At 3.33 mg/mL a 0.25 mg dose is 7.5 units on a U-100 barrel and a 1 mg dose is 30 units. Volume is dose divided by concentration and one unit is 0.01 mL, so the unit count is dose ÷ 3.33 × 100. Both land in a readable part of the barrel, which is what choosing the volume deliberately buys you.
The relevant arithmetic is concentration equals vial content divided by diluent volume, and content is not the same as label claim.
Write the concentration and the resulting units-per-dose on the vial label at reconstitution. The arithmetic that is obvious now will not be obvious at six in the morning three weeks from now.
Concentration and unit conversion at a glance
| Vial | Diluent | Concentration | 0.25 mg | 0.5 mg | 1 mg | 2.5 mg |
|---|
| 5 mg | 1 mL | 5 mg/mL | 5 u | 10 u | 20 u | 50 u |
| 5 mg | 2 mL | 2.5 mg/mL | 10 u | 20 u | 40 u | 100 u |
| 10 mg | 1 mL | 10 mg/mL | 2.5 u | 5 u | 10 u | 25 u |
| 10 mg | 2 mL | 5 mg/mL | 5 u | 10 u | 20 u | 50 u |
| 10 mg | 3 mL | 3.33 mg/mL | 7.5 u | 15 u | 30 u | 75 u |
Units are U-100 insulin units, where 1 unit = 0.01 mL. Divide dose by concentration for millilitres, then multiply by 100.
Mechanically, vial headspace is the hard constraint. A nominal 2 mL vial typically holds a little over 2 mL to the shoulder; adding 3 mL is not an option and attempting it wastes the lot.
Nominal vial volumes in the standard 2R and 3R glass sizes have published brimful capacities well above the nominal fill, but the usable volume is bounded by the stopper displacement.
Write the concentration on the label at reconstitution, in units per dose.
edited 22 Feb 2026 by u100_marks — added a caveat about sampling
5Adding a vote because this deserves more of them. – gradient_slope 3 months ago 6Reading the leading edge of the stopper rather than the shoulder is worth a sentence of its own. – anja_hellstrom 5 months ago add a comment