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Amino:Cuts Amino-Charged Energy Drink Goji Berry

ALLMAX
4.5
★ ★ ★ ★ ★
(593 ratings)
Alanine 500 mg
Caffeine 127 mg
Taurine 2000 mg
Glycine 345 mg
L-Carnitine 500 mg
Lysine 300 mg
Glutamine 250 mg
Product Image
Score66
A moderate energy drink mix with useful taurine and manageable listed caffeine. The broad amino label is much less impressive because most amounts are small.
How scoring works
Quantity:210 Gram(s) • (30 servings)
Goals:
Fitness
Energy
Metabolism Boost
Productivity Boost
Weight Loss

Score 66

A moderate energy drink mix with useful taurine and manageable listed caffeine. The broad amino label is much less impressive because most amounts are small.
How scoring works
$17.96($0.59 per serving)
iHerb
$ 20.80
Amazon
$ 17.96
Vitacost
$ 20.80
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Analysis

Natural caffeine from coffee extract provides 127 mg, paired with 2 g taurine and 500 mg carnitine tartrate. That combination can support a noticeable but more moderate energy effect than high-stimulant pre-workouts.

The BCAA blend totals only 725 mg, and glutamine, lysine, glycine, alanine, phenylalanine, histidine, and threonine are individually modest. Green coffee extract adds chlorogenic-acid content, but its additional caffeine contribution is not stated.

The powder works best as a low-calorie energy drink with taurine rather than a complete amino or recovery product. Users relying on it for muscle support would need adequate protein and more meaningful essential-amino-acid intake elsewhere.

Who is it for
  • Adults seeking moderate workout or daytime energy
  • People who want taurine with caffeine
  • Users not relying on the product as their main amino source
Best for
  • Moderate energy and focus
  • A low-calorie workout drink
  • Taurine-supported stimulation

Pros

  • Provides 2 g taurine
  • Uses a moderate 127 mg listed caffeine amount
  • Includes 500 mg carnitine tartrate
  • Clearly lists most individual amino-acid amounts

Cons

  • BCAA blend is only 725 mg
  • Most amino acids are too small for robust recovery support
  • Green coffee may add unquantified caffeine
  • Carnitine amount is modest

Warnings

  • Green coffee extract may add caffeine beyond the stated 127 mg, so total stimulant exposure is not fully defined
  • Avoid combining with other stimulant products until personal tolerance is known
  • Take early enough to prevent caffeine-related sleep disruption
  • Phenylalanine makes the product unsuitable for people with phenylketonuria

Nutrient quality

63 Moderate impact

Taurine and moderate caffeine provide useful energy support at a reasonable serving cost. The BCAA blend is opaque and most other amino acids are token additions.

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Ingredient transparency

71 High impact

Individual ingredient weights make the formula broadly readable. Missing active-marker yields and non-active ingredient details reduce full transparency.

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Customer satisfaction

67 High impact

The supplied rating is favorable and the feedback base is adequate. No complaint-level evidence was supplied to assess recurring issues or purpose-specific experiences.

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Value for money

61 Moderate impact

The serving cost is favorable for the amount of formula provided. Potency and standardization gaps still reduce certainty about effective value.

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Report analysis

Goals

Fitness
Impact
Highest effect
A- Goal FitA- Strength of SupportB+ CoverageA- Formula Quality
Caffeine · 127 mg

Caffeine, taurine, carnitine tartrate, and amino acids support alertness and selected training functions. Taurine and caffeine reach useful amounts, creating a clear pre-workout energy effect.

Carnitine and the branched-chain amino acids are modest, so recovery and metabolic support are less convincing than stimulation. Caffeine can disrupt sleep or cause jitters in sensitive users, especially with additional stimulant intake.

Study evidence
Caffeine Supportive 255 studies
L-Carnitine Supportive 52 studies
Taurine Supportive 21 studies
Energy
Impact
Highest effect
A Goal FitA- Strength of SupportB+ CoverageB Formula Quality
Caffeine · 127 mg

A moderate caffeine dose provides direct alertness while taurine and carnitine add workout-oriented metabolic support. Taurine reaches a meaningful amount and every principal active is individually listed.

Carnitine and the amino-acid blend are modest compared with common focused doses, and the BCAA blend does not disclose its individual amino-acid ratios. Using two scoops doubles the caffeine exposure and may disrupt sleep or cause jitters in caffeine-sensitive users.

Study evidence
Caffeine Supportive 68 studies
Metabolism Boost
Impact
Highest effect
A- Goal FitB- Strength of SupportB CoverageA- Formula Quality
Caffeine · 127 mg

Caffeine directly raises short-term energy expenditure, while carnitine, green coffee, and taurine broaden energy and exercise support. Caffeine is well dosed, but carnitine is modest and the green coffee extract lacks enough standardization detail to judge metabolic potency.

