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Wolverine Dosing & Reconstitution Calculator
BPC-157 5mg + TB-500 5mg · rapid healing & recovery stack
TL;DR - Wolverine is a other peptide with a typical starting dose of 500 µg. For a 10 mg vial, add 2 mL bacteriostatic water to yield 5000 µg/mL.
500 µg
Start Dose
10 mg
Vial
2 mL
BAC Water
5000
µg/mL
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Frequently Asked
How do I reconstitute Wolverine?
Add 2 mL of bacteriostatic water to a 10 mg vial, injecting slowly down the inside wall. Swirl gently; never shake. This yields a concentration of 5000 µg/mL.
What is the recommended dose of Wolverine?
A typical research dose is 500 µg. Consult the ASCEND calculator for your specific vial concentration and draw volume.
How many doses are in a Wolverine vial?
A 10 mg vial reconstituted with 2 mL BAC water yields approximately 20 doses at 500 µg each.
How many IU is 500 µg of Wolverine on a syringe?
With a 10 mg vial reconstituted in 2 mL bacteriostatic water, the concentration is 5000 µg/mL. For a 500 µg dose: Volume = 500 µg ÷ 5000 µg/mL = 0.1 mL. Draw to the 10 line on a 100-unit insulin syringe. You can adjust these values in the ASCEND calculator for any vial size.
What does a Wolverine dosage calculator do?
A Wolverine dosage calculator converts your vial size and BAC water volume into an exact syringe draw in IU. Enter your vial strength (10 mg), reconstitution volume (2 mL), and target dose to get the precise line to draw on an insulin syringe.
What is the Wolverine reconstitution calculator formula?
Draw volume (mL) = Dose (µg) divided by Concentration (µg/mL). For a 10 mg vial with 2 mL BAC water: concentration = 5000 µg/mL. For a 500 µg dose, the ASCEND calculator gives the exact IU line on your syringe instantly.
Also Explore
Research Guides
Bacteriostatic Water Guide
What it is & why it matters for reconstitution
How Much BAC Water for Wolverine?
10 mg vial reconstitution recipe + concentration table
Wolverine on Insulin Syringe
500 µg draw on 30u / 50u / 100u syringes
Insulin Syringe Guide
Choosing the right gauge & volume for your draw
Multi-Lab Verification Standard
How ASCEND ensures dosing accuracy
Data last reviewed 2026-06-09 · Methodology →
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