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Omega-3 2100 with CoQ10 Natural Orange Flavor

Oceanblue Professional
4.8
★ ★ ★ ★ ★
(55 ratings)
Coenzyme Q-10 150 mg
Omega-3 2100 mg
Product Image
Score77
Substantial active totals are appealing, but ethyl esters and missing fatty-acid and CoQ10 form details limit confidence.
How scoring works
Quantity:90 Softgel(s) • (30 servings)
Goals:
Anti-Inflammatory Support
Cardiovascular Support
Heart Health
Energy
Skin Health
Anti-Aging
Metabolism Boost

Score 77

Substantial active totals are appealing, but ethyl esters and missing fatty-acid and CoQ10 form details limit confidence.
How scoring works
$42.49($1.41 per serving)
Vitacost
$ 46.73
iHerb
$ 42.49
Vitacost
$ 46.75
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Analysis

The three-softgel serving combines 2,100 mg total omega-3s with 150 mg CoQ10. The oil-rich format supports absorption of the fat-soluble CoQ10.

EPA and DHA are not disclosed separately, and the omega-3s use the less favorable ethyl-ester form. The oil source, antioxidant protection, purity testing, and CoQ10 identity are not included in the supplied data.

Adults seeking substantial combined amounts may accept the three-softgel serving. People who need a precise EPA or DHA dose or prefer a named CoQ10 form should choose a more transparent product.

Who is it for
  • Adults seeking high-total omega-3 with CoQ10
  • People focused on heart and cellular-energy support
  • Users comfortable with three softgels daily
Best for
  • Combined cardiovascular supplementation
  • Mitochondrial energy support
  • High-total omega-3 intake

Pros

  • Provides 2,100 mg total omega-3
  • Includes 150 mg CoQ10
  • Oil base supports CoQ10 absorption

Cons

  • EPA and DHA are not separated
  • Omega-3s use ethyl esters
  • CoQ10 form and oil source are unknown

Warnings

  • The large omega-3 serving may increase bruising or bleeding tendency with anticoagulant or antiplatelet medicines.
  • CoQ10 may reduce warfarin’s anticoagulant response, requiring consistent intake and monitoring.
  • The undisclosed marine-oil source makes allergy screening difficult for people with fish or shellfish allergy.

Nutrient quality

88 Highest impact

Ethyl-ester omega fatty acids are concentrated but generally less efficiently absorbed than triglyceride forms. The main omega and companion ingredients are supplied at substantial, potentially meaningful amounts.

Ingredient transparency

73 High impact

Total omega fatty acids and CoQ10 have clear amounts, but individual EPA and DHA quantities are absent. No proprietary blend hides the listed active quantities.

Customer satisfaction

61 Moderate impact

The supplied aggregate rating metric is exceptionally favorable, though it gives no specific experience details. The limited response count leaves considerable uncertainty.

Value for money

82 Highest impact

Formula strength and quality compare well with the cost. The serving cost is moderate relative to the disclosed formula.

Report analysis

Goals

Anti-Inflammatory Support
Impact
Highest effect
A Goal FitA Strength of SupportB+ CoverageA+ Formula Quality
Coenzyme Q-10 · 150 mg

A substantial omega-3 amount provides strong direct support for inflammation-resolving lipid pathways. CoQ10 adds meaningful mitochondrial antioxidant support without crowding the formula.

Individual EPA and DHA amounts are not disclosed, and the CoQ10 form is unspecified. Omega-3s can add to bleeding risk at high intake when combined with anticoagulant or antiplatelet medicines.

Study evidence
Coenzyme Q-10 Supportive 46 studies
Cardiovascular Support
Impact
Highest effect
A+ Goal FitA- Strength of SupportB+ CoverageA+ Formula Quality
Coenzyme Q-10 · 150 mg

A substantial omega-3 amount and CoQ10 provide strong support for triglyceride management, vascular health, and cardiac energy. The combination addresses two major cardiovascular pathways at meaningful doses.

EPA and DHA are not disclosed separately, and the omega-3s use an ethyl-ester form, which lowers precision and form quality. Lipid-rich softgels still support absorption of the clearly dosed CoQ10.

