INGREDIENTS

NeuroVolt™ Core Ingredients: The Science Behind the Formula


Energy Starts With Your Biology™


NeuroVolt™ Core isn’t another caffeine-loaded energy drink.


It’s a thoughtfully formulated blend of vitamins, minerals, electrolytes, amino acids, and active nutrient forms designed to support normal cellular energy production, methylation, electrolyte balance, nervous-system function, and mental performance.*


Every ingredient has a purpose.


Explore the ingredients inside NeuroVolt™ Core and learn why each one was selected.

EXPLORE BY BENEFIT

⚡ CELLULAR ENERGY

B1 • B2 • B6 • B12 • Folate • Magnesium

Supports normal cellular energy metabolism and the biochemical processes your cells use to convert nutrients into usable energy.*

🧬 METHYLATION

L-5-MTHF • Methylcobalamin • Hydroxocobalamin • B6

Provides important nutrient cofactors involved in normal one-carbon metabolism, methylation, and homocysteine metabolism.*

🧠 NERVOUS SYSTEM

B1 • B6 • B12 • Magnesium • Taurine • L-Theanine

Provides nutrients involved in normal nervous-system and neurotransmitter function.*

💧 ELECTROLYTE BALANCE

Potassium • Magnesium • Sodium • Taurine

Provides important minerals and nutrients involved in normal fluid, electrolyte, nerve, and muscle function.*

🎯 MENTAL PERFORMANCE

B Vitamins • Magnesium • L-Theanine • Taurine

Supports nutritional pathways involved in normal brain and nervous-system function.*

🛡️ ANTIOXIDANT SUPPORT

Vitamin C • Zinc • Riboflavin

Provides nutrients involved in normal antioxidant defenses and protection from oxidative stress.*

L-5-MTHF - Active Folate

Tags: 🧬 Methylation • ⚡ Cellular Energy • 🧠 Nervous System

What is L-5-MTHF?

L-5-methyltetrahydrofolate, commonly called L-5-MTHF or methylfolate, is a biologically active form of folate (vitamin B9).

Unlike folic acid, L-5-MTHF is already in a form that can participate directly in folate-dependent metabolic pathways.

What Does Folate Do?

Folate contributes to normal DNA synthesis, cell division, amino-acid metabolism, and methylation.

It also participates in the conversion of homocysteine to methionine, which connects folate metabolism with the body’s methylation cycle.

Why NeuroVolt Uses L-5-MTHF

We chose L-5-MTHF rather than standard folic acid because it provides folate in an already biologically active form.

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Methylcobalamin - Active Vitamin B12

Tags: ⚡ Cellular Energy • 🧬 Methylation • 🧠 Nervous System

What is Methylcobalamin?

Methylcobalamin is one of the biologically active forms of vitamin B12.

Vitamin B12 is an essential nutrient required for normal neurological function, red blood cell formation, DNA synthesis, and cellular metabolism.

What Does Vitamin B12 Do?

B12 acts as a cofactor for important enzymes involved in fatty-acid and amino-acid metabolism.

Methylcobalamin also participates directly in the methionine synthase reaction that connects vitamin B12 with folate and normal homocysteine metabolism.

Why NeuroVolt Uses Methylcobalamin

We selected methylcobalamin to provide B12 in a metabolically active form that directly participates in methylation pathways.

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Hydroxocobalamin - Vitamin B12

Tags: ⚡ Cellular Energy • 🧠 Nervous System • 🧬 Methylation

What is Hydroxocobalamin?

Hydroxocobalamin is another naturally occurring form of vitamin B12.

The body can convert hydroxocobalamin into active B12 coenzyme forms as needed.

Why NeuroVolt Uses Two Forms of B12

Rather than relying on a single B12 source, NeuroVolt Core combines methylcobalamin with hydroxocobalamin.

This provides complementary forms of vitamin B12 while supporting the normal B12-dependent processes involved in cellular metabolism and neurological function.*

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Vitamin B1 - Thiamine

Tags: ⚡ Cellular Energy • 🧠 Nervous System

What is Thiamine?

Thiamine is vitamin B1, an essential water-soluble vitamin involved in energy metabolism.

What Does Vitamin B1 Do?

After conversion to its active coenzyme form, thiamine participates in reactions that help metabolize carbohydrates and other nutrients.

Thiamine-dependent enzymes play important roles in pathways that ultimately contribute to ATP production.

Thiamine is also important for normal nerve function.

Why It’s in NeuroVolt

Energy isn’t simply about stimulation. Cells must actually convert nutrients into usable energy.

B1 supports this fundamental metabolic machinery.*

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Riboflavin-5-Phosphate - Vitamin B2

Tags: ⚡ Cellular Energy • 🛡️ Antioxidant Support

What is Riboflavin-5-Phosphate?

Riboflavin-5-phosphate is a phosphorylated form of vitamin B2.

Riboflavin is used to produce the flavin coenzymes FMN and FAD.

What Does Vitamin B2 Do?

These coenzymes participate in numerous oxidation-reduction reactions involved in cellular metabolism and energy production.

