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ConcenTrace Trace Mineral Drops

Trace Minerals Research
4.7
★ ★ ★ ★ ★
(34180 ratings)
Chloride 650 mg
Sulfur 40 mg
Lithium 1.5 mg
Magnesium 250 mg
Boron 1 mg
Product Image
Score73
A useful magnesium-chloride concentrate supports broad mineral intake. Missing forms and lightly dosed trace minerals limit more specific goals.
How scoring works
Quantity:2 Liquid(s) • (24 servings)
Goals:
Heart Health
Energy
Stress Relief
General Health

Score 73

A useful magnesium-chloride concentrate supports broad mineral intake. Missing forms and lightly dosed trace minerals limit more specific goals.
How scoring works

Also available as

1 option
$15.99($0.66 per serving)
Vitacost
$ 15.99
Vitacost
$ 15.99
Pure Formulas
$ 15.99
iHerb
$ 15.99
iHerb
$ 15.99
Walmart
$ 17.49
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Analysis

Each serving combines 250 mg magnesium with 650 mg chloride and 40 mg sulfate. Lithium, boron, sodium, and potassium round out the mineral profile at smaller amounts.

Liquid delivery is easy to mix, but no chemical form is given for magnesium or the trace minerals. That prevents reliable comparison of absorption, tolerance, and targeted value.

The product is most practical as a broad mineral concentrate. Its mood, bone, digestive, and testosterone claims are not strongly supported by the low lithium, boron, and potassium contributions.

Who is it for
  • Adults seeking liquid magnesium and chloride
  • People who prefer a smaller bottle
  • Users adding minerals to water
Best for
  • General trace-mineral use
  • Moderate magnesium supplementation
  • Liquid drink mixing

Pros

  • Provides substantial magnesium
  • High chloride amount
  • Transparent individual mineral quantities

Cons

  • Magnesium form is unspecified
  • Lithium and boron are modest
  • Not optimized for mood or bone goals

Warnings

  • The magnesium amount may cause diarrhea or cramping in sensitive users.
  • Kidney disease can impair clearance of magnesium and lithium and warrants professional guidance.
  • Magnesium should be separated from levothyroxine and certain antibiotics according to their dosing directions.

Nutrient quality

69 High impact

Meaningful magnesium and chloride support basic mineral replenishment, but their chemical forms are not identified. Small boron, lithium, potassium, and sulfate amounts add breadth without deep support for the many stated uses.

Ingredient transparency

73 High impact

All listed minerals have stated amounts and no proprietary blend obscures them. Missing chemical forms, inactive ingredients, and detailed use directions limit full assessment.

Customer satisfaction

73 High impact

Aggregate customer metrics indicate strong satisfaction from a very large sample. Missing feedback details prevent judging repeated complaints or whether experiences match the intended use.

Value for money

77 High impact

A concentrated magnesium and chloride serving provides solid value. Unspecified forms and lightly dosed trace minerals reduce the advantage over more fully described formulas.

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Goals

Impact
High effect
B+ Goal FitB- Strength of SupportC- CoverageA- Formula Quality
Magnesium · 250 mg

The liquid provides a meaningful elemental magnesium amount for rhythm and vascular support. Trace minerals may contribute to general electrolyte balance.

The magnesium compound is not identified, leaving absorption quality uncertain. It remains a focused mineral product without lipid, cardiac-energy, or homocysteine coverage.

Study evidence
Magnesium Supportive 158 studies
Energy
Impact
High effect
B+ Goal FitC+ Strength of SupportC- CoverageA- Formula Quality
Magnesium · 250 mgPotassium · 3 mg

A meaningful magnesium amount can support normal energy metabolism when intake is inadequate. The simple liquid also supplies several trace minerals without stimulant ingredients.

The magnesium compound is not identified, which makes absorption quality difficult to judge. It provides focused mineral support rather than broad or immediate energy enhancement.

Study evidence
Magnesium Supportive 4 studies
Stress Relief
Impact
High effect
B Goal FitB- Strength of SupportD+ CoverageB+ Formula Quality
Magnesium · 250 mg

Magnesium reaches a useful 250 mg amount and supports normal nervous-system function. The liquid allows flexible measurement of a broad trace-mineral mixture.