The focused stimulant-plus-amino-acid design is coherent and avoids a crowded thermogenic blend. Caffeine may cause insomnia, jitteriness, or a faster heartbeat, especially when used late or combined with other caffeine sources.

Study evidence
Caffeine Disputed 40 studies
Taurine Supportive 11 studies
Productivity Boost
Impact
Highest effect
B+ Goal FitB+ Strength of SupportB CoverageB Formula Quality
Caffeine · 127 mg

A clearly stated caffeine amount provides acute alertness, while taurine, carnitine, green coffee extract, and phenylalanine add energy and performance support. The formula is better suited to short-term energy than memory or calm sustained focus.

Caffeine and taurine reach practical amounts and all key actives are disclosed. Phenylalanine is token-level, carnitine is modest, and the absence of L-theanine or another calming partner may make the stimulant effect less smooth for sensitive users.

Study evidence
Caffeine Supportive 108 studies
Weight Loss
Impact
High effect
B- Goal FitB- Strength of SupportC CoverageC+ Formula Quality
Caffeine · 127 mg

A clearly stated caffeine amount may modestly raise energy expenditure and support workout effort. Taurine and amino acids broaden the exercise focus, while green coffee and carnitine add less certain weight-management value.

Carnitine and the branched-chain amino-acid blend are below amounts usually chosen for focused performance or muscle preservation. The caffeine amount can disturb sleep or cause jitteriness in sensitive users, especially when combined with other stimulants.

Study evidence
Caffeine Disputed 14 studies
Cardiovascular Support
Impact
Moderate effect
C+ Goal FitB- Strength of SupportC CoverageD- Formula Quality
L-Carnitine · 500 mgTaurine · 2000 mg

Taurine supplies a meaningful amount for heart rhythm and vascular support, while carnitine adds a smaller cardiac-energy contribution. The formula is still designed mainly for exercise energy rather than comprehensive cardiovascular support.

Caffeine and green coffee can work against the desired goal in caffeine-sensitive users. The 127 mg caffeine amount may cause a faster heartbeat, a temporary blood-pressure rise, jitters, or disrupted sleep.

Study evidence
L-Carnitine Supportive 73 studies
Taurine Supportive 24 studies

Ingredients

IngredientAmount per serving
Calories
5 Calorie(s)
Total Carbohydrates
1 Gram(s)
Calcium (Calcium Silicate)
14 mg
L-Carnitine L-Tartrate
500 mg
Caffeine, Natural (Coffea robusta Bean Extract)
127 mg
Green Coffee Bean Extract (Chlorogenic Acid)
125 mg
Taurine
2000 mg
ACUTS BCAAs
725 mg
L-Alanine
500 mg
L-Glycine
345 mg
L-Lysine Hydrochloride
300 mg
L-Glutamine
250 mg
L-Phenylalanine
50 mg
L-Histidine Hydrochloride
50 mg
L-Threonine
50 mg
Gluten Free Adults 18–50 Sugar Free
Report overview
Alanine · 500 mg OverallScore90
A+ Active Ingredient Quality & BioavailabilityA+ Dose, Safety & Label TransparencyD+ Value

The powder clearly identifies 500 mg of standalone L-alanine, confirming the relevant isomer and a high-potency amount. Individual dose disclosure supports reliable comparison within the broader amino-energy formula. Natural caffeine adds 127 mg of stimulant exposure, which may disrupt sleep or cause restlessness in sensitive users.

D- Active Ingredient Quality & BioavailabilityA+ Dose, Safety & Label TransparencyC Value

Natural coffee-bean caffeine provides a clearly stated, effective amount, but the source is not standardized and uses no advanced release technology. The single disclosed caffeine amount supports straightforward dosing, with no high-potency secondary stimulant listed. Pricing is typical for the collection and offers fair value.

Taurine · 2000 mg OverallScore63
D+ Active Ingredient Quality & BioavailabilityB+ Dose, Safety & Label TransparencyD+ Value

A single scoop delivers a substantial taurine amount with clear serving information. Taurine form, origin, and independent verification are not disclosed, while the active cost sits in a moderate range rather than a bulk-powder range. Natural caffeine at 127 mg may disrupt sleep or cause jitteriness and a faster heartbeat, especially when combined with other caffeine sources.