Riboflavin also contributes to normal antioxidant metabolism.

Why NeuroVolt Uses R5P

We selected riboflavin-5-phosphate as a readily usable form of vitamin B2 rather than relying exclusively on standard riboflavin.

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P5P - Active Vitamin B6

Tags: 🧠 Nervous System • 🧬 Methylation • ⚡ Cellular Energy

What is P5P?

Pyridoxal-5’-phosphate, or P5P, is the primary coenzyme form of vitamin B6.

What Does Vitamin B6 Do?

Vitamin B6 is involved in more than 100 enzyme reactions, many involving protein and amino-acid metabolism.

It also participates in neurotransmitter synthesis, glycogen metabolism, hemoglobin formation, and normal homocysteine metabolism.

Why NeuroVolt Uses P5P

NeuroVolt provides vitamin B6 as P5P, an active coenzyme form used directly in numerous B6-dependent biochemical reactions.

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Vitamin C - Sodium Ascorbate

Tags: 🛡️ Antioxidant Support • ⚡ Cellular Support

What is Sodium Ascorbate?

Sodium ascorbate is a buffered form of vitamin C.

What Does Vitamin C Do?

Vitamin C functions as an antioxidant and as a cofactor for multiple enzymes.

It contributes to collagen synthesis, carnitine production, neurotransmitter synthesis, immune function, and antioxidant protection.

Why NeuroVolt Uses Sodium Ascorbate

Sodium ascorbate provides vitamin C in a buffered mineral-ascorbate form.

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Magnesium Glycinate

Tags: ⚡ Cellular Energy • 🧠 Nervous System • 💧 Electrolytes • 💪 Muscle Function

What is Magnesium Glycinate?

Magnesium glycinate is magnesium bound to the amino acid glycine.

What Does Magnesium Do?

Magnesium participates in hundreds of enzymatic reactions throughout the human body.

Importantly for NeuroVolt, ATP commonly functions in cells complexed with magnesium.

Magnesium is also involved in normal nerve transmission, muscle contraction, glucose metabolism, protein synthesis, and electrolyte balance.

Why NeuroVolt Uses Magnesium Glycinate

We chose magnesium glycinate to provide magnesium in a chelated form while complementing the formula’s focus on cellular energy, muscle function, and nervous-system support.*

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Potassium Citrate

Tags: 💧 Electrolytes • 🧠 Nervous System • 💪 Muscle Function

What is Potassium?

Potassium is an essential mineral and one of the body’s major intracellular electrolytes.

What Does Potassium Do?

Potassium helps establish the electrical gradients across cell membranes that are necessary for normal nerve signaling and muscle contraction.

It also contributes to normal fluid balance.

Why NeuroVolt Uses Potassium Citrate

NeuroVolt provides potassium as potassium citrate as part of its electrolyte-support system.

Energy and performance aren’t just about vitamins—electrolytes are fundamental to normal cellular and neuromuscular function.*

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Zinc Glycinate

Tags: 🛡️ Antioxidant Support • ⚙️ Cellular Function

What is Zinc Glycinate?

Zinc glycinate is a chelated form of the essential mineral zinc.

What Does Zinc Do?

Zinc participates in hundreds of enzymes and is involved in DNA synthesis, protein synthesis, cell signaling, immune function, and normal antioxidant defenses.

Why NeuroVolt Uses Zinc Glycinate

We chose a chelated zinc form to provide this essential trace mineral as part of NeuroVolt’s broader micronutrient formula.

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Taurine

Tags: 🧠 Nervous System • 💧 Cellular Balance • 💪 Performance

What is Taurine?

Taurine is a sulfur-containing amino acid-like compound naturally concentrated in tissues including the brain, heart, muscles, and eyes.

Unlike many amino acids, taurine isn’t primarily incorporated into proteins.

Instead, it performs several specialized physiological roles.

What Does Taurine Do?

Taurine participates in processes related to cell-volume regulation, bile-acid conjugation, calcium signaling, membrane stabilization, and normal nervous-system function.

It has also been extensively studied in relation to exercise and cardiovascular physiology.

Why Taurine Is in NeuroVolt

Taurine complements NeuroVolt’s focus on cellular, neurological, electrolyte, and physical-performance support.*

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L-Theanine

Tags: 🎯 Mental Performance • 🧠 Nervous System

What is L-Theanine?

L-theanine is an amino acid naturally found primarily in tea leaves.

What Does L-Theanine Do?

L-theanine has been studied for its effects on attention, relaxation, stress responses, and cognitive performance.

Unlike caffeine, L-theanine is not a traditional stimulant.

Why NeuroVolt Uses L-Theanine

NeuroVolt isn’t designed around simply stimulating the nervous system.

L-theanine was included to complement the formula’s focus on balanced mental performance.*

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Sodium Citrate

Tags: 💧 Electrolytes • ⚙️ Formula Support

What is Sodium Citrate?

Sodium citrate is the sodium salt of citric acid.

It contributes sodium while also functioning as an acidity regulator within powdered beverage formulations.

Why It’s in NeuroVolt

Sodium citrate helps support the formula’s electrolyte profile while helping control acidity and flavor characteristics.