The magnesium compound is not identified, so systemic absorption cannot be judged confidently. The formula lacks a direct adaptogen or calming neurotransmitter ingredient.

Study evidence
Magnesium Supportive 13 studies
Impact
High effect
B Goal FitC Strength of SupportC+ CoverageB+ Formula Quality
Magnesium · 250 mgBoron · 1 mg

A useful magnesium amount provides relevant support for muscle, nerve, and energy-related functions. Boron and other trace minerals add some breadth to the mineral profile.

The chemical forms are not disclosed, and the wide drop range makes the amount tied to actual use less certain. Boron is also supplied below common stand-alone supplemental targets.

Study evidence
Boron Supportive 6 studies
Magnesium Supportive 114 studies
Cardiovascular Support
Impact
Moderate effect
B Goal FitC Strength of SupportD+ CoverageC Formula Quality
Potassium · 3 mgMagnesium · 250 mg

Magnesium provides direct support for vascular tone and electrical stability. The remaining electrolytes are too small to create broad cardiovascular coverage.

The 250 mg elemental amount is useful and the liquid format allows dose adjustment. Failure to disclose the magnesium compound prevents a reliable assessment of absorption quality.

Study evidence
Magnesium Supportive 123 studies
Testosterone Support
Impact
Moderate effect
C- Goal FitD Strength of SupportD CoverageC+ Formula Quality
Magnesium · 250 mgBoron · 1 mg

Magnesium offers a useful foundational amount, while boron provides only a small contribution to free-hormone support. Neither mineral is identified by chemical form, limiting confidence in absorption.

The remaining trace minerals do not create a meaningful steroidogenesis, stress, or vitamin D pathway. The product is best viewed as general trace-mineral support rather than a testosterone complex.

Study evidence
Boron Disputed 3 studies
Magnesium Disputed 5 studies
Bone Health
Impact
Moderate effect
C Goal FitD+ Strength of SupportD- CoverageC Formula Quality
Magnesium · 250 mgBoron · 1 mg

Magnesium provides a direct structural and metabolic link to bone health. Boron offers a secondary pathway, but its amount is small.

The magnesium amount is useful while its chemical form is not disclosed. The trace-mineral design remains narrow and lacks calcium, vitamin D, vitamin K, or matrix support.

Study evidence
Boron Supportive 5 studies
Magnesium Supportive 48 studies
Potassium Supportive 39 studies

Ingredients

IngredientAmount per serving
Magnesium
250 mg
Chloride
650 mg
Sodium
5 mg
Potassium
3 mg
Sulfate
40 mg
Lithium
1.5 mg
Boron
1 mg
Gluten Free Adults 18–50 Vegan Kosher No Allergies Halal Children 4+ Children 1–4 Vegetarian
Report overview
Chloride · 650 mg OverallScore86
A+ Active Ingredient Quality & BioavailabilityA Dose, Safety & Label TransparencyD+ Value

A concentrated ionic mineral liquid supplies a high chloride amount in a readily dispersed form. The amount is clear, but the Supplement Facts do not tie chloride to a specific salt. Serving cost is average, while the high potency still supports reasonable utility.

Sulfur · 40 mg OverallScore78
A- Active Ingredient Quality & BioavailabilityA- Dose, Safety & Label TransparencyD+ Value

A dissolved ionic mineral concentrate supplies sulfate at a moderate level with clear amounts for its listed minerals. The liquid format favors easy mixing and avoids tablet disintegration. Its per-serving value is less competitive than lower-cost options in the collection.

Lithium · 1.5 mg OverallScore68
C Active Ingredient Quality & BioavailabilityA Dose, Safety & Label TransparencyD- Value

The liquid provides a clearly stated nutritional lithium amount within a broad trace-mineral blend. Its ionic mineral source is less targeted than lithium orotate or aspartate for mood-focused use. A relatively high serving cost limits value for shoppers seeking lithium specifically.

