reconstitutionAugust 14, 2026·8 min read

Glutathione Reconstitution: 1500mg + 3mL Chart

300mg = 100 units. Glutathione uses far larger volumes than most peptides — dilution charts for 600mg and 1,500mg vials, syringe math, and storage.

Glutathione Reconstitution: 1500mg + 3mL Chart

How to Reconstitute Glutathione

Injectable glutathione ships as a lyophilized (freeze-dried) white powder in a sealed vial, most often in 600mg or 1,500mg sizes, and is reconstituted with bacteriostatic water before use. The mechanics are the same as any peptide, with one difference that changes every number on the page: glutathione is dosed in the hundreds of milligrams, not micrograms. Published pharmacokinetic work has used gram-scale intravenous doses and documented rapid plasma clearance (Aebi et al., 1991), and community injectable protocols sit in the 200-600mg range — so concentration is expressed in mg/mL and draw volumes run much larger.

This guide covers mixing, measuring doses off the two common vial sizes, and storing glutathione so the antioxidant doesn't oxidize before it's used.

Research-context information only. Glutathione is a research peptide. Protocols, doses, and reactions reported below come from published research and self-reported community sources. This article reports what has been documented, not what should be done. Consult a licensed physician for personal medical decisions.

New to bacteriostatic water? Start with what it is, how much to use per vial, and how long it lasts — or see the full Bacteriostatic Water Guide.

What You Need

Research-grade glutathione is sold and labeled for laboratory research use only, not for human consumption. The materials documented protocols call for are:

  • Glutathione lyophilized vial (commonly 600mg or 1,500mg)
  • Bacteriostatic water (BAC water) — not sterile water, not saline
  • Insulin syringes — 1mL (100 unit), 29-31 gauge; a 3mL syringe for larger single draws
  • Alcohol swabs — for cleaning vial tops
  • A clean, flat workspace

Why bacteriostatic water? It contains 0.9% benzyl alcohol that prevents bacteria from growing in the solution. Regular sterile water has no preservative, so the vial must be used within 24 hours. BAC water allows up to 28 days refrigerated — the practical choice for glutathione, since a vial is usually dosed across a week or more.

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Step-by-Step Reconstitution

The steps below describe documented community and laboratory technique, not instructions for preparing this product for injection. They report how reconstitution has been carried out, not what any reader should do.

Step 1: Clean Everything

Protocols describe wiping the tops of both vials (glutathione and BAC water) with alcohol swabs, then letting them air dry for 10 seconds. This prevents contamination — a step community resources flag as essential.

Step 2: Drawing the Bacteriostatic Water

Protocols describe using a fresh insulin syringe to draw the desired amount of BAC water. Because glutathione volumes are larger, some community resources describe drawing the full amount in two passes with a 1mL syringe, or using a single 3mL syringe. The amount added determines the concentration (see the dilution charts below).

Community resources commonly document 3mL into a 1,500mg vial and 2mL into a 600mg vial as the balance points — enough water to keep a standard dose measurable without pushing the injection volume too high.

Step 3: Add Water to the Glutathione Vial

Protocols describe inserting the needle into the glutathione vial at an angle, aiming at the glass wall — not directly at the powder — and letting the water trickle down the side of the vial gently.

Protocols describe not squirting water directly onto the powder. Glutathione is a tripeptide; gentle technique down the vial wall preserves molecular integrity and limits foaming.

Step 4: Let It Dissolve

Protocols describe swirling the vial gently with a slow rotating motion rather than shaking it. Glutathione typically dissolves within 1-2 minutes into a clear, near-colorless solution.

If the solution looks yellow, cloudy, or has floating particles after gentle swirling, community resources describe the vial as degraded — glutathione's thiol group oxidizes readily in water, and a discolored solution is the visible signal.

Step 5: Store Correctly

Documented protocols describe refrigerating reconstituted vials immediately at 36-46°F (2-8°C). With bacteriostatic water the solution is described as stable for up to 28 days, though glutathione's tendency to oxidize in solution is why storage resources emphasize prompt refrigeration over pushing the full window.

Dilution Chart

Two charts follow — one per common vial size. Each shows how the amount of bacteriostatic water sets the concentration, and the resulting draw volume for the two most commonly referenced doses (300mg and 600mg). Because glutathione is a milligram-scale compound, the concentration column reads in mg/mL, and units climb quickly.

Why these water amounts? The highlighted rows keep a standard dose close to a round number on the syringe: a 600mg vial at 2mL puts a 300mg dose at exactly 100 units (a full 1mL insulin syringe), and a 1,500mg vial at 3mL puts a 300mg dose at 60 units. Adding more water lowers the units-per-dose count further but raises the total injection volume — community reports weigh that trade-off against syringe size and injection route.

Syringe Math

The formula is the same one used for any vial and any amount of water — only the units are milligrams here, not micrograms:

Concentration = Vial Size (mg) ÷ Water Added (mL)

Then to find the injection volume:

Units to inject = Desired Dose (mg) ÷ Concentration (mg/mL) × 100

Example: a 1,500mg vial + 3mL water = 500mg/mL. For a 300mg dose: 300 ÷ 500 × 100 = 60 units (0.6mL). For a 600mg dose off the same vial: 600 ÷ 500 × 100 = 120 units, which exceeds a 1mL insulin syringe — community resources describe a 3mL syringe or splitting the dose across two sites.

For variable vial sizes or doses, the Reconstitution Calculator applies this formula automatically. These figures reflect documented community and trial reconstitution ratios, not a recommended protocol — the vendor comparison below is for sourcing vials and bacteriostatic water, not for determining a dose.

