physical Functioning1.5 score on a scaleStandard Deviation 11.5
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Energy/Fatigue4.6 score on a scaleStandard Deviation 11.1
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Social Functioning-1.0 score on a scaleStandard Deviation 20.3
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Role Limitations Due to Physical Health5.8 score on a scaleStandard Deviation 28.6
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Pain3.3 score on a scaleStandard Deviation 9.7
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))General Health0.4 score on a scaleStandard Deviation 10
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Emotional Well-Being-1.9 score on a scaleStandard Deviation 10.7
DHA EE (1.89 g)Change in Health Related Quality of Life Score (Short Form (SF-36))Role Limitations Due to Physical Health1.6 score on a scaleStandard Deviation 35.9
DHA EE (1.89 g)Change in Health Related Quality of Life Score (Short Form (SF-36))General Health2.8 score on a scaleStandard Deviation 14.7
DHA EE (1.89 g)Change in Health Related Quality of Life Score (Short Form (SF-36))Pain-0.8 score on a scaleStandard Deviation 20.3
DHA EE (1.89 g)Change in Health Related Quality of Life Score (Short Form (SF-36))Physical Functioning0.3 score on a scaleStandard Deviation 18
DHA EE (1.89 g)Change in Health Related Quality of Life Score (Short Form (SF-36))Role Limitations Due to Emotional Problems0.0 score on a scaleStandard Deviation 22.4
DHA EE (1.89 g)Change in Health Related Quality of Life Score (Short Form (SF-36))Social Functioning0.0 score on a scaleStandard Deviation 16.8
DHA EE (1.89 g)Change in Health Related Quality of Life Score (Short Form (SF-36))Emotional Well-Being2.3 score on a scaleStandard Deviation 13
DHA EE (1.89 g)Change in Health Related Quality of Life Score (Short Form (SF-36))Energy/Fatigue-1.4 score on a scaleStandard Deviation 17
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))General Health-2.7 score on a scaleStandard Deviation 15
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Pain3.3 score on a scaleStandard Deviation 18.7
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Energy/Fatigue0.8 score on a scaleStandard Deviation 17.5
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Emotional Well-Being0.5 score on a scaleStandard Deviation 16.1
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Physical Functioning0.8 score on a scaleStandard Deviation 15.2
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Social Functioning-1.6 score on a scaleStandard Deviation 17
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Role Limitations Due to Physical Health-4.4 score on a scaleStandard Deviation 24.2
PlaceboChange in Health Related Quality of Life Score (Short Form (SF-36))Role Limitations Due to Emotional Problems-3.2 score on a scaleStandard Deviation 23.9
Secondary

Change in Hepatic Fat Fraction [%] Between DHA EE vs Placebo Arm

Change in liver fat content relative to baseline between DHA EE vs placebo arm. This will be measured by MRI-PDFF at baseline and after 6 months of intervention (value at 6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Hepatic Fat Fraction [%] Between DHA EE vs Placebo Arm2.2 Percentage of liver fatStandard Deviation 24.1
PlaceboChange in Hepatic Fat Fraction [%] Between DHA EE vs Placebo Arm-8.2 Percentage of liver fatStandard Deviation 18.2
Secondary

Change in Hepatic Fat Fraction [%] Between Vitamin E vs Placebo Arm

Change in liver fat content relative to baseline between Vitamin E vs placebo arm. This will be measured by MRI-PDFF at baseline and after 6 months of intervention (value at 6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Hepatic Fat Fraction [%] Between Vitamin E vs Placebo Arm-10.4 Percentage of liver fatStandard Deviation 15.7
PlaceboChange in Hepatic Fat Fraction [%] Between Vitamin E vs Placebo Arm-8.2 Percentage of liver fatStandard Deviation 18.2
Secondary

Change in Inflammatory Markers (Cytokeratin 18 (CK-18))

Evaluation of baseline and 6-month inflammatory markers (cytokeratin 18) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Inflammatory Markers (Cytokeratin 18 (CK-18))-17.7 U/LStandard Deviation 241.5
PlaceboChange in Inflammatory Markers (Cytokeratin 18 (CK-18))-26.8 U/LStandard Deviation 215.7
DHA EE (1.89 g)Change in Inflammatory Markers (Cytokeratin 18 (CK-18))37.3 U/LStandard Deviation 284.3
PlaceboChange in Inflammatory Markers (Cytokeratin 18 (CK-18))61 U/LStandard Deviation 15.1
Secondary