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Sources

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

  1. Reappraising lithium, triiodothyronine and second-generation antipsychotic augmentation treatment for major depression: a systematic review and meta-analysis with bias-adjustment analyses.
    Hsu TW; Hsu CW; Thompson T; Carvalho AF; Stubbs B; Tseng PT; Yang FC; Yu CL; Tu YK; Liang CS · BMJ mental health · 2026
    Meta-analysis13,616 participants56 studies pooledMood Support forLithium
  2. Bipolar depression and suicidal ideation: Moderators and mediators of a complex relationship.
    Kamali M; Reilly-Harrington NA; Chang WC; McInnis M; McElroy SL; Ketter TA; Shelton RC; Deckersbach T; Tohen M; Kocsis JH; Calabrese JR; Gao K; Thase ME; Bowden CL; Kinrys G; Bobo WV; Brody BD; Sylvia LG; Rabideau DJ; Nierenberg AA · Journal of affective disorders · 2020
    Randomized trial482 participantsMood Support forLithium
  3. Canadian Network for Mood and Anxiety Treatments (CANMAT) and International Society for Bipolar Disorders (ISBD) 2018 guidelines for the management of patients with bipolar disorder.
    Yatham LN; Kennedy SH; Parikh SV; Schaffer A; Bond DJ; Frey BN; Sharma V; Goldstein BI; Rej S; Beaulieu S; Alda M; MacQueen G; Milev RV; Ravindran A; O'Donovan C; McIntosh D; Lam RW; Vazquez G; Kapczinski F; McIntyre RS; Kozicky J; Kanba S; Lafer B; Suppes T; Calabrese JR; Vieta E; Malhi G; Post RM; Berk M · Bipolar disorders · 2019
    Guideline / consensusMood Support forLithium
  4. A pooled analysis of 2 placebo-controlled 18-month trials of lamotrigine and lithium maintenance in bipolar I disorder.
    Goodwin GM; Bowden CL; Calabrese JR; Grunze H; Kasper S; White R; Greene P; Leadbetter R · The Journal of clinical psychiatry · 2004
    Meta-analysis638 participants2 studies pooledMood Support forLithium
  5. Differences in the prophylactic effect of serum lithium levels on depression and mania in bipolar disorder: A dose-response meta-analysis.
    Hsu CW; Tsai SY; Tseng PT; Liang CS; Vieta E; Carvalho AF; Stubbs B; Kao HY; Tu YK; Lin PY · European neuropsychopharmacology : the journal of the European College of Neuropsychopharmacology · 2022
    Meta-analysis975 participants6 studies pooledMood Support forLithium
  6. Effects of boron supplementation on bone mineral density and dietary, blood, and urinary calcium, phosphorus, magnesium, and boron in female athletes.
    Meacham SL; Taper LJ; Volpe SL · Environmental health perspectives · 1995
    Randomized trial28 participantsBone Health forBoron
  7. [Comparative study of the urinary excretion of boron, calcium, magnesium and phosphorus in postmenopausal women with and without osteoporosis].
    José Ramón V; Mora Mora M; Marino Alarcón O; Hernández G; Josefina Linares L; Urdaneta Romero H; Arévalo González E · Investigacion clinica · 2013
    Case-control study45 participantsBone Health forBoron
  8. Effect of dietary boron on mineral, estrogen, and testosterone metabolism in postmenopausal women.
    Nielsen FH; Hunt CD; Mullen LM; Hunt JR · FASEB journal : official publication of the Federation of American Societies for Experimental Biology · 1987
    Single-arm trial12 participantsBone Health forBoron
  9. The relationship between boron and magnesium status and bone mineral density in the human: a review.
    Volpe SL; Taper LJ; Meacham S · Magnesium research · 1994
    Narrative reviewBone Health forBoron
  10. Plasma boron and the effects of boron supplementation in males.
    Green NR; Ferrando AA · Environmental health perspectives · 1995
    Randomized trial19 participantsTestosterone Support forBoron
  11. Biochemical and physiologic consequences of boron deprivation in humans.
    Nielsen FH · Environmental health perspectives · 1995
