Product Image

Kids Cherry Berry Flavor

Garden of Life Vitamin Code
4.7
★ ★ ★ ★ ★
(15847 ratings)
Iodine 150 mcg
Selenium 55 mcg
Vitamin K 120 mcg
Product Image
Score70
A broad children’s chewable with D3, natural vitamin E, vitamin K, iodine, zinc, and selenium. Added carbohydrate and opaque low-dose blends limit quality.
How scoring works
Quantity:60 Tablet(s) • (30 servings)
Goals:
General Health
Immunity
Energy
Heart Health

Score 70

A broad children’s chewable with D3, natural vitamin E, vitamin K, iodine, zinc, and selenium. Added carbohydrate and opaque low-dose blends limit quality.
How scoring works
$23.09($0.76 per serving)
Vitacost
$ 23.09
iHerb
$ 23.09
Pure Formulas
$ 23.09
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Analysis

The cherry-berry tablet supplies broad vitamins with D3, natural vitamin E, vitamin K1, MK-4, iodine, zinc, and selenium. Amounts are generally maintenance-oriented and the chewable format may help adherence.

Four grams of carbohydrate accompany the serving, while calcium, magnesium, and iron are absent. The produce and probiotic blends disclose only totals and do not establish meaningful strain or ingredient doses.

It may suit children whose caregiver has identified a need for broad vitamin coverage and verified age-appropriate directions. It should not be treated as complete mineral nutrition or a meaningful probiotic product.

Who is it for
  • Children only with caregiver-selected age-appropriate dosing
  • Families seeking a chewable multivitamin
  • Children who need broad vitamin rather than mineral coverage
Best for
  • Basic childhood vitamin coverage
  • Vitamin D and iodine intake
  • Chewable convenience

Pros

  • Includes vitamin D3 and natural vitamin E
  • Provides K1 plus MK-4
  • Includes iodine, zinc, and selenium
  • Child-friendly chewable format

Cons

  • Adds carbohydrate
  • No calcium, magnesium, or iron
  • Produce blend is opaque
  • Probiotic blend lacks strain and count detail

Warnings

  • A caregiver should verify that the serving matches the child’s age
  • Vitamin K can interact with vitamin-K-antagonist medicine
  • Chewing exposes teeth to carbohydrate and acidity, so rinsing afterward is sensible

Nutrient quality

71 High impact

Vitamin D3, natural vitamin E, and a broad nutrient profile offer useful coverage. Adult-like amounts for several vitamins, unclear age targeting, and small specialty blends make suitability less certain.

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Ingredient transparency

70 High impact

Individual nutrients have clear amounts and mostly understandable source names. Several blends lack component amounts, while non-active ingredients and complete directions are absent.

.

Customer satisfaction

72 High impact

The aggregate rating is strong and supported by an extensive feedback volume. Specific experience details are missing, so recurring problems and purpose fit remain uncertain.

.

Value for money

65 High impact

Broad coverage supports fair quality, but unclear age targeting weakens confidence. Serving value is reasonable if the amounts suit the intended child.

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Report analysis

Goals

General Health
Impact
High effect
B+ Goal FitC+ Strength of SupportB CoverageB- Formula Quality
Folate · 400 mcg DFEVitamin B12 · 2.4 mcgVitamin D · 20 mcgVitamin K · 20 mcgSelenium · 55 mcgZinc · 3.6 mgVitamin C · 90 mg

The chewable provides broad vitamin coverage for energy metabolism, antioxidant defenses, and daily nutrient gaps. Vitamin D3 and a full set of B vitamins are the most useful strengths.

Mineral coverage is limited, vitamin K2 is modest, and several nutrient forms are not chemically specific. The sweetened chewable format improves convenience but adds carbohydrate that does not advance the nutritional goal.

Study evidence
Vitamin K Supportive 34 studies
Zinc Supportive 60 studies
Immunity
Impact
High effect
B+ Goal FitC+ Strength of SupportB- CoverageC Formula Quality
Vitamin C · 90 mgZinc · 3.6 mgVitamin A · 900 mcgVitamin D · 20 mcgSelenium · 55 mcg

Vitamin A, vitamin C, vitamin D3, zinc, and selenium support several immune pathways in a child-focused chewable. Vitamin D3 and selenium yeast are useful strengths for routine nutritional coverage.

Vitamin C and zinc are modest for targeted immune use, while the probiotic blend lacks strain and viable-count details. Vitamin K can interact with warfarin, which is relevant only for a child using that medicine under specialist care.