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Sources

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

  1. Differential cognitive effects of energy drink ingredients: caffeine, taurine, and glucose.
    Giles GE; Mahoney CR; Brunyé TT; Gardony AL; Taylor HA; Kanarek RB · Pharmacology, biochemistry, and behavior · 2013
    Randomized trial48 participantsEnergy forCaffeine
  2. Caffeine administration at night during extended wakefulness effectively mitigates performance impairment but not subjective assessments of fatigue and sleepiness.
    Paech GM; Banks S; Pajcin M; Grant C; Johnson K; Kamimori GH; Vedova CB · Pharmacology, biochemistry, and behavior · 2017
    Randomized trial24 participantsEnergy forCaffeine
  3. A critical review of caffeine withdrawal: empirical validation of symptoms and signs, incidence, severity, and associated features.
    Juliano LM; Griffiths RR · Psychopharmacology · 2005
    Systematic review66 studies pooledEnergy forCaffeine
  4. Effects of nine weeks L-Carnitine supplementation on exercise performance, anaerobic power, and exercise-induced oxidative stress in resistance-trained males.
    Koozehchian MS; Daneshfar A; Fallah E; Agha-Alinejad H; Samadi M; Kaviani M; Kaveh B M; Jung YP; Sablouei MH; Moradi N; Earnest CP; Chandler TJ; Kreider RB · Journal of exercise nutrition & biochemistry · 2020
    Randomized trial23 participantsFitness forL-Carnitine
  5. Acute L-Carnitine Supplementation Does Not Improve CrossFit® Performance: A Randomized, Double-Blind, Placebo-Controlled Crossover Study.
    Devrim-Lanpir A; Velasco LS; Ramirez Lara FG; Ojeda Sanchez A; Kimble R; Zare R; Gunes FE; Knechtle B; Weiss K; Rosemann T; Heinrich K · Nutrients · 2025
    Randomized trial20 participantsFitness forL-Carnitine
  6. The Effects of L-Carnitine Supplementation on Weight Loss, Glycemic Control, and Cardiovascular Risk Factors in Patients With Type 2 Diabetes: A Systematic Review and Dose-response Meta-Analysis of Randomized Controlled Trials.
    Mirrafiei A; Jayedi A; Shab-Bidar S · Clinical therapeutics · 2024
    Meta-analysis2,041 participants21 studies pooledCardiovascular Support forL-Carnitine
  7. Effective dosing of L-carnitine in the secondary prevention of cardiovascular disease: a systematic review and meta-analysis.
    Shang R; Sun Z; Li H · BMC cardiovascular disorders · 2015
    Meta-analysis3,108 participants5 studies pooledCardiovascular Support forL-Carnitine
  8. Intestinal microbiota metabolism of L-carnitine, a nutrient in red meat, promotes atherosclerosis.
    Koeth RA; Wang Z; Levison BS; Buffa JA; Org E; Sheehy BT; Britt EB; Fu X; Wu Y; Li L; Smith JD; DiDonato JA; Chen J; Li H; Wu GD; Lewis JD; Warrier M; Brown JM; Krauss RM; Tang WH; Bushman FD; Lusis AJ; Hazen SL · Nature medicine · 2013
    Other2,595 participantsCardiovascular Support forL-Carnitine
  9. Accelerated biological aging, mediating amino acids, and risk of incident type 2 diabetes: a prospective cohort study.
    Zhang Z; Wang J; Yu B; Sun Y; Chen Y; Lu Y; Wang N; Xia F · Journal of endocrinological investigation · 2025
    Cohort study95,773 participantsAnti-Aging forGlycine
  10. Dietary protein and amino acid intakes for mitigating sarcopenia in humans.
    He W; Connolly ED; Cross HR; Wu G · Critical reviews in food science and nutrition · 2025
    Narrative reviewAnti-Aging forGlycine
  11. Age-Related Neurochemical Changes in the Vestibular Nuclei.
    Smith PF · Frontiers in neurology · 2016
    Narrative reviewAnti-Aging forGlycine
  12. SHMT2 regulates CD8+ T cell senescence via the reactive oxygen species axis in HIV-1 infected patients on antiretroviral therapy.
    Zhang QS; Wang JN; Yang TL; Li SY; Li JQ; Liu DN; Shang H; Zhang ZN · EBioMedicine · 2025
    Observational studyAnti-Aging forGlycine
  13. Metabolomics and incident dementia in older Chinese adults: The Shanghai Aging Study.
    Cui M; Jiang Y; Zhao Q; Zhu Z; Liang X; Zhang K; Wu W; Dong Q; An Y; Tang H; Ding D; Chen X · Alzheimer's & dementia : the journal of the Alzheimer's Association · 2021
    Cohort studyAnti-Aging forGlycine
  14. Taurine supplementation reduces myeloperoxidase and matrix-metalloproteinase-9 levels and improves the effects of exercise in cognition and physical fitness in older women.