    Single-arm trial12 participantsTestosterone Support forBoron
  12. Diagnosis of magnesium-induced diarrhea.
    Fine KD; Santa Ana CA; Fordtran JS · The New England journal of medicine · 1991
    Clinical trial19 participantsDigestive Health forMagnesium
  13. Effect of the laxative magnesium oxide on gastrointestinal functional recovery in fast-track colonic resection: a double-blind, placebo-controlled randomized study.
    Andersen J; Christensen H; Pachler JH; Hallin M; Thaysen HV; Kehlet H · Colorectal disease : the official journal of the Association of Coloproctology of Great Britain and Ireland · 2012
    Randomized trial49 participantsDigestive Health forMagnesium
  14. A Randomized Double-blind Placebo-controlled Trial on the Effect of Magnesium Oxide in Patients With Chronic Constipation.
    Mori S; Tomita T; Fujimura K; Asano H; Ogawa T; Yamasaki T; Kondo T; Kono T; Tozawa K; Oshima T; Fukui H; Kimura T; Watari J; Miwa H · Journal of neurogastroenterology and motility · 2022
    Randomized trial34 participantsDigestive Health forMagnesium
  15. Metabolic responses of postmenopausal women to supplemental dietary boron and aluminum during usual and low magnesium intake: boron, calcium, and magnesium absorption and retention and blood mineral concentrations
    C D Hunt, J L Herbel, F H Nielsen · The American Journal of Clinical Nutrition · 1997
    Non-randomized trial11 participantsBone Health forBoron
  16. Association between Serum Magnesium and Fractures: A Systematic Review and Meta-Analysis of Observational Studies.
    Dominguez LJ; Veronese N; Ciriminna S; Pérez-Albela JL; Vásquez-López VF; Rodas-Regalado S; Di Bella G; Parisi A; Tagliaferri F; Barbagallo M · Nutrients · 2023
    Meta-analysis119,755 participants4 studies pooledBone Health forMagnesium
  17. Bioabsorbable Magnesium-Based Materials Potential and Safety in Bone Surgery: A Systematic Review.
    Hung CH; Kwok YC; Yip J; Wong HH; Leung YY · Craniomaxillofacial trauma & reconstruction · 2025
    Systematic review386 participants8 studies pooledBone Health forMagnesium
  18. Vascularized bone grafting fixed by biodegradable magnesium screw for treating osteonecrosis of the femoral head.
    Zhao D; Huang S; Lu F; Wang B; Yang L; Qin L; Yang K; Li Y; Li W; Wang W; Tian S; Zhang X; Gao W; Wang Z; Zhang Y; Xie X; Wang J; Li J · Biomaterials · 2016
    Randomized trial48 participantsBone Health forMagnesium
  19. An update on magnesium and bone health.
    Rondanelli M; Faliva MA; Tartara A; Gasparri C; Perna S; Infantino V; Riva A; Petrangolini G; Peroni G · Biometals : an international journal on the role of metal ions in biology, biochemistry, and medicine · 2022
    Narrative reviewBone Health forMagnesium
  20. Sex-specific differences in the association of magnesium intake with femoral neck bone mineral density among older adults.
    Wang B; Tan X; Yao X; Zhu Z · Endocrine connections · 2025
    Cross-sectional study1,343 participantsBone Health forMagnesium
  21. Effect of potassium citrate on bone density, microarchitecture, and fracture risk in healthy older adults without osteoporosis: a randomized controlled trial.
    Jehle S; Hulter HN; Krapf R · The Journal of clinical endocrinology and metabolism · 2013
    Randomized trial201 participantsBone Health forPotassium
  22. Long-term persistence of the urine calcium-lowering effect of potassium bicarbonate in postmenopausal women.
    Frassetto L; Morris RC; Sebastian A · The Journal of clinical endocrinology and metabolism · 2005
    Randomized trial170 participantsBone Health forPotassium
  23. Partial neutralization of the acidogenic Western diet with potassium citrate increases bone mass in postmenopausal women with osteopenia.