Study evidence
Selenium Mixed 37 studies
Vitamin A Supportive 107 studies
Vitamin C Supportive 53 studies
Vitamin D Supportive 85 studies
Zinc Supportive 73 studies
Impact
Moderate effect
B- Goal FitC- Strength of SupportC- CoverageB- Formula Quality
Iodine · 150 mcgVitamin D · 20 mcgVitamin B5 · 5 mgRiboflavin · 1.3 mgThiamin · 1.2 mgVitamin B12 · 2.4 mcg

Iodine and B vitamins support thyroid function and normal fuel metabolism in a child-focused multivitamin. The amounts suit basic nutritional maintenance rather than focused fatigue or stamina support.

No acute alertness, mitochondrial, or adaptogen pathway is meaningfully developed. The chewable carbohydrate and fruit-and-vegetable blend add limited functional energy value.

Study evidence
Iodine Adverse 3 studies
Heart Health
Impact
Moderate effect
C Goal FitC- Strength of SupportB- CoverageC+ Formula Quality
Vitamin K · 20 mcgVitamin B12 · 2.4 mcgVitamin B6 · 1.7 mgFolate · 400 mcg DFEVitamin D · 20 mcg

Vitamin D, B vitamins, K1, and a small MK-4 amount provide basic cardiovascular nutrition. The child-oriented multivitamin lacks MK-7, omega fatty acids, magnesium, or meaningful cardiac-energy support.

Core vitamin amounts are disclosed, while fruit and probiotic blends add uncertain heart value. Vitamin K can counteract warfarin, so caregivers should coordinate use with the prescriber for a child taking that medicine.

Study evidence
Vitamin D Mixed 164 studies
Vitamin K Mixed 62 studies

Ingredients

IngredientAmount per serving
Calories
15 Calorie(s)
Total Carbohydrates
4 Gram(s)
Vitamin A (Beta-Carotene)
900 mcg
Vitamin C (Acerola Cherry)
90 mg
Vitamin D (Vitamin D3)
20 mcg
Vitamin E (D-Alpha-Tocopherol)
15 mg
Vitamin K (Vitamin K1)
120 mcg
Thiamine (Vitamin B1)
1.2 mg
Riboflavin (Vitamin B2)
1.3 mg
Niacin (Niacinamide)
16 mg
Vitamin B6 (Saccharomyces cerevisiae)
1.7 mg
Folate (Saccharomyces cerevisiae)
400 mcg DFE
Vitamin B12 (Saccharomyces cerevisiae)
2.4 mcg
Biotin (Saccharomyces cerevisiae)
30 mcg
Pantothenic Acid (Saccharomyces cerevisiae)
5 mg
Iodine (Sea Kelp)
150 mcg
Zinc (Brown Rice Chelate)
3.6 mg
Selenium (Saccharomyces cerevisiae)
55 mcg
Vitamin K2 (Menaquinone-4)
20 mcg
Organic Fruit & Vegetable Blend
427 mg
Probiotic Blend
7 mg
Gluten Free Kosher Dairy Free Children 4+
Report overview
Iodine (Sea Kelp) · 150 mcg OverallScore79
C Active Ingredient Quality & BioavailabilityA+ Dose, Safety & Label TransparencyC+ Value

Sea kelp provides an effective whole-food iodine source, but sourcing purity is not documented. The elemental amount is well aligned with routine thyroid maintenance and remains within the safe daily range. Meaningful selenium improves the value of the otherwise midrange serving cost.

B+ Active Ingredient Quality & BioavailabilityB Dose, Safety & Label TransparencyF Value

selenium yeast offers strong absorption potential. The 55 mcg serving stays safely below the upper limit but falls short of the stated maintenance target. Selenium-specific value is weak after standardizing to the target amount, although other ingredients may contribute separate value.

F Active Ingredient Quality & BioavailabilityD- Dose, Safety & Label TransparencyF Value

The vitamin K profile is led by K1 and includes only 20 mcg of MK-4, with no MK-7 for longer-lasting K2 support. The chewable format has no lipid base and carries a high serving cost despite the added vitamin D3. Vitamin K1 and K2 can counteract warfarin, so caregivers should coordinate use with the prescriber for a child taking that medicine.