Study evidence
Coenzyme Q-10 Supportive 89 studies
Heart Health
Impact
Highest effect
A Goal FitB+ Strength of SupportA- CoverageA+ Formula Quality
Coenzyme Q-10 · 150 mg

A substantial omega-3 serving combines with CoQ10 to support lipid management and cardiac cellular energy. The softgel lipid base is well suited to CoQ10 absorption.

Specific EPA and DHA amounts are not disclosed, and the CoQ10 form is unidentified. Those gaps prevent a full assessment despite strong total amounts.

Study evidence
Coenzyme Q-10 Supportive 114 studies
Energy
Impact
Highest effect
A- Goal FitA- Strength of SupportC+ CoverageA+ Formula Quality
Coenzyme Q-10 · 150 mg

CoQ10 directly supports mitochondrial ATP production, while the substantial omega-3 amount provides a complementary lipid base. The combination is most relevant to sustained cellular and cardiovascular energy rather than acute alertness.

The CoQ10 amount is useful, but its ubiquinone or ubiquinol form is not identified. Softgel fat should still support absorption of the fat-soluble active.

Study evidence
Coenzyme Q-10 Supportive 32 studies
Skin Health
Impact
Highest effect
A- Goal FitB Strength of SupportB CoverageA+ Formula Quality
Omega-3 · 2100 mg

Omega-three fats and CoQ10 combine lipid-barrier, inflammatory-balance, and antioxidant support relevant to skin. Both listed active amounts are substantial.

The omega-three oil uses a less absorbable ethyl ester form and does not disclose EPA or DHA separately. The CoQ10 molecular form, fish source, oxidation protection, and independent testing are also missing.

Study evidence
Omega-3 Supportive 35 studies
Anti-Aging
Impact
Highest effect
A- Goal FitB Strength of SupportB+ CoverageA Formula Quality
Coenzyme Q-10 · 150 mgOmega-3 · 2100 mg

CoQ10 and omega-3 fats give the formula a focused combination of mitochondrial and cardiovascular support. Both are supplied at useful amounts, with the fat-rich softgel also helping CoQ10 absorption.

Confidence is limited by the ethyl ester omega-3 form, missing EPA and DHA amounts, and an unspecified CoQ10 form. Those disclosure gaps make the formula less precise than its strong active totals suggest.

Study evidence
Coenzyme Q-10 Supportive 6 studies
Omega-3 Supportive 56 studies
Metabolism Boost
Impact
High effect
C Goal FitC+ Strength of SupportC CoverageA- Formula Quality
Omega-3 · 2100 mgCoenzyme Q-10 · 150 mg

One hundred fifty milligrams of CoQ10 directly supports mitochondrial energy, while the substantial omega-three amount adds cardiometabolic support. The combination does not directly stimulate thermogenesis or support thyroid function.

The CoQ10 amount is useful, but its molecular form is not disclosed and the omega-three fatty acids are supplied as less absorbable ethyl esters. Missing EPA and DHA amounts also limits evaluation of the fatty-acid contribution.

Study evidence
Coenzyme Q-10 Disputed 11 studies
Omega-3 Supportive 42 studies

Ingredients

IngredientAmount per serving
Calories
30 Calorie(s)
Total Fat
2.5 Gram(s)
Cholesterol
10 mg
Protein
1 Gram(s)
Total Omega-3 Fatty Acids (Omega-3 Fatty Acids Ethyl Ester)
2100 mg
Coenzyme Q10
150 mg
Adults 18–50
Report overview
Coenzyme Q-10 · 150 mg OverallScore52
D- Active Ingredient Quality & BioavailabilityB- Dose, Safety & Label TransparencyD- Value
The molecular form is not identified, but omega-3 fats provide a strong lipid base for CoQ10 absorption. The amount is useful for maintenance or moderate support, though three softgels are required. A high serving cost is partly justified by the substantial omega-3 component.
D- Active Ingredient Quality & BioavailabilityF Dose, Safety & Label TransparencyF Value

The label clearly identifies the less bioavailable ethyl ester form and gives only a total omega-3 amount. Missing EPA and DHA amounts prevent verification of active concentration and cost per active gram. The supplied details also omit the oil source, antioxidant protection, and independent purity testing.

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Sources

Published studies used for the product analysis and the top-ranked studies for each ingredient and goal.