    Jehle S; Zanetti A; Muser J; Hulter HN; Krapf R · Journal of the American Society of Nephrology : JASN · 2007
    Randomized trial161 participantsBone Health forPotassium
  24. Potassium citrate supplementation results in sustained improvement in calcium balance in older men and women.
    Moseley KF; Weaver CM; Appel L; Sebastian A; Sellmeyer DE · Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research · 2013
    Randomized trial52 participantsBone Health forPotassium
  25. Effects of potassium chloride and potassium bicarbonate on endothelial function, cardiovascular risk factors, and bone turnover in mild hypertensives.
    He FJ; Marciniak M; Carney C; Markandu ND; Anand V; Fraser WD; Dalton RN; Kaski JC; MacGregor GA · Hypertension (Dallas, Tex. : 1979) · 2010
    Randomized trial42 participantsBone Health forPotassium
  26. Circulating and dietary magnesium and risk of cardiovascular disease: a systematic review and meta-analysis of prospective studies.
    Del Gobbo LC; Imamura F; Wu JH; de Oliveira Otto MC; Chiuve SE; Mozaffarian D · The American journal of clinical nutrition · 2013
    Meta-analysis313,041 participants16 studies pooledCardiovascular Support forMagnesium
  27. Magnesium and the risk of cardiovascular events: a meta-analysis of prospective cohort studies.
    Qu X; Jin F; Hao Y; Li H; Tang T; Wang H; Yan W; Dai K · PloS one · 2013
    Meta-analysis532,979 participants19 studies pooledCardiovascular Support forMagnesium
  28. Quantitative Association Between Serum/Dietary Magnesium and Cardiovascular Disease/Coronary Heart Disease Risk: A Dose-Response Meta-analysis of Prospective Cohort Studies.
    Zhao L; Hu M; Yang L; Xu H; Song W; Qian Y; Zhao M · Journal of cardiovascular pharmacology · 2020
    Meta-analysis544,581 participants18 studies pooledCardiovascular Support Heart Health forMagnesium
  29. 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-analysisCardiovascular Support Heart Health forMagnesium
  30. Serum magnesium, mortality, and cardiovascular disease in chronic kidney disease and end-stage renal disease patients: a systematic review and meta-analysis.
    Xiong J; He T; Wang M; Nie L; Zhang Y; Wang Y; Huang Y; Feng B; Zhang J; Zhao J · Journal of nephrology · 2020
    Meta-analysis200,934 participants20 studies pooledCardiovascular Support forMagnesium
  31. Magnesium-L-threonate improves sleep quality and daytime functioning in adults with self-reported sleep problems: A randomized controlled trial.
    Hausenblas HA; Lynch T; Hooper S; Shrestha A; Rosendale D; Gu J · Sleep medicine: X · 2025
    Randomized trial80 participantsEnergy forMagnesium
  32. Total magnesium intake and risk of frailty in older women.
    Struijk EA; Fung TT; Bischoff-Ferrari HA; Willett WC; Lopez-Garcia E · Journal of cachexia, sarcopenia and muscle · 2024
    Cohort study81,524 participantsEnergy forMagnesium
  33. Red blood cell magnesium and chronic fatigue syndrome.
    Cox IM; Campbell MJ; Dowson D · Lancet (London, England) · 1991
    Randomized trial32 participantsEnergy forMagnesium
  34. Exercise, magnesium and immune function.
    Laires MJ; Monteiro C · Magnesium research · 2008
    Narrative reviewEnergy forMagnesium
  35. Effects of boron supplementation on the severity and duration of pain in primary dysmenorrhea.
    Nikkhah S; Dolatian M; Naghii MR; Zaeri F; Taheri SM · Complementary therapies in clinical practice · 2015
    Randomized trial113 participantsGeneral Health forBoron
  36. Efficacy and safety of tavaborole topical solution, 5%, a novel boron-based antifungal agent, for the treatment of toenail onychomycosis: Results from 2 randomized phase-III studies.
    Elewski BE; Aly R; Baldwin SL; González Soto RF; Rich P; Weisfeld M; Wiltz H; Zane LT; Pollak R · Journal of the American Academy of Dermatology · 2015