    Chupel MU; Minuzzi LG; Furtado GE; Santos ML; Ferreira JP; Filaire E; Teixeira AM · Amino acids · 2021
    Randomized trial48 participantsAnti-Aging forTaurine
  15. Taurine as a possible antiaging therapy: A controlled clinical trial on taurine antioxidant activity in women ages 55 to 70.
    Abud GF; De Carvalho FG; Batitucci G; Travieso SG; Bueno Junior CR; Barbosa Junior F; Marchini JS; de Freitas EC · Nutrition (Burbank, Los Angeles County, Calif.) · 2022
    Randomized trial24 participantsAnti-Aging forTaurine
  16. Association of taurine intake with changes in physical fitness among community-dwelling middle-aged and older Japanese adults: an 8-year longitudinal study.
    Domoto T; Kise K; Oyama Y; Furuya K; Kato Y; Nishita Y; Kozakai R; Otsuka R · Frontiers in nutrition · 2024
    Cohort studyAnti-Aging forTaurine
  17. Glycine treatment decreases proinflammatory cytokines and increases interferon-gamma in patients with type 2 diabetes.
    Cruz M; Maldonado-Bernal C; Mondragón-Gonzalez R; Sanchez-Barrera R; Wacher NH; Carvajal-Sandoval G; Kumate J · Journal of endocrinological investigation · 2009
    Randomized trial74 participantsAnti-Inflammatory Support forGlycine
  18. Effect of oral glycine on the clinical, spirometric and inflammatory status in subjects with cystic fibrosis: a pilot randomized trial.
    Vargas MH; Del-Razo-Rodríguez R; López-García A; Lezana-Fernández JL; Chávez J; Furuya MEY; Marín-Santana JC · BMC pulmonary medicine · 2018
    Randomized trial13 participantsAnti-Inflammatory Support forGlycine
  19. Subgingival air polishing (glycine powder) versus minocycline hydrochloride: efficacy in residual periodontal pockets following endoscope-assisted scaling and root planing.
    Guo X; Bai H; Lu X; Guo J; Qi Y; Huo X; Li S · Clinical oral investigations · 2026
    Randomized trial80 participantsAnti-Inflammatory Support forGlycine
  20. Long-term Implant Maintenance: A Systematic Review of Home and Professional Care Strategies in Supportive Implant Therapy.
    Araújo TG; Moreira CS; Neme RA; Luan H; Bertolini M · Brazilian dental journal · 2024
    Systematic review13 studies pooledAnti-Inflammatory Support forGlycine
  21. Analysis of the factors influencing the occurrence of peri-implantitis in patients with implant-supported restoration and study on the maintenance effect of subgingival sandblasting.
    Pan T; Meng W; Zhang M; Xie Y; Chen Z; Zhou M; Yin L; Xie H · BMC oral health · 2026
    Randomized trial198 participantsAnti-Inflammatory Support forGlycine
  22. Oxidative stress and inflammation in obesity after taurine supplementation: a double-blind, placebo-controlled study.
    Rosa FT; Freitas EC; Deminice R; Jordão AA; Marchini JS · European journal of nutrition · 2015
    Randomized trial24 participantsAnti-Inflammatory Support forTaurine
  23. Effect of taurine supplementation on preventing ventilator-associated pneumonia in pediatrics under mechanical ventilation, a randomized controlled double-blind clinical trial.
    Shirzad-Yazdi N; Shorafa E; Abootalebi SN; Heidari R; Hojabri K; Doostfatemeh M; Masjedi F; Vazin A; Shafiekhani M · Frontiers in pediatrics · 2025
    Randomized trial77 participantsAnti-Inflammatory Support forTaurine
  24. Effect of taurine in muscle damage markers and inflammatory cytokines in running exercise.
    Wang Y; Xu T; Zhao H; Gu C; Li Z · Frontiers in physiology · 2022
    Non-randomized trial10 participantsAnti-Inflammatory Support forTaurine
  25. Exercise and taurine in inflammation, cognition, and peripheral markers of blood-brain barrier integrity in older women.
    Chupel MU; Minuzzi LG; Furtado G; Santos ML; Hogervorst E; Filaire E; Teixeira AM · Applied physiology, nutrition, and metabolism = Physiologie appliquee, nutrition et metabolisme · 2018
    Randomized trial48 participantsAnti-Inflammatory Support forTaurine
  26. Taurine supplementation has anti-atherogenic and anti-inflammatory effects before and after incremental exercise in heart failure.
    Ahmadian M; Roshan VD; Aslani E; Stannard SR · Therapeutic advances in cardiovascular disease · 2017
    Randomized trialAnti-Inflammatory Support forTaurine
  27. L-Carnitine supplementation reduces oxidized LDL cholesterol in patients with diabetes.
    Malaguarnera M; Vacante M; Avitabile T; Malaguarnera M; Cammalleri L; Motta M · The American journal of clinical nutrition · 2009