  1. Effects of Coenzyme Q10 Supplementation on Lipid Profiles in Adults: A Meta-analysis of Randomized Controlled Trials.
    Liu Z; Tian Z; Zhao D; Liang Y; Dai S; Liu M; Hou S; Dong X; Zhaxinima; Yang Y · The Journal of clinical endocrinology and metabolism · 2022
    Meta-analysis2,794 participants50 studies pooledCardiovascular Support Heart Health forCoenzyme Q-10
  2. Coenzyme Q10 for heart failure.
    Madmani ME; Yusuf Solaiman A; Tamr Agha K; Madmani Y; Shahrour Y; Essali A; Kadro W · The Cochrane database of systematic reviews · 2015
    Systematic review914 participants7 studies pooledCardiovascular Support forCoenzyme Q-10
  3. Coenzyme Q10 and Degenerative Disorders Affecting Longevity: An Overview.
    Mantle D; Hargreaves I · Antioxidants (Basel, Switzerland) · 2020
    Narrative reviewAnti-Aging forCoenzyme Q-10
  4. Coenzyme Q10 Supplementation in Aging and Disease.
    Hernández-Camacho JD; Bernier M; López-Lluch G; Navas P · Frontiers in physiology · 2022
    Narrative reviewAnti-Aging forCoenzyme Q-10
  5. Coenzyme Q10, a cutaneous antioxidant and energizer.
    Hoppe U; Bergemann J; Diembeck W; Ennen J; Gohla S; Harris I; Jacob J; Kielholz J; Mei W; Pollet D; Schachtschabel D; Sauermann G; Schreiner V; Stäb F; Steckel F · BioFactors (Oxford, England) · 1999
    Clinical trialAnti-Aging forCoenzyme Q-10
  6. Supplements and Drugs Are Associated With Biological Age in a Cohort of Exceptionally Healthy Individuals.
    Pabis K; Wang W; Selvarajoo K; Budovskaya YV; Sorrentino V; Gruber J; Kennedy BK · Aging cell · 2026
    Cross-sectional study4,260 participantsAnti-Aging forCoenzyme Q-10
  7. Coenzyme Q10 supplementation raises plasma levels without improving mitochondrial function in older adults.
    Schmücker M; Tranberg C; Borch J; Kaae MK; Damgaard M; Flensted-Jensen M; Blom I; Morosetti M; Barbarossa S; Orlando P; Tiano L; Dela F; Helge JW; Larsen S · GeroScience · 2026
    Randomized trial40 participantsAnti-Aging forCoenzyme Q-10
  8. Effect of omega-3 fatty acids on the telomere length: A mini meta-analysis of clinical trials.
    Ali S; Scapagnini G; Davinelli S · Biomolecular concepts · 2022
    Meta-analysis337 participants5 studies pooledAnti-Aging forOmega-3
  9. Omega-3 supplementation and stress reactivity of cellular aging biomarkers: an ancillary substudy of a randomized, controlled trial in midlife adults.
    Madison AA; Belury MA; Andridge R; Renna ME; Rosie Shrout M; Malarkey WB; Lin J; Epel ES; Kiecolt-Glaser JK · Molecular psychiatry · 2022
    Randomized trial138 participantsAnti-Aging forOmega-3
  10. Omega-3 Polyunsaturated Fatty Acids and Cognitive Decline in Adults with Non-Dementia or Mild Cognitive Impairment: An Overview of Systematic Reviews.
    Barros MI; Brandão T; Irving SC; Alves P; Gomes F; Correia M · Nutrients · 2025
    Meta-analysis26,881 participants9 studies pooledAnti-Aging forOmega-3
  11. Association of marine omega-3 fatty acid levels with telomeric aging in patients with coronary heart disease.
    Farzaneh-Far R; Lin J; Epel ES; Harris WS; Blackburn EH; Whooley MA · JAMA · 2010
    Cohort study608 participantsAnti-Aging forOmega-3
  12. Long-chain omega-3 fatty acids improve brain function and structure in older adults.
    Witte AV; Kerti L; Hermannstädter HM; Fiebach JB; Schreiber SJ; Schuchardt JP; Hahn A; Flöel A · Cerebral cortex (New York, N.Y. : 1991) · 2015
    Randomized trial65 participantsAnti-Aging forOmega-3
  13. The effect of coenzyme Q10 supplementation on inflammatory and endothelial dysfunction markers in overweight/obese polycystic ovary syndrome patients.