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Sources

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

  1. Association of radioactive iodine treatment with survivorship symptoms and primary care utilisation in women of reproductive age with thyroid cancer: a retrospective cohort study.
    Devanarayan P; Hartman M; Partin M · Family medicine and community health · 2026
    Cohort study10,882 participantsEnergy forIodine
  2. Energy level and fatigue after surgery for thyroid cancer: A population-based study of patient-reported outcomes.
    Hughes DT; Reyes-Gastelum D; Kovatch KJ; Hamilton AS; Ward KC; Haymart MR · Surgery · 2020
    Cohort study2,584 participantsEnergy forIodine
  3. Health-Related Quality of Life in Differentiated Thyroid Cancer Survivors: A Cross-Sectional Study From Turkey.
    Gültekin A; Kahraman MY; Şengöz T; Şimşek FS · Head & neck · 2026
    Cross-sectional study202 participantsEnergy forIodine
  4. Dietary vitamin K intake associates with reduced all-cause mortality in non-alcoholic fatty liver disease patients.
    Huang Y; Zhu X; Han L; Hu H · Scientific reports · 2025
    Cohort study7,857 participantsGeneral Health forVitamin K
  5. Vitamin K status, cardiovascular disease, and all-cause mortality: a participant-level meta-analysis of 3 US cohorts.
    Shea MK; Barger K; Booth SL; Matuszek G; Cushman M; Benjamin EJ; Kritchevsky SB; Weiner DE · The American journal of clinical nutrition · 2020
    Meta-analysis3,891 participants3 studies pooledGeneral Health forVitamin K
  6. The Effect of Topical Vitamin K1 on the Treatment of Cetuximab-Induced Skin Rashes in Metastatic Colorectal Cancer Patients.
    Roayaei M; Rezaei M; Najafizade N · Advanced biomedical research · 2024
    Randomized trial49 participantsGeneral Health forVitamin K
  7. Effect of vitamin K on improving post‑kidney transplant outcomes: a meta‑analysis.
    Sun Z; Zhu K; Liang G; Yan F; Chao S; Jia L; Niu Y · Experimental and therapeutic medicine · 2023
    Meta-analysis7 studies pooledGeneral Health forVitamin K
  8. Vitamin K1 intake is associated with lower risk for all-cause and cardiovascular disease mortality in community-dwelling older Australian women.
    Dupuy M; Radavelli-Bagatini S; Zhong L; Dalla Via J; Zhu K; Blekkenhorst LC; Bondonno NP; Linneberg A; Bellinge JW; Schultz C; Courtney W; Prince RL; Hodgson JM; Lewis JR; Sim M · Nutrition, metabolism, and cardiovascular diseases : NMCD · 2024
    Cohort study1,436 participantsGeneral Health forVitamin K
  9. Effectiveness of sodium bicarbonate and zinc chloride mouthwashes in the treatment of oral mucositis and quality of life in patients with cancer under chemotherapy.
    Mohammadi F; Oshvandi K; Kamallan SR; Khazaei S; Ranjbar H; Ahmadi-Motamayel F; Gillespie M; Jenabi E; Vafaei SY · Nursing open · 2022
    Randomized trial144 participantsGeneral Health forZinc
  10. Zinc supplementation in young children with acute diarrhea in India.
    Sazawal S; Black RE; Bhan MK; Bhandari N; Sinha A; Jalla S · The New England journal of medicine · 1995
    Randomized trial937 participantsGeneral Health forZinc
  11. Associations of mortality with ocular disorders and an intervention of high-dose antioxidants and zinc in the Age-Related Eye Disease Study: AREDS Report No. 13.
    Clemons TE; Kurinij N; Sperduto RD; AREDS Research Group · Archives of ophthalmology (Chicago, Ill. : 1960) · 2004
    Randomized trial4,753 participantsGeneral Health forZinc
  12. Effects of zinc and probiotic co-supplementation on inflammation, gastrointestinal symptoms, quality of life, and mood in irritable bowel syndrome patients.
    Rezazadegan M; Soheilipour M; Amani R · Scientific reports · 2026
    Randomized trial84 participantsGeneral Health forZinc
  13. Effect of zinc sulfate supplementation on premenstrual syndrome and health-related quality of life: Clinical randomized controlled trial.