    Randomized trial81 participantsCardiovascular Support forL-Carnitine
  28. L-Carnitine's Effect on the Biomarkers of Metabolic Syndrome: A Systematic Review and Meta-Analysis of Randomized Controlled Trials.
    Choi M; Park S; Lee M · Nutrients · 2021
    Meta-analysis9 studies pooledCardiovascular Support forL-Carnitine
  29. The Effects of L-Carnitine on Echocardiographic Changes in Patients With β-Thalassemia Major and Intermedia.
    Shahidi M; Hashemi SR; Fattahi N; Roshani D; Vahedi S; Sharifi P; Moradveisi B · Journal of pediatric hematology/oncology · 2020
    Randomized trial60 participantsCardiovascular Support forL-Carnitine
  30. Efficacy and tolerability of combined treatment with L-carnitine and simvastatin in lowering lipoprotein(a) serum levels in patients with type 2 diabetes mellitus.
    Solfrizzi V; Capurso C; Colacicco AM; D'Introno A; Fontana C; Capurso SA; Torres F; Gadaleta AM; Koverech A; Capurso A; Panza F · Atherosclerosis · 2007
    Randomized trial52 participantsCardiovascular Support forL-Carnitine
  31. Taurine Supplementation Lowers Blood Pressure and Improves Vascular Function in Prehypertension: Randomized, Double-Blind, Placebo-Controlled Study.
    Sun Q; Wang B; Li Y; Sun F; Li P; Xia W; Zhou X; Li Q; Wang X; Chen J; Zeng X; Zhao Z; He H; Liu D; Zhu Z · Hypertension (Dallas, Tex. : 1979) · 2016
    Randomized trial120 participantsCardiovascular Support forTaurine
  32. Taurine ameliorates blood pressure and vascular function in patients with type 2 diabetes: Randomized, double-blind, placebo-controlled trial.
    Li Y; Wang Q; Liu Y; Li Q; Xia W; Lin S; Yang Q; Scholze A; Zhao Z; He H; Zhang H; Yan Z; Tepel M; Mu H; Zhu Z; Liu D · iScience · 2025
    Randomized trial165 participantsCardiovascular Support forTaurine
  33. Taurine reduces the risk for metabolic syndrome: a systematic review and meta-analysis of randomized controlled trials.
    Tzang CC; Chi LY; Lin LH; Lin TY; Chang KV; Wu WT; Özçakar L · Nutrition & diabetes · 2024
    Meta-analysis1,024 participants25 studies pooledCardiovascular Support forTaurine
  34. Effects of Oral Taurine Supplementation on Cardiometabolic Risk Factors: A Meta-analysis and Systematic Review of Randomized Clinical Trials.
    Nie Z; Liu Y; Zhang M; Wu C; Cao Q; Xu J; Zheng Y; Min Z; Zhang W; Han S · Nutrition reviews · 2025
    Meta-analysis34 studies pooledCardiovascular Support forTaurine
  35. The effects of taurine supplementation on glycemic control and serum lipid profile in patients with type 2 diabetes: a randomized, double-blind, placebo-controlled trial.
    Maleki V; Alizadeh M; Esmaeili F; Mahdavi R · Amino acids · 2021
    Randomized trial45 participantsCardiovascular Support forTaurine
  36. Efficacy of glutamine supplementation in postoperative patients undergoing hepatic surgery: a systematic review and meta-analysis of randomized controlled trials.
    Meng X; Zhang M; Wang X · Clinics (Sao Paulo, Brazil) · 2026
    Meta-analysis1,198 participants18 studies pooledDetoxification forGlutamine
  37. Glutamine supplementation in preterm infants receiving parenteral nutrition leads to an early improvement in liver function.
    Wang Y; Cai W; Tao YX; Tang QY; Feng Y; Wu J · Asia Pacific journal of clinical nutrition · 2014
    Randomized trial30 participantsDetoxification forGlutamine
  38. Parenteral glutamine protects hepatic function during bone marrow transplantation.
    Brown SA; Goringe A; Fegan C; Davies SV; Giddings J; Whittaker JA; Burnett AK; Poynton CH · Bone marrow transplantation · 1998
    Randomized trial34 participantsDetoxification forGlutamine
  39. Protective effect of parenteral glutamine supplementation on hepatic function in very low birth weight infants.
    Wang Y; Tao YX; Cai W; Tang QY; Feng Y; Wu J · Clinical nutrition (Edinburgh, Scotland) · 2010
    Randomized trial30 participantsDetoxification forGlutamine
  40. A multistrain probiotic increases the serum glutamine/glutamate ratio in patients with cirrhosis: a metabolomic analysis.
    Laghi L; Román E; Lan Q; Nieto JC; Canalda-Baltrons A; Poca M; Sánchez-Rodríguez MB; Clària J; Alvarado E; Cuyàs B; Sánchez E; Vidal S; Guarner C; Escorsell À; Manichanh C; Soriano G · Hepatology communications · 2023
    Randomized trial32 participantsDetoxification forGlutamine