Change in Inflammatory Markers (IL-1β)

Evaluation of baseline and 6-month inflammatory markers (IL-1β) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Inflammatory Markers (IL-1β)0.0 pg/mLStandard Deviation 0.8
PlaceboChange in Inflammatory Markers (IL-1β)-0.1 pg/mLStandard Deviation 1.1
DHA EE (1.89 g)Change in Inflammatory Markers (IL-1β)0.2 pg/mLStandard Deviation 1.3
PlaceboChange in Inflammatory Markers (IL-1β)-0.4 pg/mLStandard Deviation 2.9
Secondary

Change in Inflammatory Markers (TNFα)

Evaluation of baseline and 6-month inflammatory markers (TNFα) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Inflammatory Markers (TNFα)-1.3 pg/mLStandard Deviation 3.4
PlaceboChange in Inflammatory Markers (TNFα)-0.2 pg/mLStandard Deviation 2.5
DHA EE (1.89 g)Change in Inflammatory Markers (TNFα)-0.3 pg/mLStandard Deviation 2.9
PlaceboChange in Inflammatory Markers (TNFα)-0.5 pg/mLStandard Deviation 3
Secondary

Change in Insulin Levels to Determine Insulin Resistance

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Insulin Levels to Determine Insulin Resistance4.7 ulU/mLStandard Deviation 38.7
PlaceboChange in Insulin Levels to Determine Insulin Resistance-5.7 ulU/mLStandard Deviation 47.8
DHA EE (1.89 g)Change in Insulin Levels to Determine Insulin Resistance9.9 ulU/mLStandard Deviation 60.3
PlaceboChange in Insulin Levels to Determine Insulin Resistance4.3 ulU/mLStandard Deviation 43.9
Secondary

Change in Lipid Profile (HDL-C)

Evaluation of baseline and 6-month lipid profile (HDL-C) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Lipid Profile (HDL-C)1.7 mg/dLStandard Deviation 7.4
PlaceboChange in Lipid Profile (HDL-C)0.0 mg/dLStandard Deviation 9.5
DHA EE (1.89 g)Change in Lipid Profile (HDL-C)2.4 mg/dLStandard Deviation 5.5
PlaceboChange in Lipid Profile (HDL-C)0.5 mg/dLStandard Deviation 10.2
Secondary

Change in Lipid Profile (Low Density Lipoprotein (LDL-C))

Evaluation of baseline and 6-month lipid profile (low density lipoprotein (LDL-C))in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Lipid Profile (Low Density Lipoprotein (LDL-C))9.9 mg/dLStandard Deviation 34.8
PlaceboChange in Lipid Profile (Low Density Lipoprotein (LDL-C))2.1 mg/dLStandard Deviation 27.3
DHA EE (1.89 g)Change in Lipid Profile (Low Density Lipoprotein (LDL-C))19.4 mg/dLStandard Deviation 31.2
PlaceboChange in Lipid Profile (Low Density Lipoprotein (LDL-C))5.1 mg/dLStandard Deviation 25.7
Secondary

Change in Lipid Profile (Oxidized LDL)

Evaluation of baseline and 6-month lipid profile (oxidized LDL) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Lipid Profile (Oxidized LDL)4.1 U/LStandard Deviation 13.4
PlaceboChange in Lipid Profile (Oxidized LDL)5.3 U/LStandard Deviation 8.2
DHA EE (1.89 g)Change in Lipid Profile (Oxidized LDL)4.6 U/LStandard Deviation 13.2
PlaceboChange in Lipid Profile (Oxidized LDL)0.5 U/LStandard Deviation 10.6
Secondary

Change in Lipid Profile (Triglycerides)

Evaluation of baseline and 6-month lipid profile (TGs)in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Lipid Profile (Triglycerides)-23.1 mg/dLStandard Deviation 78.5
PlaceboChange in Lipid Profile (Triglycerides)2.0 mg/dLStandard Deviation 107.3
DHA EE (1.89 g)Change in Lipid Profile (Triglycerides)-6.6 mg/dLStandard Deviation 87.6
PlaceboChange in Lipid Profile (Triglycerides)-21.4 mg/dLStandard Deviation 93.9
Secondary

Change in Liver Enzymes (ALT) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.

