Accepted answer
12 mg/mL, so one unit carries 0.12 mg. 60 ÷ 5 = 12 mg/mL; one unit on a U-100 barrel is 0.01 mL; 12 × 0.01 = 0.12 mg per unit. To go the other way, divide your intended dose by 0.12: a 1.2 mg dose is 10 units, and a 2.4 mg dose is 20. Write both the concentration and the milligrams per unit on the vial.
Write the units at every step, because units errors are the failure mode that catches everyone eventually.
Rotation of injection site is a tolerability measure, not a pharmacokinetic one, but if you are going to do it you might as well do it right.
Reading a lyophilised cake
| Appearance | Interpretation | Action |
|---|
| Intact opaque puck, proud of base | Cycle ran correctly | Proceed |
| Slumped to one side | Shipped before fully dry, or vibration | Usually usable; note it |
| Glassy translucent film | Collapse above glass transition | Test before use |
| Melt-back ring at stopper | Thermal excursion in transit | Test before use |
| No visible cake at all | Very low fill, or nothing there | Weigh it; query the supplier |
Room temperature before drawing is worth the ten minutes. Cold solution is more viscous, draws slower, and condensation on a cold barrel makes it harder to read the meniscus.
The Arrhenius relationship for drawing kinetics means that cold solution takes noticeably longer to draw than room-temperature solution.
I would flag the obvious failure mode: people get the concentration right, get the volume right, and then read the syringe against the wrong scale.
If in doubt, use more diluent and accept the shorter usable window.
edited 5 Dec 2024 by orla_ferriter — updated for the 2026 guidance change
4This should be linked from the help pages. – Dr_Nadia_Farsi 6 months ago 3Confirming: I did the wrong thing here once and got exactly the predicted result. – rhian_prydderch 5 months ago add a comment