    Siahbazi S; Behboudi-Gandevani S; Moghaddam-Banaem L; Montazeri A · The journal of obstetrics and gynaecology research · 2018
    Randomized trial142 participantsGeneral Health forZinc
  14. Vitamin D supplementation for cardiometabolic risk markers in pregnant women based on the gestational diabetes mellitus or obesity status : a randomized clinical trial.
    Yin WJ; Wang P; Ma SS; Tao RX; Hu HL; Jiang XM; Zhang Y; Tao FB; Zhu P · European journal of nutrition · 2024
    Randomized trial1,537 participantsHeart Health forVitamin D
  15. Paricalcitol and endothelial function in chronic kidney disease trial.
    Zoccali C; Curatola G; Panuccio V; Tripepi R; Pizzini P; Versace M; Bolignano D; Cutrupi S; Politi R; Tripepi G; Ghiadoni L; Thadhani R; Mallamaci F · Hypertension (Dallas, Tex. : 1979) · 2015
    Randomized trial88 participantsHeart Health forVitamin D
  16. Vitamin D Supplementation, Serum 25(OH)D Concentrations and Cardiovascular Disease Risk Factors: A Systematic Review and Meta-Analysis.
    Mirhosseini N; Rainsbury J; Kimball SM · Frontiers in cardiovascular medicine · 2020
    Meta-analysis81 studies pooledHeart Health forVitamin D
  17. Does vitamin D supplementation modulate metabolic risk factors of cardiovascular disease? A systematic review and meta-analysis of clinical trials.
    Abumweis S; Alqadi S; Al Tarteer A; Alrefai W; Alzoughool F; Jew S; Qudah T · Asia Pacific journal of clinical nutrition · 2026
    Meta-analysis45 studies pooledHeart Health forVitamin D
  18. Comparative Efficacy of Nutraceuticals on Endothelial Function: A Systematic Review and Network Meta-Analysis.
    Norouzzadeh M; Rashedi MH; Mahdavi-Mazdeh G; Kosari A; Shahinfar H · Current atherosclerosis reports · 2026
    Meta-analysisHeart Health forVitamin D
  19. Vitamin K Intake and Atherosclerotic Cardiovascular Disease in the Danish Diet Cancer and Health Study.
    Bellinge JW; Dalgaard F; Murray K; Connolly E; Blekkenhorst LC; Bondonno CP; Lewis JR; Sim M; Croft KD; Gislason G; Torp-Pedersen C; Tjønneland A; Overvad K; Hodgson JM; Schultz C; Bondonno NP · Journal of the American Heart Association · 2021
    Cohort study53,372 participantsHeart Health forVitamin K
  20. Menaquinone-7 supplementation improves arterial stiffness in healthy postmenopausal women. A double-blind randomised clinical trial.
    Knapen MH; Braam LA; Drummen NE; Bekers O; Hoeks AP; Vermeer C · Thrombosis and haemostasis · 2016
    Randomized trial244 participantsHeart Health forVitamin K
  21. The effect of vitamin K1 on arterial calcification activity in subjects with diabetes mellitus: a post hoc analysis of a double-blind, randomized, placebo-controlled trial.
    Bellinge JW; Francis RJ; Lee SC; Bondonno NP; Sim M; Lewis JR; Watts GF; Schultz CJ · The American journal of clinical nutrition · 2022
    Randomized trial149 participantsHeart Health forVitamin K
  22. Dietary Vitamin K1 Intake and Incident Aortic Valve Stenosis.
    Schultz CJ; Dalgaard F; Bellinge JW; Murray K; Sim M; Connolly E; Blekkenhorst LC; Bondonno CP; Lewis JR; Gislason GH; Tjønneland A; Overvad K; Hodgson JM; Bondonno NP · Arteriosclerosis, thrombosis, and vascular biology · 2024
    Cohort study55,545 participantsHeart Health forVitamin K
  23. Association between vitamin K1 intake and mortality in the Danish Diet, Cancer, and Health cohort.
    Palmer CR; Bellinge JW; Dalgaard F; Sim M; Murray K; Connolly E; Blekkenhorst LC; Bondonno CP; Croft KD; Gislason G; Tjønneland A; Overvad K; Schultz C; Lewis JR; Hodgson JM; Bondonno NP · European journal of epidemiology · 2021
    Cohort study56,048 participantsHeart Health forVitamin K
  24. Effects of selenium supplementation on selenoprotein gene expression and response to influenza vaccine challenge: a randomised controlled trial.
    Goldson AJ; Fairweather-Tait SJ; Armah CN; Bao Y; Broadley MR; Dainty JR; Furniss C; Hart DJ; Teucher B; Hurst R · PloS one · 2011