  41. The impact of obesity-associated glycine deficiency on the elimination of endogenous and exogenous metabolites via the glycine conjugation pathway.
    Tan HC; Hsu JW; Tai ES; Chacko S; Kovalik JP; Jahoor F · Frontiers in endocrinology · 2024
    Cohort study42 participantsDetoxification forGlycine
  42. Metabolic impact of dietary glycine supplementation in individuals with severe obesity.
    Tan HC; Hsu JW; Tai ES; Chacko S; Wu V; Yen PM; Kovalik JP; Jahoor F · Scientific reports · 2025
    Single-arm trial19 participantsDetoxification forGlycine
  43. Contribution towards a Metabolite Profile of the Detoxification of Benzoic Acid through Glycine Conjugation: An Intervention Study.
    Irwin C; van Reenen M; Mason S; Mienie LJ; Westerhuis JA; Reinecke CJ · PloS one · 2017
    Non-randomized trial21 participantsDetoxification forGlycine
  44. Glycine conjugation of para-aminobenzoic acid (PABA): a quantitative test of liver function.
    Furuya KN; Durie PR; Roberts EA; Soldin SJ; Verjee Z; Yung-Jato L; Giesbrecht E; Ellis L · Clinical biochemistry · 1996
    Methods validation study74 participantsDetoxification forGlycine
  45. The treatment of isovaleric acidemia with glycine supplement
    M Naglak, R Salvo, K Madsen, P Dembure, L Elsas · Pediatric research · 1988
    Non-randomized trial2 participantsDetoxification forGlycine
  46. Dietary amino acid taurine ameliorates liver injury in chronic hepatitis patients.
    Hu YH; Lin CL; Huang YW; Liu PE; Hwang DF · Amino acids · 2008
    Non-randomized trial24 participantsDetoxification forTaurine
  47. Taurine status and response to intravenous taurine supplementation in adults with short-bowel syndrome undergoing long-term parenteral nutrition: a pilot study.
    Schneider SM; Joly F; Gehrardt MF; Badran AM; Myara A; Thuillier F; Coudray-Lucas C; Cynober L; Trivin F; Messing B · The British journal of nutrition · 2006
    Single-arm trial32 participantsDetoxification forTaurine
  48. Cognitive and mood improvements of caffeine in habitual consumers and habitual non-consumers of caffeine.
    Haskell CF; Kennedy DO; Wesnes KA; Scholey AB · Psychopharmacology · 2005
    Randomized trial48 participantsEnergy forCaffeine
  49. Caffeine-containing energy drink improves physical performance of elite rugby players during a simulated match.
    Del Coso J; Ramírez JA; Muñoz G; Portillo J; Gonzalez-Millán C; Muñoz V; Barbero-Álvarez JC; Muñoz-Guerra J · Applied physiology, nutrition, and metabolism = Physiologie appliquee, nutrition et metabolisme · 2016
    Randomized trial26 participantsEnergy forCaffeine
  50. Does Single or Combined Caffeine and Taurine Supplementation Improve Athletic and Cognitive Performance without Affecting Fatigue Level in Elite Boxers? A Double-Blind, Placebo-Controlled Study.
    Ozan M; Buzdagli Y; Eyipinar CD; Baygutalp NK; Yüce N; Oget F; Kan E; Baygutalp F · Nutrients · 2022
    Randomized trial20 participantsEnergy forCaffeine
  51. Trait Energy and Fatigue Modify the Effects of Caffeine on Mood, Cognitive and Fine-Motor Task Performance: A Post-Hoc Study.
    Fuller DT; Smith ML; Boolani A · Nutrients · 2021
    Randomized trialEnergy forCaffeine
  52. Effect of caffeine ingestion on cycling performance: a systematic review and meta-analysis.
    Wu J; Xu K; Yin M; Ding X; Wang T; Zhang Q; Wu X; Xiao N · Frontiers in nutrition · 2026
    Meta-analysis226 participants20 studies pooledFitness forCaffeine
  53. Effects of Caffeine Intake on Endurance Running Performance and Time to Exhaustion: A Systematic Review and Meta-Analysis.
    Wang Z; Qiu B; Gao J; Del Coso J · Nutrients · 2023
    Meta-analysis254 participants21 studies pooledFitness forCaffeine
  54. Acute Effects of Caffeine Supplementation on Movement Velocity in Resistance Exercise: A Systematic Review and Meta-analysis.
    Raya-González J; Rendo-Urteaga T; Domínguez R; Castillo D; Rodríguez-Fernández A; Grgic J · Sports medicine (Auckland, N.Z.) · 2021
    Meta-analysis12 studies pooledFitness forCaffeine
  55. Sex Differences in the Ergogenic Response of Acute Caffeine Intake on Muscular Strength, Power and Endurance Performance in Resistance-Trained Individuals: A Randomized Controlled Trial.
    Montalvo-Alonso JJ; Ferragut C; Del Val-Manzano M; Valadés D; Roberts J; Pérez-López A · Nutrients · 2024