Evaluation of baseline and 6-month liver enzymes: alanine transaminase (ALT) in the DHA EE and /or Vitamin E intervention over a 6 month period value at (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Liver Enzymes (ALT) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.-4.6 U/LStandard Deviation 53.9
PlaceboChange in Liver Enzymes (ALT) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.-16.7 U/LStandard Deviation 30.5
DHA EE (1.89 g)Change in Liver Enzymes (ALT) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.7.0 U/LStandard Deviation 54.5
PlaceboChange in Liver Enzymes (ALT) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.-6.8 U/LStandard Deviation 32.3
Secondary

Change in Liver Enzymes (AST) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.

Evaluation of baseline and 6-month liver enzymes: aspartate aminotransferase (AST) in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Liver Enzymes (AST) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.-1.4 U/LStandard Deviation 33.1
PlaceboChange in Liver Enzymes (AST) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.-6.4 U/LStandard Deviation 25.1
DHA EE (1.89 g)Change in Liver Enzymes (AST) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.2.9 U/LStandard Deviation 35.4
PlaceboChange in Liver Enzymes (AST) in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.-2.8 U/LStandard Deviation 22.5
Secondary

Change in Liver Enzymes Bilirubin in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.

Evaluation of baseline and 6-month liver enzymes: Bilirubin in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Liver Enzymes Bilirubin in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.0.1 mg/dLStandard Deviation 0.2
PlaceboChange in Liver Enzymes Bilirubin in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.-0.0 mg/dLStandard Deviation 0.1
DHA EE (1.89 g)Change in Liver Enzymes Bilirubin in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.-0.0 mg/dLStandard Deviation 0.2
PlaceboChange in Liver Enzymes Bilirubin in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.0.1 mg/dLStandard Deviation 0.2
Secondary

Change in Plasma DHA EE Concentration

Evaluation of baseline and 6-month plasma DHA EE concentration in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Plasma DHA EE Concentration41.6 ug/mLStandard Deviation 51.9
PlaceboChange in Plasma DHA EE Concentration0.6 ug/mLStandard Deviation 24.9
DHA EE (1.89 g)Change in Plasma DHA EE Concentration52.8 ug/mLStandard Deviation 51.6
PlaceboChange in Plasma DHA EE Concentration-2.6 ug/mLStandard Deviation 17.5
Secondary

Change in Plasma Vitamin E Concentration

Evaluation of baseline and 6-month plasma Vitamin E concentration in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Change in Plasma Vitamin E Concentration6972 ng/mLStandard Deviation 7217.1
PlaceboChange in Plasma Vitamin E Concentration9949 ng/mLStandard Deviation 10086.5
DHA EE (1.89 g)Change in Plasma Vitamin E Concentration480.9 ng/mLStandard Deviation 2898.5
PlaceboChange in Plasma Vitamin E Concentration148.0 ng/mLStandard Deviation 2657.2
Secondary

Liver Enzymes Alkaline Phosphatase in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.

Evaluation of baseline and 6-month liver enzymes: Alkaline Phosphatase in the DHA EE and /or Vitamin E intervention over a 6 month period (6 months minus value at baseline).

Time frame: Baseline to 6 months

Population: Participants analyzed varies from participant workflow due to inconsistencies in what was able to be collected at differing sites and timepoints

ArmMeasureValue (MEAN)Dispersion
DHA EE (1.89 g) and Vitamin E (1000 mg)Liver Enzymes Alkaline Phosphatase in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.-4.1 U/LStandard Deviation 15.6
PlaceboLiver Enzymes Alkaline Phosphatase in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.-0.4 U/LStandard Deviation 15.1
DHA EE (1.89 g)Liver Enzymes Alkaline Phosphatase in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.1.1 U/LStandard Deviation 11.2
PlaceboLiver Enzymes Alkaline Phosphatase in the DHA EE and /or Vitamin E Intervention Over a 6 Month Period.2.5 U/LStandard Deviation 18.4

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