Affiliate disclosure: vendor links in this article are affiliate links — The Peptide Catalog may earn a commission if you buy through them, at no additional cost to you.

Ready to buy? Compare verified vendors on our best glutathione sources page, or see current vendor coupon codes.

Top Glutathione Vendors

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Storage Rules

State Temperature Shelf Life
Lyophilized (powder) Room temp 3-6 months
Lyophilized (powder) Refrigerated 12+ months
Lyophilized (powder) Frozen (-20°C) 2+ years
Reconstituted (BAC water) Refrigerated Up to 28 days (use sooner if it discolors)
Reconstituted (sterile water) Refrigerated Use within 24 hours

Storage and beyond-use dating for reconstituted compounds follow the framework in USP General Chapter 797. Lyophilized glutathione is far more stable than the reconstituted solution because removing water removes the environment where the thiol oxidizes. Storage resources describe keeping unopened vials frozen and reconstituting only what will be used within the shelf window.

Light and metal: glutathione oxidation is accelerated by light and trace metal ions, so protocols describe keeping the vial in its box in the refrigerator rather than on a lit shelf.

Common Mistakes

Shaking the Vial

Shaking creates foam and air bubbles that make an already-large volume harder to measure accurately, and the air-liquid interface accelerates oxidation of the peptide. Protocols describe swirling gently rather than shaking.

Using Too Little Water

Because glutathione doses are large, under-diluting doesn't just make the math awkward — it makes the dose physically hard to draw. Adding only 1mL to a 1,500mg vial gives 1,500mg/mL, so a 300mg dose is 20 units in a very concentrated, viscous solution. The dilution-chart rows describe more water to keep draws measurable.

Leaving It at Room Temperature

Glutathione oxidizes faster in solution than most peptides, and every stretch at room temperature moves reduced glutathione toward its inactive oxidized form. Protocols describe pulling the vial out, drawing the dose, and returning it to the refrigerator rather than leaving it on the counter.

Injecting a Discolored Solution

A yellow or cloudy solution is the visible sign that oxidation or contamination has occurred. Protocols describe discarding a discolored vial rather than injecting it — clear and near-colorless is the standard for a properly reconstituted vial.

Reusing Needles

Each puncture through the rubber stopper dulls the needle and increases contamination risk. Protocols describe a fresh syringe every time — they cost pennies.

Freezing Reconstituted Glutathione

Freezing a liquid solution creates ice crystals that can damage the molecule. Protocols describe freezing only lyophilized (powder) glutathione. Once reconstituted, the solution is refrigerated — never frozen.

How Many Doses Per Vial?

This depends on the dose and vial size:

600mg vial at 200mg/dose = 3 doses 600mg vial at 300mg/dose = 2 doses 1,500mg vial at 200mg/dose = 7.5 doses 1,500mg vial at 300mg/dose = 5 doses 1,500mg vial at 600mg/dose = 2.5 doses

At a community-reported schedule of 200-400mg two to three times weekly, a 1,500mg vial covers roughly one to two weeks. A 600mg vial is closer to a single week at the same cadence, which is part of why the larger vial is common.

Frequently Asked Questions

How much bacteriostatic water is added to a glutathione vial?
For a 1,500mg vial, community resources commonly document 3mL of bacteriostatic water, which gives 500mg/mL — a 300mg dose then corresponds to 60 units (0.6mL) on an insulin syringe. For a 600mg vial, 2mL gives 300mg/mL, where a 300mg dose is 100 units (1mL). The amount of water sets the concentration; more water makes a dose easier to measure but raises the injection volume.
Can sterile water be used instead of bacteriostatic water for glutathione?
It can, but bacteriostatic water contains 0.9% benzyl alcohol which prevents bacterial growth. With sterile water, storage resources describe using the vial within 24 hours. Storage resources describe bacteriostatic water as extending refrigerated shelf life to 28 days — relevant for glutathione because doses are spread across a week.
Why does glutathione use larger injection volumes than most peptides?
Glutathione is dosed in the hundreds of milligrams, while most research peptides are dosed in micrograms. Concentration is expressed in mg/mL rather than mcg/mL, and a single 300-600mg dose can occupy most or all of a 1mL insulin syringe. Community resources describe a 3mL syringe for larger draws or splitting into two sites.
How can reconstituted glutathione be identified as gone bad?
Yellowing, cloudiness, floating particles, or an unusual smell are signs of degradation. Properly reconstituted glutathione is clear and close to colorless. Glutathione's thiol group oxidizes readily in solution, so protocols describe discarding a vial that has darkened or turned cloudy rather than injecting it.

References

  1. Aebi, S., et al. (1991). High-dose intravenous glutathione in man. Pharmacokinetics and effects on cyst(e)ine in plasma and urine. European Journal of Clinical Investigation, 21(1), 103-110. PubMed
  2. USP General Chapter 797: Pharmaceutical Compounding — Sterile Preparations. Storage and beyond-use dating guidelines for reconstituted compounds.

This guide is for educational and informational purposes only. It is not medical advice. Glutathione is an endogenous molecule; exogenous forms sold as research compounds are not FDA-approved for self-administration. Reconstituting and self-administering injectable compounds carries inherent risks including infection, contamination, and dosing errors. Always use proper sterile technique. Consult a qualified healthcare provider before starting any protocol. The Peptide Catalog is not responsible for any adverse effects resulting from the use or misuse of information presented here.