    Randomized trial119 participantsImmunity forSelenium
  25. Effect of selenium on immune response against hepatitis B vaccine with accelerated method in insulin-dependent diabetes mellitus patients.
    Janbakhsh A; Mansouri F; Vaziri S; Sayad B; Afsharian M; Rahimi M; Shahebrahimi K; Salari F · Caspian journal of internal medicine · 2013
    Randomized trial62 participantsImmunity forSelenium
  26. Chemoprevention trial of human hepatitis with selenium supplementation in China.
    Yu SY; Li WG; Zhu YJ; Yu WP; Hou C · Biological trace element research · 1990
    Non-randomized trial20,847 participantsImmunity forSelenium
  27. Selenium nanoparticles as adjunctive therapy in sepsis: A pilot randomized clinical trial.
    Gu WJ; Huang W; Zhao FZ; Yuan XK; Jin K; Chen JL; Zhang CY; Huang Y; He L; Zhuang H; Yin HY; Chen T · Drug resistance updates : reviews and commentaries in antimicrobial and anticancer chemotherapy · 2026
    Randomized trial70 participantsImmunity forSelenium
  28. Selenium supplementation in patients with autoimmune thyroiditis decreases thyroid peroxidase antibodies concentrations.
    Gärtner R; Gasnier BC; Dietrich JW; Krebs B; Angstwurm MW · The Journal of clinical endocrinology and metabolism · 2002
    Randomized trial70 participantsImmunity forSelenium
  29. Depressed immune response to tetanus in children with vitamin A deficiency.
    Semba RD; Muhilal; Scott AL; Natadisastra G; Wirasasmita S; Mele L; Ridwan E; West KP; Sommer A · The Journal of nutrition · 1992
    Randomized trial236 participantsImmunity forVitamin A
  30. Impact of a single megadose of vitamin A at delivery on breastmilk of mothers and morbidity of their infants.
    Roy SK; Islam A; Molla A; Akramuzzaman SM; Jahan F; Fuchs G · European journal of clinical nutrition · 1997
    Randomized trial50 participantsImmunity forVitamin A
  31. Vitamin A supplementation reduces measles morbidity in young African children: a randomized, placebo-controlled, double-blind trial.
    Coutsoudis A; Broughton M; Coovadia HM · The American journal of clinical nutrition · 1991
    Randomized trial60 participantsImmunity forVitamin A
  32. Vitamin A supplementation enhances specific IgG antibody levels and total lymphocyte numbers while improving morbidity in measles.
    Coutsoudis A; Kiepiela P; Coovadia HM; Broughton M · The Pediatric infectious disease journal · 1992
    Randomized trial60 participantsImmunity forVitamin A
  33. Vitamin A supplementation reduces the monocyte chemoattractant protein-1 intestinal immune response of Mexican children.
    Long KZ; Santos JI; Estrada Garcia T; Haas M; Firestone M; Bhagwat J; Dupont HL; Hertzmark E; Rosado JL; Nanthakumar NN · The Journal of nutrition · 2006
    Randomized trial127 participantsImmunity forVitamin A
  34. Vitamin C and contribution to the normal function of the immune system: evaluation of a health claim pursuant to Article 14 of Regulation (EC) No 1924/2006.
    EFSA Panel on Dietetic Products, Nutrition and Allergies (NDA) · EFSA journal. European Food Safety Authority · 2026
    Guideline / consensusImmunity forVitamin C
  35. Therapeutic effects of high-dose vitamin C supplementation in patients with COVID-19: a meta-analysis.
    Sun L; Zhao JH; Fan WY; Feng B; Liu WW; Chen RQ; Ban C; Dang AG; Wang M; Luo KT; Zhou GY; Yu FF; Ba Y · Nutrition reviews · 2024
    Meta-analysis2,334 participants14 studies pooledImmunity forVitamin C
  36. Effect of micronutrient supplements on influenza and other respiratory tract infections among adults: a systematic review and meta-analysis.
    Abioye AI; Bromage S; Fawzi W · BMJ global health · 2021
    Meta-analysisImmunity forVitamin C
  37. New evidence for antioxidant properties of vitamin C.
    Vojdani A; Bazargan M; Vojdani E; Wright J · Cancer detection and prevention · 2001
