6 mg/mL, so one unit carries 0.06 mg. 15 ÷ 2.5 = 6 mg/mL; one unit on a U-100 barrel is 0.01 mL; 6 × 0.01 = 0.06 mg per unit. To go the other way, divide your intended dose by 0.06: a 0.6 mg dose is 10 units, and a 1.2 mg dose is 20. Write both the concentration and the milligrams per unit on the vial.
Work in the order concentration, then volume, then units, and the arithmetic stops being confusing. Concentration is milligrams per millilitre and comes from the vial contents and the diluent volume. Volume per dose is dose divided by concentration. Units on a U-100 syringe are volume in millilitres multiplied by one hundred.
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.
Dead space by syringe type
| Configuration | Dead volume | Loss at 5 mg/mL | Over 20 draws |
|---|
| Fixed-needle insulin syringe | 3–5 µL | 15–25 µg | 0.3–0.5 mg |
| Low-dead-space, detachable | <2 µL | <10 µg | <0.2 mg |
| Standard luer-lock + 30G | 35–60 µL | 175–300 µg | 3.5–6 mg |
| Luer-lock + 21G drawing needle | 70–100 µL | 350–500 µg | 7–10 mg |
On filtration: a 0.22 µm syringe filter will remove particulates and organisms, and it will also adsorb a fraction of your peptide onto the membrane — with a low-binding PVDF or PES membrane the loss is typically a few per cent.
Write the arithmetic on the vial label. It costs nothing and removes the step where you reconstruct it from memory.