    Randomized trial76 participantsFitness forCaffeine
  56. Can I Have My Coffee and Drink It? A Systematic Review and Meta-analysis to Determine Whether Habitual Caffeine Consumption Affects the Ergogenic Effect of Caffeine.
    Carvalho A; Marticorena FM; Grecco BH; Barreto G; Saunders B · Sports medicine (Auckland, N.Z.) · 2022
    Meta-analysis60 studies pooledFitness forCaffeine
  57. A systematic review and meta-analysis of propionyl-L-carnitine effects on exercise performance in patients with claudication.
    Brass EP; Koster D; Hiatt WR; Amato A · Vascular medicine (London, England) · 2013
    Meta-analysis13 studies pooledFitness forL-Carnitine
  58. Oral acetyl-L-carnitine therapy reduces fatigue in overt hepatic encephalopathy: a randomized, double-blind, placebo-controlled study.
    Malaguarnera M; Vacante M; Giordano M; Pennisi G; Bella R; Rampello L; Malaguarnera M; Li Volti G; Galvano F · The American journal of clinical nutrition · 2011
    Randomized trial121 participantsFitness forL-Carnitine
  59. Prolonged oral L-carnitine substitution increases bicycle ergometer performance in patients with severe, ischemically induced cardiac insufficiency.
    Löster H; Miehe K; Punzel M; Stiller O; Pankau H; Schauer J · Cardiovascular drugs and therapy · 2000
    Randomized trial41 participantsFitness forL-Carnitine
  60. L-Carnitine treatment reduces severity of physical and mental fatigue and increases cognitive functions in centenarians: a randomized and controlled clinical trial.
    Malaguarnera M; Cammalleri L; Gargante MP; Vacante M; Colonna V; Motta M · The American journal of clinical nutrition · 2008
    Randomized trial66 participantsFitness forL-Carnitine
  61. Taurine supplementation enhances anaerobic power in elite speed skaters: A double-blind, randomized, placebo-controlled, crossover study.
    Buzdağlı Y; Eyipınar CD; Öget F; Şıktar E; Forbes SC; Tekin A · Biology of sport · 2023
    Randomized trial30 participantsFitness forTaurine
  62. The effect of acute taurine ingestion on 3-km running performance in trained middle-distance runners.
    Balshaw TG; Bampouras TM; Barry TJ; Sparks SA · Amino acids · 2013
    Randomized trial8 participantsFitness forTaurine
  63. Effects of different doses of taurine supplementation on repeated-sprint performance after exhaustive exercise in a high temperature and humidity environment.
    Cheng X; Lin Y; Li Z · Frontiers in nutrition · 2026
    Randomized trial16 participantsFitness forTaurine
  64. Oral taurine improves critical power and severe-intensity exercise tolerance.
    Waldron M; Patterson SD; Jeffries O · Amino acids · 2020
    Randomized trial12 participantsFitness forTaurine
  65. Acute taurine supplementation enhances thermoregulation and endurance cycling performance in the heat.
    Page LK; Jeffries O; Waldron M · European journal of sport science · 2019
    Randomized trial11 participantsFitness forTaurine
  66. Effects of modafinil and caffeine on night-time vigilance of air force crewmembers: A randomized controlled trial.
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    Brice CF; Smith AP · Psychopharmacology · 2003
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    Fine BJ; Kobrick JL; Lieberman HR; Marlowe B; Riley RH; Tharion WJ · Psychopharmacology · 1995
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    Trepp R; Muri R; Maissen-Abgottspon S; Haynes AG; Hochuli M; Everts R · The American journal of clinical nutrition · 2024
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    Hofman DL; Champ CL; Lawton CL; Henderson M; Dye L · Orphanet journal of rare diseases · 2019
    Systematic review16 studies pooledMental Focus forPhenylalanine
  73. Are Functional Brain Networks Sensitive to High Phenylalanine in Adults With Phenylketonuria?
    Vallesi V; Morishima Y; Winiger L; Trepp R; Everts R; Muri R · JIMD reports · 2026
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    Weglage J; Schmidt E; Fünders B; Pietsch M; Ullrich K · Journal of clinical and experimental neuropsychology · 1997
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    van Ruitenbeek P; Sambeth A; Vermeeren A; Young SN; Riedel WJ · British journal of pharmacology · 2009
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    Krieger J; Schrautemeier A; Hagele A; Gaige C; Mennemeyer O; Tolbert S; Iannotti J; Kerksick C; Noonan C; Mumford P · Nutrients · 2025
