NAD+ 1000 mg reconstituted with 10 mL

Concentration

100mg/mL

Per insulin unit
1000 mcg
Solution in vial
1000 u
100 mg draw
100 u

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

Units per dose at 100 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 mg0.5 mL50 uU-5020
100 mg1 mL100 uU-10010

How this is calculated

  1. 1 · Concentration

    1000 mg ÷ 10 mL = 100 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 100 mg dose

    100 mg ÷ 100 mg/mL = 1 mL

  3. 3 · Insulin units

    1 mL × 100 = 100 units

    Every unit on the barrel carries 1000 mcg at this concentration, so misreading by one unit is a 1000 mcg error.

See it on a real syringe

The interactive calculator draws this 100 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 1000 mg NAD+ vial?
Adding 10 mL of bacteriostatic water to a 1000 mg NAD+ vial yields 100 mg/mL — 1000 mcg in every insulin unit. The reconstituted vial holds 1000 units of solution in total.
How many units is a 100 mg dose of NAD+ at 1000 mg in 10 mL?
100 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 100 mg doses does a 1000 mg vial give?
A 1000 mg vial contains 10 full 100 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 →