PeptCalc

MT-2 (Melanotan 2) Dosage Calculator: Syringe Units

By PeptCalc Research — Medically reviewed by David Mansour, MD — Last reviewed July 11, 2026

HEEZ Research MT-2 (Melanotan 2) vial

Melanotan 2 is available at HEEZ Research

This calculator performs arithmetic on the numbers you enter. It is not medical advice, does not tell you what dose to take, and is not a substitute for guidance from a qualified clinician.

MT-2, short for Melanotan II, is a synthetic peptide analog of alpha-melanocyte-stimulating hormone, supplied as lyophilized powder for research use. Like other lyophilized peptides, it has to be reconstituted with a liquid before it can be measured or drawn into a syringe. This reference explains how an MT-2 dosage calculator turns a vial size, water volume, and target mcg dose into the exact number of units to draw on a U-100 insulin syringe. It is written for research purposes only and is not medical advice.

What the calculator does

The peptide dosage calculator handles the reconstitution math in two directions:

  • Forward mode — enter vial size, water volume, and target dose → it returns the syringe units to draw.
  • Reverse mode — enter vial size, target dose, and desired syringe units → it tells you how much water to add.

Both modes run on the same formula: concentration equals mass divided by volume, and dose in units equals dose in volume times 100 on a U-100 syringe.

Common MT-2 vial sizes

Research vials are typically supplied in:

  • 10 mg

The calculator supports any vial size, but 10 mg is the size most often listed by research suppliers for MT-2.

Typical research concentration

A common reconstitution setup for MT-2 holds the water at 2 mL for a 10 mg vial:

Vial size Water added Concentration
10 mg 2 mL 5,000 mcg/mL

That 5,000 mcg/mL reference point puts the typical 250-500 mcg research dose range on clean unit marks:

Target dose Units at 5,000 mcg/mL
250 mcg 5 units
500 mcg 10 units

A 250 mcg dose landing on an exact 5-unit mark is a large part of why 2 mL is a common water volume for a 10 mg MT-2 vial — it reads cleanly on any U-100 syringe.

The math

Step 1: Calculate concentration

Concentration = vial mass ÷ water volume

  • 10 mg vial + 2 mL water = 10,000 mcg ÷ 2 mL = 5,000 mcg/mL
  • 10 mg vial + 1 mL water = 10,000 mcg ÷ 1 mL = 10,000 mcg/mL

Step 2: Convert dose to volume

Volume (mL) = dose (mcg) ÷ concentration (mcg/mL)

Example: 250 mcg dose at 5,000 mcg/mL concentration = 250 ÷ 5,000 = 0.05 mL

Step 3: Convert volume to syringe units

On a U-100 insulin syringe, 1 mL = 100 units, so:

Units = volume (mL) × 100

Example: 0.05 mL × 100 = 5 units

The calculator performs these three steps instantly for any vial, water, and dose combination you enter.

Reconstitution process

  1. Gather supplies — the MT-2 vial, bacteriostatic water, U-100 insulin syringes, alcohol swabs.
  2. Swab both vial stoppers with alcohol.
  3. Draw the calculated water volume (e.g. 2 mL for a 10 mg vial at 5,000 mcg/mL).
  4. Inject slowly down the inside wall of the vial, not directly onto the powder.
  5. Swirl gently — do not shake. Let it dissolve completely.
  6. Verify the concentration matches what you entered in the calculator.

For a detailed walkthrough, see how to reconstitute peptides.

Storage

Reconstituted peptide vials are generally stored refrigerated and protected from light. Unreconstituted lyophilized powder is stable at room temperature until the expiration date on the vial. Track the reconstitution date so you know how long a given vial has been mixed.

Why the water volume matters

The same 250 mcg dose can be drawn at very different unit marks depending on how much water goes into the vial:

250 mcg dose from a 10 mg vial:

Water added Concentration Draw volume Units
2 mL 5,000 mcg/mL 0.05 mL 5 units
1 mL 10,000 mcg/mL 0.025 mL 2.5 units

Neither is "wrong" — the math is identical either way. A 2.5-unit reading only works cleanly on a syringe marked in half-unit increments, which is part of why 2 mL is the more commonly used water volume for MT-2. The calculator shows the units for any water volume so you can pick the draw size that's easiest to read on your syringe.

Common mistakes

  • Confusing mg and mcg. MT-2 vials are labeled in milligrams, but doses are almost always described in micrograms. A 10 mg vial is 10,000 mcg — mixing up the two units produces a tenfold dosing error.
  • Shaking the vial. Swirl gently instead — shaking can degrade the peptide.
  • Not recalculating after changing the water volume. Adding a different amount of bacteriostatic water than the last vial changes the concentration, so the same unit mark no longer matches the same dose. Recalculate for each vial rather than reusing a number from memory.
  • Using a non-U-100 syringe. The calculator assumes a standard U-100 insulin syringe (100 units = 1 mL). If your syringe is marked differently, the unit conversion will not match.

Use the MT-2 dosage calculator

Enter your MT-2 vial size, bacteriostatic water volume, and target dose into the free peptide calculator to see the exact syringe units. Reverse mode also works — enter your target dose and the units you want to draw, and it tells you how much water to add.

For related math, see the how to reconstitute peptides walkthrough, or the TB-500 dosage calculator and GHK-Cu reconstitution calculator guides for peptides measured in milligrams instead of micrograms. The calculator handles the math. This guide explains what the numbers mean.

Frequently Asked Questions

How much bacteriostatic water do I add to an MT-2 vial?
A common research setup uses 2 mL of bacteriostatic water for a 10 mg MT-2 vial, giving 5,000 mcg/mL. Use the calculator to confirm the units for your exact vial and dose.
How many units is a 250 mcg MT-2 dose?
At 5,000 mcg/mL (10 mg vial with 2 mL water), a 250 mcg dose is 5 units on a U-100 insulin syringe. A 500 mcg dose at the same concentration is 10 units.
Is MT-2 dosed in mcg or mg?
MT-2 research doses are almost always expressed in micrograms (mcg), not milligrams. A 10 mg vial equals 10,000 mcg, so a 250 mcg dose is a small fraction of the whole vial. Confusing mg and mcg is the most common source of a tenfold dosing error.
What concentration should I reconstitute MT-2 to?
There is no single required concentration. 5,000 mcg/mL (2 mL water in a 10 mg vial) is a common reference point because it lands typical 250-500 mcg research doses on clean, easy-to-read unit marks.

Ready to calculate? Use the free peptide reconstitution calculator →