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TB-500 Reconstitution & Dosage Calculator

A Thymosin Beta-4 fragment studied for cell migration, angiogenesis, and tissue repair.

T.R.8.C.E.™
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Reconstitute

Just the math. Nothing saved.

Your mg is on the vial
Slide to add BAC water
Peptide vial
Now the syringe. We'll do the math.
Research use only. Not medical advice. Not for human consumption.
Step 2 of 2

Fill your syringe

Tirzepatide10 mg/mL
Ready
Your units are on the syringe
Tap the one you have. Drawn. Now mark where you'll inject.
Research use only. Not medical advice. Not for human consumption.
Step 3 of 4

Choose your body

Retatrutide5 mg/mL
Tap where you injected. Your timing map fills in as you go.
Now save it to your vials.
Research use only. Not medical advice. Not for human consumption.
Step 4 of 4

Seal it in your vault

Injection complete. Secure your vial.

RetatrutideFresh
10 mg/mL · opened today
9of 10 doses
Last shot: upper left stomach

Press & hold to seal

Research use only. Not medical advice. Not for human consumption.

Category
Recovery
Half-life
~2 to 3 hours
Commonly taken
In the morning
Common dose
2 mg
Open TB-500 in the calculator ›

How to reconstitute TB-500

TR8CE uses one simple standard: 0.1 mL of bacteriostatic water per mg. A 5 mg vial takes 0.5 mL of water for a clean 10 mg/mL solution. Larger vials scale the water up to fit the glass.

Mixing is one decision: how much bacteriostatic water goes in. Dosing follows from it, and the syringe reads the result. The instructions below are the whole procedure.

Vial sizeBAC waterConcentration2 mg draws to
5 mg0.5 mL10 mg/mL20 units
10 mg1 mL10 mg/mL20 units

Units are shown for a U-100 insulin syringe. A common starting dose is 2 mg. At 10 mg/mL, that draws to 20 units on a U-100 insulin syringe.

How TB-500 works

Regulates actin binding to promote cell migration and angiogenesis while reducing inflammation. Biological activity may persist beyond its measured half-life.

Reported side effects

When is TB-500 taken?

TB-500 is commonly taken in the morning.

Reconstituting TB-500, step by step

Reconstituting is the mixing step: bacteriostatic water goes into the vial of lyophilized powder, and the powder becomes a solution a syringe can measure. For a 10 mg vial of TB-500 the calculator's water volume is 1 mL, which gives 10 mg/mL. The technique is the same for every peptide; only the water volume changes.

  1. Prep. Remove the plastic caps from the TB-500 vial and the bacteriostatic water vial. Wipe both rubber stoppers with an alcohol pad and let them air dry for about ten seconds.
  2. Equalize the pressure. Pull 1 mL of air into the mixing syringe and push it into the water vial. The positive pressure makes the draw easier.
  3. Draw the water. Turn the water vial upside down and draw 1 mL.
  4. Inject down the glass. Put the needle through the center of the TB-500 stopper, aim the tip at the inside wall, and press slowly so the water runs down the glass instead of hitting the powder. Peptides are fragile chains, and a jet of water straight onto the powder can damage them.
  5. Swirl, never shake. Withdraw the syringe and roll the vial in slow circles until the solution is clear.

The reasoning behind each step is in the guide Peptide reconstitution is one number. Bacteriostatic water, not sterile water, is what makes a multi-draw vial possible; the difference, and the 28-day question, is in bacteriostatic vs sterile water.

Dilution: the water volume sets the units

Two numbers decide everything on the syringe. Concentration is the vial's mg divided by the water added, and the draw is the dose divided by that concentration, read as units on a U-100 insulin syringe, where 1 mL is 100 units. Diluting a vial with more water does not change the amount of TB-500 in it; it spreads the same 10 mg across more liquid, so every dose becomes a larger draw. Less water does the opposite.

Water added to 10 mgConcentration2 mg draws to
0.5 mL20 mg/mL10 units
1 mL (the standard)10 mg/mL20 units
2 mL5 mg/mL40 units

The standard row is what the calculator uses for this vial. The other rows show the arithmetic, not a recommendation. The dose is entered in the calculator, never read off a table.

How many vials a 10 mL bottle of bacteriostatic water mixes

Bacteriostatic water is sold in 10 mL and 30 mL bottles. At 1 mL per 10 mg vial of TB-500, a 10 mL bottle reconstitutes 10 vials, and a 30 mL bottle reconstitutes 30. The 0.9% benzyl alcohol preservative is what lets one bottle serve several vials over several weeks. What a milligram costs right now across the stores TR8CE tracks is on the peptide price index.

Vial sizeWater per vialVials per 10 mL bottleVials per 30 mL bottle
5 mg0.5 mL2060
10 mg1 mL1030

TB-500 in units on a U-100 syringe

At 10 mg/mL, every 1 mg is 10 units. The rows below are the conversion at the calculator's standard concentration, up to one full 100-unit syringe. A vial size not listed follows the same rule: water equals size divided by 10.

Amount of TB-500U-100 syringe
1 mg10 units
2 mg (the COMMON reference)20 units
2.5 mg25 units
5 mg50 units
10 mg100 units

Storage after reconstituting

Once mixed, a TB-500 vial is kept refrigerated at 36 to 46 °F (2 to 8 °C) and is not frozen. TR8CE's vault uses a common 28-day refrigerated use-by window as general research guidance, not medical advice. Most peptides reconstitute clear, and a solution that stays cloudy or shows particles after a few minutes of gentle swirling may be degraded or low purity, which is exactly the question a certificate of analysis answers before the vial is ever opened.

Frequently asked

How much bacteriostatic water do I add to TB-500?

Add 0.5 mL of bacteriostatic water to a 5 mg TB-500 vial for a 10 mg/mL solution.

What is a common TB-500 dose?

A common TB-500 starting dose is 2 mg, which at 10 mg/mL draws to 20 units on a U-100 insulin syringe.

How do you reconstitute TB-500?

Draw bacteriostatic water into a syringe, inject it slowly down the inside glass of the TB-500 vial (not onto the powder), and swirl gently until clear. Store refrigerated and use within the common window.

How do you reconstitute a 5 mg TB-500 vial?

Add 0.5 mL of bacteriostatic water to a 5 mg TB-500 vial for a 10 mg/mL solution. A 2 mg dose then draws to 20 units on a U-100 insulin syringe.

How do you reconstitute a 10 mg TB-500 vial?

Add 1 mL of bacteriostatic water to a 10 mg TB-500 vial for a 10 mg/mL solution. A 2 mg dose then draws to 20 units on a U-100 insulin syringe.

How many vials of TB-500 does a 10 mL bottle of bacteriostatic water reconstitute?

At 1 mL per 10 mg vial, a 10 mL bottle of bacteriostatic water reconstitutes 10 vials, and a 30 mL bottle reconstitutes 30.

What happens if you add more water when reconstituting TB-500?

The amount of TB-500 in the vial does not change; the concentration falls and each dose becomes a larger draw. 10 mg in 1 mL is 10 mg/mL, so 2 mg draws to 20 units; in 2 mL it is 5 mg/mL and the same 2 mg draws to 40 units.

How is reconstituted TB-500 stored?

Refrigerated at 36 to 46 °F (2 to 8 °C), never frozen, with a common 28-day refrigerated use-by window as general research guidance, not medical advice.

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Research use only. The information on this page is for laboratory and educational reference. Research compounds are not for human consumption. TR8CE is a calculation and organization utility and does not provide medical advice. Reconstitution figures are common conventions, not prescriptions. Consult a qualified professional before making any health decision.
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