NAD+ 100 mg reconstituted with 2 mL

Concentration

50mg/mL

Per insulin unit
500 mcg
Solution in vial
200 u
50 mg draw
100 u

Math utility only — not medical advice. Not a recommended dose.

Units per dose at 50 mg/mL

Insulin syringes are graduated in hundredths of a millilitre, so units = mL × 100 on a U-100, U-50 or U-30 barrel alike.

DoseVolumeU-100 unitsFitsDoses per vial
50 mg1 mL100 uU-1002
100 mg2 mL200 usplit draw1

Amber rows exceed 100 units — more than one full U-100 barrel. That dose needs a larger draw or a stronger mix (less water).

How this is calculated

  1. 1 · Concentration

    100 mg ÷ 2 mL = 50 mg/mL

    The peptide mass never changes — bacteriostatic water only sets how concentrated the solution is, and therefore how far the plunger travels.

  2. 2 · Volume for a 50 mg dose

    50 mg ÷ 50 mg/mL = 1 mL

  3. 3 · Insulin units

    1 mL × 100 = 100 units

    Every unit on the barrel carries 500 mcg at this concentration, so misreading by one unit is a 500 mcg error.

See it on a real syringe

The interactive calculator draws this 50 mg/mL mix on a scaled U-100 barrel, shows when a draw lands exactly on a printed tick, and works backwards from a target dose to the water volume that makes it land cleanly.

Open the interactive calculator →

Common questions

How much bacteriostatic water for a 100 mg NAD+ vial?
Adding 2 mL of bacteriostatic water to a 100 mg NAD+ vial yields 50 mg/mL — 500 mcg in every insulin unit. The reconstituted vial holds 200 units of solution in total.
How many units is a 50 mg dose of NAD+ at 100 mg in 2 mL?
50 mg is 1 mL of this mix, which is 100 units on a U-100 insulin syringe (a U-100 barrel is enough).
How many 50 mg doses does a 100 mg vial give?
A 100 mg vial contains 2 full 50 mg doses. Using more or less bacteriostatic water changes the units you draw, never the number of doses in the vial.
All 211 reconstitution combinations →