    Randomized trial20 participantsImmunity forVitamin C
  38. Enhanced Vitamin C Delivery: A Systematic Literature Review Assessing the Efficacy and Safety of Alternative Supplement Forms in Healthy Adults.
    Calder PC; Kreider RB; McKay DL · Nutrients · 2025
    Systematic review13 studies pooledImmunity forVitamin C
  39. Vitamin D supplementation to prevent acute respiratory infections: individual participant data meta-analysis.
    Martineau AR; Jolliffe DA; Greenberg L; Aloia JF; Bergman P; Dubnov-Raz G; Esposito S; Ganmaa D; Ginde AA; Goodall EC; Grant CC; Janssens W; Jensen ME; Kerley CP; Laaksi I; Manaseki-Holland S; Mauger D; Murdoch DR; Neale R; Rees JR; Simpson S; Stelmach I; Trilok Kumar G; Urashima M; Camargo CA; Griffiths CJ; Hooper RL · Health technology assessment (Winchester, England) · 2020
    Meta-analysis11,321 participants25 studies pooledImmunity forVitamin D
  40. Association Between Vitamin D and Influenza: Meta-Analysis and Systematic Review of Randomized Controlled Trials.
    Zhu Z; Zhu X; Gu L; Zhan Y; Chen L; Li X · Frontiers in nutrition · 2022
    Meta-analysis4,859 participants10 studies pooledImmunity forVitamin D
  41. Vitamin D3 and deconvoluting a rash.
    Ernst MK; Evans ST; Techner JM; Rothbaum RM; Christensen LF; Onay UV; Biyashev D; Demczuk MM; Nguyen CV; Honda KS; McCormick TS; Tsoi LC; Gudjonsson JE; Cooper KD; Lu KQ · JCI insight · 2023
    Randomized trial28 participantsImmunity forVitamin D
  42. Effect of vitamin D3 supplementation on cellular immunity and inflammatory markers in COVID-19 patients admitted to the ICU.
    Bychinin MV; Klypa TV; Mandel IA; Yusubalieva GM; Baklaushev VP; Kolyshkina NA; Troitsky AV · Scientific reports · 2022
    Randomized trial110 participantsImmunity forVitamin D
  43. Current opinion on the role of vitamin D supplementation in respiratory infections and asthma/COPD exacerbations: A need to establish publication guidelines for overcoming the unpublished data.
    Anitua E; Tierno R; Alkhraisat MH · Clinical nutrition (Edinburgh, Scotland) · 2022
    Meta-analysis50,554 participants65 studies pooledImmunity forVitamin D
  44. Nutrient supplementation for prevention of viral respiratory tract infections in healthy subjects: A systematic review and meta-analysis.
    Vlieg-Boerstra B; de Jong N; Meyer R; Agostoni C; De Cosmi V; Grimshaw K; Milani GP; Muraro A; Oude Elberink H; Pali-Schöll I; Roduit C; Sasaki M; Skypala I; Sokolowska M; van Splunter M; Untersmayr E; Venter C; O'Mahony L; Nwaru BI · Allergy · 2022
    Meta-analysis199,055 participants115 studies pooledImmunity forZinc
  45. Zinc supplementation reduces the incidence of acute lower respiratory infections in infants and preschool children: a double-blind, controlled trial.
    Sazawal S; Black RE; Jalla S; Mazumdar S; Sinha A; Bhan MK · Pediatrics · 1998
    Randomized trial609 participantsImmunity forZinc
  46. A randomized controlled trial of zinc supplementation in the treatment of acute respiratory tract infection in Thai children.
    Rerksuppaphol S; Rerksuppaphol L · Pediatric reports · 2020
    Randomized trial64 participantsImmunity forZinc
  47. The effect of zinc and vitamin A supplementation on immune response in an older population.
    Fortes C; Forastiere F; Agabiti N; Fano V; Pacifici R; Virgili F; Piras G; Guidi L; Bartoloni C; Tricerri A; Zuccaro P; Ebrahim S; Perucci CA · Journal of the American Geriatrics Society · 1998
    Randomized trial136 participantsImmunity forZinc
  48. The role of specific nutrients in preventing immune system and blood cell disorders: an umbrella review.
    Vecchietti A; Strano P; Minutolo G; Grieco V; Cappuccio G; Granvillano G; Confalonieri L; Briganti GL; Raso E; Chimienti M; Pellegrini M; Mercogliano M; Spatari G; Lugli C; Urbano T; Lorenzon A · Journal of preventive medicine and hygiene · 2026
    Systematic review13 studies pooledImmunity forZinc