    Randomized trialGeneral Health forBoron
  37. The efficacy and safety of tavaborole, a novel, boron-based pharmaceutical agent: phase 2 studies conducted for the topical treatment of toenail onychomycosis.
    Toledo-Bahena ME; Bucko A; Ocampo-Candiani J; Herz-Ruelas ME; Jones TM; Jarratt MT; Pollak RA; Zane LT · Journal of drugs in dermatology : JDD · 2015
    Clinical trial336 participantsGeneral Health forBoron
  38. Boron neutron capture therapy (BNCT) for glioblastoma multiforme: a phase II study evaluating a prolonged high-dose of boronophenylalanine (BPA).
    Henriksson R; Capala J; Michanek A; Lindahl SA; Salford LG; Franzén L; Blomquist E; Westlin JE; Bergenheim AT; Swedish Brain Tumour Study Group · Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology · 2009
    Single-arm trial30 participantsGeneral Health forBoron
  39. Effects of Calcium Fructoborate on Levels of C-Reactive Protein, Total Cholesterol, Low-Density Lipoprotein, Triglycerides, IL-1β, IL-6, and MCP-1: a Double-blind, Placebo-controlled Clinical Study
    Otilia-Constantina Rogoveanu, George Dan Mogosanu, Cornelia Bejenaru, Ludovic Everard Bejenaru, Octavian Croitoru, Johny Neamtu, Zbigniew Pietrzkowski, Tania Reyes-Izquierdo, Andrei Bita, Iulia Daria Scorei, Romulus Ion Scorei · Biological Trace Element Research · 2015
    Randomized trial78 participantsGeneral Health forBoron
  40. Perioperative systemic magnesium to minimize postoperative pain: a meta-analysis of randomized controlled trials.
    De Oliveira GS; Castro-Alves LJ; Khan JH; McCarthy RJ · Anesthesiology · 2013
    Meta-analysis1,257 participants20 studies pooledGeneral Health forMagnesium
  41. Long-term outcome after intravenous magnesium sulphate in suspected acute myocardial infarction: the second Leicester Intravenous Magnesium Intervention Trial (LIMIT-2).
    Woods KL; Fletcher S · Lancet (London, England) · 1994
    Randomized trial2,316 participantsGeneral Health forMagnesium
  42. Association of magnesium sulfate use with mortality in critically ill patients with sepsis: a retrospective propensity score-matched cohort study.
    Gu WJ; Duan XJ; Liu XZ; Cen Y; Tao LY; Lyu J; Yin HY · British journal of anaesthesia · 2023
    Cohort study10,999 participantsGeneral Health forMagnesium
  43. Hypomagnesemia and Mortality in Incident Hemodialysis Patients.
    Li L; Streja E; Rhee CM; Mehrotra R; Soohoo M; Brunelli SM; Kovesdy CP; Kalantar-Zadeh K · American journal of kidney diseases : the official journal of the National Kidney Foundation · 2016
    Cohort study9,359 participantsGeneral Health forMagnesium
  44. The effects of magnesium supplementation on abnormal uterine bleeding, alopecia, quality of life, and acne in women with polycystic ovary syndrome: a randomized clinical trial.
    Jaripur M; Ghasemi-Tehrani H; Askari G; Gholizadeh-Moghaddam M; Clark CCT; Rouhani MH · Reproductive biology and endocrinology : RB&E · 2022
    Randomized trial64 participantsGeneral Health forMagnesium
  45. Effects of magnesium supplementation on improving hyperglycemia, hypercholesterolemia, and hypertension in type 2 diabetes: A pooled analysis of 24 randomized controlled trials.
    Xu L; Li X; Wang X; Xu M · Frontiers in nutrition · 2023
    Meta-analysis1,325 participants24 studies pooledHeart Health forMagnesium
  46. The effect of lowering blood pressure by magnesium supplementation in diabetic hypertensive adults with low serum magnesium levels: a randomized, double-blind, placebo-controlled clinical trial.
    Guerrero-Romero F; Rodríguez-Morán M · Journal of human hypertension · 2009
    Randomized trial82 participantsHeart Health forMagnesium
  47. Positive effects of magnesium supplementation in metabolic syndrome.