    Taghizadeh S; Izadi A; Shirazi S; Parizad M; Pourghassem Gargari B · Gynecological endocrinology : the official journal of the International Society of Gynecological Endocrinology · 2021
    Randomized trial43 participantsAnti-Inflammatory Support forCoenzyme Q-10
  14. The effects of coenzyme Q10 supplementation on metabolic profiles and parameters of mental health in women with polycystic ovary syndrome.
    Karamali M; Gholizadeh M · Gynecological endocrinology : the official journal of the International Society of Gynecological Endocrinology · 2022
    Randomized trial55 participantsAnti-Inflammatory Support forCoenzyme Q-10
  15. Efficacy and Optimal Dose of Coenzyme Q10 Supplementation on Inflammation-Related Biomarkers: A GRADE-Assessed Systematic Review and Updated Meta-Analysis of Randomized Controlled Trials.
    Hou S; Tian Z; Zhao D; Liang Y; Dai S; Ji Q; Fan Z; Liu Z; Liu M; Yang Y · Molecular nutrition & food research · 2023
    Meta-analysis1,517 participants31 studies pooledAnti-Inflammatory Support forCoenzyme Q-10
  16. Can coenzyme Q10 supplementation effectively reduce human tumor necrosis factor-α and interleukin-6 levels in chronic inflammatory diseases? A systematic review and meta-analysis of randomized controlled trials.
    Farsi F; Heshmati J; Keshtkar A; Irandoost P; Alamdari NM; Akbari A; Janani L; Morshedzadeh N; Vafa M · Pharmacological research · 2020
    Meta-analysis509 participants9 studies pooledAnti-Inflammatory Support forCoenzyme Q-10
  17. Promising efficacy of coenzyme Q10 supplementation as adjunctive therapy in juvenile idiopathic arthritis: a randomized-controlled pilot study.
    Elsherif N; Shousha G; Sabri NA; Shawki MA · Immunopharmacology and immunotoxicology · 2026
    Randomized trial58 participantsAnti-Inflammatory Support forCoenzyme Q-10
  18. Six-month supplementation with high dose coenzyme Q10 improves liver steatosis, endothelial, vascular and myocardial function in patients with metabolic-dysfunction associated steatotic liver disease: a randomized double-blind, placebo-controlled trial.
    Vrentzos E; Ikonomidis I; Pavlidis G; Katogiannis K; Korakas E; Kountouri A; Pliouta L; Michalopoulou E; Pelekanou E; Boumpas D; Lambadiari V · Cardiovascular diabetology · 2024
    Randomized trial60 participantsCardiovascular Support forCoenzyme Q-10
  19. The effect of coenzyme Q10 on morbidity and mortality in chronic heart failure: results from Q-SYMBIO: a randomized double-blind trial.
    Mortensen SA; Rosenfeldt F; Kumar A; Dolliner P; Filipiak KJ; Pella D; Alehagen U; Steurer G; Littarru GP; Q-SYMBIO Study Investigators · JACC. Heart failure · 2015
    Randomized trial420 participantsCardiovascular Support forCoenzyme Q-10
  20. [Coenzyme Q-10 in the treatment of patients with chronic heart failure and reduced left ventricular ejection fraction: systematic review and meta-analysis].
    Mareev VY; Mareev YV; Begrambekova YL · Kardiologiia · 2022
    Meta-analysis1,139 participants6 studies pooledCardiovascular Support forCoenzyme Q-10
  21. Effect of coenzyme Q10 in Europeans with chronic heart failure: A sub-group analysis of the Q-SYMBIO randomized double-blind trial.
    Mortensen AL; Rosenfeldt F; Filipiak KJ · Cardiology journal · 2020
    Randomized trialCardiovascular Support forCoenzyme Q-10
  22. Effects of Coenzyme Q10 on Statin-Induced Myopathy: An Updated Meta-Analysis of Randomized Controlled Trials.
    Qu H; Guo M; Chai H; Wang WT; Gao ZY; Shi DZ · Journal of the American Heart Association · 2019