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    Rumpler W; Seale J; Clevidence B; Judd J; Wiley E; Yamamoto S; Komatsu T; Sawaki T; Ishikura Y; Hosoda K · The Journal of nutrition · 2001
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    Koot P; Deurenberg P · Annals of nutrition & metabolism · 1995
    Randomized trial12 participantsMetabolism Boost forCaffeine
  80. Caffeine Increases Work Done above Critical Power, but Not Anaerobic Work.
    Silveira R; Andrade-Souza VA; Arcoverde L; Tomazini F; Sansonio A; Bishop DJ; Bertuzzi R; Lima-Silva AE · Medicine and science in sports and exercise · 2018
    Randomized trial9 participantsMetabolism Boost forCaffeine
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    Wang K; Ma CH; Khoramjoo M; Kung JY; Oudit GY · BMC infectious diseases · 2026
    Meta-analysis1,030 participants27 studies pooledMetabolism Boost forTaurine
  82. Effect of Long-Term Taurine Supplementation on the Lipid and Glycaemic Profile in Adults with Overweight or Obesity: A Systematic Review and Meta-Analysis.
    Sun Q; Wang J; Wang H; Yu H; Wan K; Ma F; Wang R · Nutrients · 2025
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    Guan L; Miao P · European journal of pharmacology · 2021
    Meta-analysis12 studies pooledMetabolism Boost forTaurine
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    Zhang M; Bi LF; Fang JH; Su XL; Da GL; Kuwamori T; Kagamimori S · Amino acids · 2005
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  85. Use of skeletal muscle fiber composition to assess relationship between amino acid metabolism and insulin sensitivity.
    Magnusson TE; Blackwood SJ; Tischer D; Strmeň T; Pontén M; Edman S; Horwath O; Apró W; Moberg M; Chorell E; Katz A · European journal of endocrinology · 2025
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    Zwyghuizen-Doorenbos A; Roehrs TA; Lipschutz L; Timms V; Roth T · Psychopharmacology · 1990
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    Irwin C; McCartney D; Grant G; Delang N; Bartrim K; Cox GR; Desbrow B · Perceptual and motor skills · 2023
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    Lieberman HR; Tharion WJ; Shukitt-Hale B; Speckman KL; Tulley R · Psychopharmacology · 2003
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  89. A review of caffeine's effects on cognitive, physical and occupational performance.
    McLellan TM; Caldwell JA; Lieberman HR · Neuroscience and biobehavioral reviews · 2017
    Narrative reviewProductivity Boost forCaffeine
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    Wang R; Wang W; Meng L; Hao G; Gu G · Frontiers in nutrition · 2026
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  91. Changes in caffeine intake and long-term weight change in men and women.
    Lopez-Garcia E; van Dam RM; Rajpathak S; Willett WC; Manson JE; Hu FB · The American journal of clinical nutrition · 2006
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    Ferreira GA; Felippe LC; Bertuzzi R; Bishop DJ; Ramos IS; De-Oliveira FR; Lima-Silva AE · Brazilian journal of medical and biological research = Revista brasileira de pesquisas medicas e biologicas · 2020
    Randomized trial20 participantsWeight Loss forCaffeine
  93. Eight Weeks of Sprint Interval Training With Adding Caffeine Ingestion Leads to Greater Improvements in Health-Related Physiological Parameters in Obese Male Adults.
    Zhiang J; Song Q · Physiological research · 2026
    Randomized trial30 participantsWeight Loss forCaffeine
  94. Caffeine treatment prevented from weight regain after calorie shifting diet induced weight loss.
    Davoodi SH; Hajimiresmaiel SJ; Ajami M; Mohseni-Bandpei A; Ayatollahi SA; Dowlatshahi K; Javedan G; Pazoki-Toroudi H · Iranian journal of pharmaceutical research : IJPR · 2014
    Non-randomized trial60 participantsWeight Loss forCaffeine
  95. The effects of caffeine intake on weight loss: a systematic review and dos-response meta-analysis of randomized controlled trials.
    Tabrizi R; Saneei P; Lankarani KB; Akbari M; Kolahdooz F; Esmaillzadeh A; Nadi-Ravandi S; Mazoochi M; Asemi Z · Critical reviews in food science and nutrition · 2020
    Meta-analysis606 participants13 studies pooledWeight Loss forCaffeine