    Kisters S; Kisters K; Werner T; Vormann J; Tokmak F; Westhoff T; Gröber U; Predel HG; Reuter H · International journal of clinical pharmacology and therapeutics · 2024
    Randomized trial54 participantsHeart Health forMagnesium
  48. Role of magnesium supplementation in the treatment of depression: A randomized clinical trial.
    Tarleton EK; Littenberg B; MacLean CD; Kennedy AG; Daley C · PloS one · 2017
    Randomized trial126 participantsStress Relief forMagnesium
  49. Effects of Intravenous Esketamine or Magnesium Sulfate on Early Postoperative Negative Emotions and Pain in Patients Undergoing Endoscopic Sinus Surgery: A Randomized Controlled Trial.
    Wang L; Zhou J; Liu Q; Qian K; Wang L; Xie C · Therapeutics and clinical risk management · 2026
    Randomized trial137 participantsStress Relief forMagnesium
  50. Effect of short-term magnesium supplementation on anxiety, depression and sleep quality in patients after open-heart surgery.
    Saba S; Faizi F; Sepandi M; Nehrir B · Magnesium research · 2022
    Non-randomized trial60 participantsStress Relief forMagnesium
  51. Effects of dry needling compared to magnesium infiltration in trigger points for patients with myofascial pain syndrome: a randomized controlled study in Tunisia.
    Dhouibi J; Moncer R; Kalbousi N; Gaddour M; Laayouni S; Ouanes W; Kacem B; Jemni S · Korean journal of family medicine · 2026
    Randomized trial45 participantsStress Relief forMagnesium
  52. Effect of magnesium and vitamin B6 supplementation on mental health and quality of life in stressed healthy adults: Post-hoc analysis of a randomised controlled trial.
    Noah L; Dye L; Bois De Fer B; Mazur A; Pickering G; Pouteau E · Stress and health : journal of the International Society for the Investigation of Stress · 2021
    Randomized trialStress Relief forMagnesium
  53. Comparative effects of daily and weekly boron supplementation on plasma steroid hormones and proinflammatory cytokines
    Mohammad Reza Naghii, Mahmoud Mofid, Ali Reza Asgari, Mehdi Hedayati, Maryam-Saddat Daneshpour · Journal of Trace Elements in Medicine and Biology · 2011
    Non-randomized trial8 participantsTestosterone Support forBoron
  54. Magnesium and anabolic hormones in older men.
    Maggio M; Ceda GP; Lauretani F; Cattabiani C; Avantaggiato E; Morganti S; Ablondi F; Bandinelli S; Dominguez LJ; Barbagallo M; Paolisso G; Semba RD; Ferrucci L · International journal of andrology · 2012
    Cohort study399 participantsTestosterone Support forMagnesium
  55. Analysis of the relationship between the blood concentration of several metals, macro- and micronutrients and endocrine disorders associated with male aging.
    Rotter I; Kosik-Bogacka DI; Dołęgowska B; Safranow K; Kuczyńska M; Laszczyńska M · Environmental geochemistry and health · 2017
    Cross-sectional study313 participantsTestosterone Support forMagnesium
  56. Effect of magnesium supplementation in improving hyperandrogenism, hirsutism, and sleep quality in women with polycystic ovary syndrome: A randomized, placebo-controlled clinical trial.
    Gholizadeh-Moghaddam M; Ghasemi-Tehrani H; Askari G; Jaripur M; Clark CCT; Rouhani MH · Health science reports · 2024
    Randomized trial64 participantsTestosterone Support forMagnesium
  57. The effects of trace element supplementation on glycolipid metabolism in PCOS: a systematic review and meta-analysis.
    Yang L; Gao Y; Zhao W; Qi Y; Duo X; Wang H · Frontiers in nutrition · 2025
    Meta-analysis1,600 participants25 studies pooledTestosterone Support forMagnesium
  58. Effects of magnesium supplementation on testosterone levels of athletes and sedentary subjects at rest and after exhaustion.
    Cinar V; Polat Y; Baltaci AK; Mogulkoc R · Biological trace element research · 2011
    Non-randomized trial20 participantsTestosterone Support forMagnesium