    Meta-analysis575 participants12 studies pooledEnergy forCoenzyme Q-10
  23. Coenzyme Q10 Supplementation in Athletes: A Systematic Review.
    Fernandes MSS; Fidelis DEDS; Aidar FJ; Badicu G; Greco G; Cataldi S; Santos GCJ; de Souza RF; Ardigò LP · Nutrients · 2026
    Systematic review16 studies pooledEnergy forCoenzyme Q-10
  24. Effectiveness of Coenzyme Q10 Supplementation for Reducing Fatigue: A Systematic Review and Meta-Analysis of Randomized Controlled Trials.
    Tsai IC; Hsu CW; Chang CH; Tseng PT; Chang KV · Frontiers in pharmacology · 2024
    Meta-analysis1,126 participants13 studies pooledEnergy forCoenzyme Q-10
  25. Antifatigue effects of coenzyme Q10 during physical fatigue.
    Mizuno K; Tanaka M; Nozaki S; Mizuma H; Ataka S; Tahara T; Sugino T; Shirai T; Kajimoto Y; Kuratsune H; Kajimoto O; Watanabe Y · Nutrition (Burbank, Los Angeles County, Calif.) · 2008
    Randomized trial17 participantsEnergy forCoenzyme Q-10
  26. Effect of coenzyme Q10 supplementation on fatigue: A systematic review of interventional studies.
    Mehrabani S; Askari G; Miraghajani M; Tavakoly R; Arab A · Complementary therapies in medicine · 2019
    Systematic review16 studies pooledEnergy forCoenzyme Q-10
  27. Ubiquinol Ameliorates Endothelial Dysfunction in Subjects with Mild-to-Moderate Dyslipidemia: A Randomized Clinical Trial.
    Sabbatinelli J; Orlando P; Galeazzi R; Silvestri S; Cirilli I; Marcheggiani F; Dludla PV; Giuliani A; Bonfigli AR; Mazzanti L; Olivieri F; Antonicelli R; Tiano L · Nutrients · 2021
    Randomized trial51 participantsHeart Health forCoenzyme Q-10
  28. Dose-Response Effect of Coenzyme Q10 Supplementation on Blood Pressure among Patients with Cardiometabolic Disorders: A Grading of Recommendations Assessment, Development, and Evaluation (GRADE)-Assessed Systematic Review and Meta-Analysis of Randomized Controlled Trials.
    Zhao D; Liang Y; Dai S; Hou S; Liu Z; Liu M; Dong X; Zhan Y; Tian Z; Yang Y · Advances in nutrition (Bethesda, Md.) · 2022
    Meta-analysis1,831 participants26 studies pooledHeart Health forCoenzyme Q-10
  29. Effects of Coenzyme Q10 on Lipid, Glycemic, and Inflammatory Markers in Metabolic Disorders: A Systematic Review and Meta-Analysis.
    Zhang Z; Liu Z; Geng Y; Huang Y; Hu R; Li F; Song Y; Zhang M · Journal of diabetes research · 2026
    Meta-analysis3,422 participants64 studies pooledHeart Health Metabolism Boost forCoenzyme Q-10
  30. Treatment of coenzyme Q10 for 24 weeks improves lipid and glycemic profile in dyslipidemic individuals.
    Zhang P; Yang C; Guo H; Wang J; Lin S; Li H; Yang Y; Ling W · Journal of clinical lipidology · 2019
    Randomized trial101 participantsHeart Health forCoenzyme Q-10
  31. Coenzyme Q10 supplementation improves adipokine profile in dyslipidemic individuals: a randomized controlled trial.
    Zhang P; Chen K; He T; Guo H; Chen X · Nutrition & metabolism · 2022
    Randomized trial101 participantsMetabolism Boost forCoenzyme Q-10
  32. Comparison of nutritional supplements in improving glycolipid metabolism and endocrine function in polycystic ovary syndrome: a systematic review and network meta-analysis.
    Hu X; Wang W; Su X; Peng H; Tan Z; Li Y; Huang Y · PeerJ · 2023
    Meta-analysis2,362 participants41 studies pooledMetabolism Boost forCoenzyme Q-10
  33. Ubiquinol supplementation modulates energy metabolism and bone turnover during high intensity exercise.
    Diaz-Castro J; Mira-Rufino PJ; Moreno-Fernandez J; Chirosa I; Chirosa JL; Guisado R; Ochoa JJ · Food & function · 2021
    Randomized trial100 participantsMetabolism Boost forCoenzyme Q-10