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Citric Acid

Tags: 🍓 Flavor • ⚙️ Formula Support

Citric acid is an organic acid naturally present in citrus fruits and widely used in foods and beverages.

In NeuroVolt Core, citric acid primarily helps create the tart flavor profile and control acidity.

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Stevia

Tags: 🌿 Sweetener • 🚫 No Added Sugar


Stevia-derived sweeteners come from compounds called steviol glycosides found in the leaves of Stevia rebaudiana.


NeuroVolt uses stevia to provide sweetness without relying on added sugar.

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Natural Flavor

Tags: 🍓 Flavor

Natural flavor helps create NeuroVolt Core’s Strawberry Lemonade flavor profile while allowing the functional nutrients to remain the focus of the formula.

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One Formula. Multiple Biological Pathways.

NeuroVolt™ Core was built around a simple idea:

Real energy begins inside the cell.

Rather than relying on caffeine and sugar for temporary stimulation, NeuroVolt combines nutrients involved in:

⚡ Cellular energy metabolism

🧬 Normal methylation

🧠 Nervous-system function

💧 Electrolyte balance

💪 Normal muscle function

🎯 Mental performance

🛡️ Antioxidant defenses

ENERGY STARTS WITH YOUR BIOLOGY™

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Scientific References & Further Reading

Each ingredient above is supported by established nutritional science and/or peer-reviewed research.

Built on Nutritional Science

Every ingredient in NeuroVolt™ Core was selected with a specific nutritional purpose.

The research below includes resources from the National Institutes of Health (NIH), peer-reviewed scientific reviews, systematic reviews, randomized controlled trials, and PubMed-indexed studies.

Research is organized by ingredient so you can explore the science behind the vitamins, minerals, electrolytes, and amino acids used in NeuroVolt™ Core.

These statements have not been evaluated by the Food and Drug Administration. This product is not intended to diagnose, treat, cure, or prevent any disease.

L-5-MTHF - Active Folate

Research Areas: Methylation • Folate Metabolism • Homocysteine Metabolism • DNA Synthesis

Folate is required for DNA synthesis, cell division, amino-acid metabolism, and one-carbon metabolism. L-5-MTHF is a biologically active folate form used directly within folate-dependent metabolic pathways.

References

1. NIH Office of Dietary Supplements — Folate: Fact Sheet for Health Professionals

https://ods.od.nih.gov/factsheets/Folate-HealthProfessional/

Comprehensive overview of folate physiology, metabolism, dietary requirements, deficiency, supplementation, and health research.

2. Pietrzik K, Bailey L, Shane B.

Folic Acid and L-5-Methyltetrahydrofolate: Comparison of Clinical Pharmacokinetics and Pharmacodynamics.

Clinical Pharmacokinetics 2010.

https://pubmed.ncbi.nlm.nih.gov/20608755/

Research reviewing differences between folic acid and L-5-MTHF, including evidence that L-5-MTHF effectively improves folate status.

3. de Lourdes Samaniego-Vaesken M, et al.

Supplementation with Folic Acid or 5-Methyltetrahydrofolate: A Review of the Evidence. 2024

https://pubmed.ncbi.nlm.nih.gov/?term=5-methyltetrahydrofolate+review+2024

A contemporary evidence review examining metabolism, bioavailability, and physiological differences between folic acid and 5-MTHF.

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Methylcobalamin + Hydroxocobalamin -Vitamin B12

References

4. NIH Office of Dietary Supplements — Vitamin B12 Fact Sheet

https://ods.od.nih.gov/factsheets/VitaminB12-HealthProfessional/

5. Temova Rakuša Ž, et al. — Vitamin B12 in Foods, Food Supplements, and Medicines (2022)

Covers the major B12 forms, including methylcobalamin and hydroxocobalamin, their biochemical roles, bioavailability, supplementation, and stability. 

https://pubmed.ncbi.nlm.nih.gov/36615431/⁠

6. Hannibal L, Jacobsen DW — Intracellular Processing of Vitamin B12 by MMACHC (CblC) (2022)

This is an especially strong reference for your page. It specifically discusses hydroxocobalamin, methylcobalamin, adenosylcobalamin, and cyanocobalamin and explains how B12 is processed intracellularly and delivered to methionine synthase and methylmalonyl-CoA mutase. 

https://pubmed.ncbi.nlm.nih.gov/35337623/⁠

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Vitamin B1 — Thiamine

References

NIH Office of Dietary Supplements — Thiamin Fact Sheet for Health Professionals

    https://ods.od.nih.gov/factsheets/Thiamin-HealthProfessional/

Lonsdale D. — Thiamine and magnesium deficiencies: keys to disease (2015)

    https://pubmed.ncbi.nlm.nih.gov/25542071/

    This discusses thiamine’s central role in carbohydrate metabolism and energy production. 

Butterworth RF. — Thiamin deficiency and brain disorders (2003)

    https://pubmed.ncbi.nlm.nih.gov/19087395/

    This reviews how thiamine deficiency affects brain energy metabolism and neurologic function. 

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