  34. The effect of coenzyme Q10 intake on metabolic profiles in women candidates for in-vitro fertilization: a randomised trial.
    Ahmadi Asouri S; Asemi R; Aghadavod E; Jamilian M · Annals of medicine and surgery (2012) · 2024
    Randomized trial40 participantsMetabolism Boost forCoenzyme Q-10
  35. Effects of omega-3 supplementation on glucose and lipid metabolism in patients with gestational diabetes: A meta-analysis of randomized controlled trials.
    Liu W; Gao M; Yang S; Sun C; Bi Y; Li Y; Wang J; Yuan X · Journal of diabetes and its complications · 2023
    Meta-analysis331 participants6 studies pooledMetabolism Boost forOmega-3
  36. Hepatic de novo lipogenesis is suppressed and fat oxidation is increased by omega-3 fatty acids at the expense of glucose metabolism.
    Green CJ; Pramfalk C; Charlton CA; Gunn PJ; Cornfield T; Pavlides M; Karpe F; Hodson L · BMJ open diabetes research & care · 2021
    Randomized trial38 participantsMetabolism Boost forOmega-3
  37. Clinical and metabolic response to flaxseed oil omega-3 fatty acids supplementation in patients with diabetic foot ulcer: A randomized, double-blind, placebo-controlled trial.
    Soleimani Z; Hashemdokht F; Bahmani F; Taghizadeh M; Memarzadeh MR; Asemi Z · Journal of diabetes and its complications · 2018
    Randomized trial60 participantsMetabolism Boost Skin Health forOmega-3
  38. The Effects of Flaxseed Oil Omega-3 Fatty Acids Supplementation on Metabolic Status of Patients with Polycystic Ovary Syndrome: A Randomized, Double-Blind, Placebo-Controlled Trial.
    Mirmasoumi G; Fazilati M; Foroozanfard F; Vahedpoor Z; Mahmoodi S; Taghizadeh M; Esfeh NK; Mohseni M; Karbassizadeh H; Asemi Z · Experimental and clinical endocrinology & diabetes : official journal, German Society of Endocrinology [and] German Diabetes Association · 2018
    Randomized trial60 participantsMetabolism Boost forOmega-3
  39. A combination of omega-3 and plant sterols regulate glucose and lipid metabolism in individuals with impaired glucose regulation: a randomized and controlled clinical trial.
    Wang JF; Zhang HM; Li YY; Xia S; Wei Y; Yang L; Wang D; Ye JJ; Li HX; Yuan J; Pan RR · Lipids in health and disease · 2019
    Randomized trial200 participantsMetabolism Boost forOmega-3
  40. Dietetic intervention in psoriatic arthritis: the DIETA trial.
    Leite BF; Morimoto MA; Gomes CMF; Klemz BNC; Genaro PS; Shivappa N; Hébert JR; Damasceno NRT; Pinheiro MM · Advances in rheumatology (London, England) · 2022
    Randomized trial97 participantsSkin Health forOmega-3
  41. Omega-3 fatty acid supplement skin cancer prophylaxis in lung transplant recipients: A randomized, controlled pilot trial.
    Miura K; Vail A; Chambers D; Hopkins PM; Ferguson L; Grant M; Rhodes LE; Green AC · The Journal of heart and lung transplantation : the official publication of the International Society for Heart Transplantation · 2019
    Randomized trial49 participantsSkin Health forOmega-3
  42. Treatment of hard-to-heal wounds in ischaemic lower extremities with a novel fish skin-derived matrix.
    Lee YJ; Han HJ; Shim HS · Journal of wound care · 2024
    Randomized trial50 participantsSkin Health forOmega-3
  43. Effect of eicosapentaenoic acid, an omega-3 polyunsaturated fatty acid, on UVR-related cancer risk in humans. An assessment of early genotoxic markers.
    Rhodes LE; Shahbakhti H; Azurdia RM; Moison RM; Steenwinkel MJ; Homburg MI; Dean MP; McArdle F; Beijersbergen van Henegouwen GM; Epe B; Vink AA · Carcinogenesis · 2003
    Randomized trial42 participantsSkin Health forOmega-3