Accepted answer
It gives 12 mg/mL, and whether that is sensible depends on the dose you will draw from it. 30 ÷ 2.5 = 12 mg/mL in sterile water for injection. A 0.5 mg dose is then 4.2 units on a U-100 barrel and a 1 mg dose is 8.3 units. The smaller dose lands too low on the scale to read accurately — more diluent would buy resolution you cannot recover later.
Answer first: diluent volume sets concentration and therefore resolution on the syringe barrel, and resolution is free at reconstitution and impossible to recover afterwards.
Worked example. A 10 mg vial reconstituted with 2 mL gives 5 mg/mL. A 0.5 mg dose is 0.5 ÷ 5 = 0.1 mL, which on a U-100 syringe is 10 units. Reconstitute the same vial with 1 mL and the concentration doubles to 10 mg/mL, the same dose becomes 0.05 mL, and you are now reading 5 units instead of 10 — the same dose at half the resolution.
Dead-space loss scales with the number of draws, not with the concentration, so a lower concentration spread over more draws loses proportionally less of the total peptide.
Published content assay results across the independent testing services show nominal and measured content differing by one to ten per cent, which makes content the dominant term in dose error.
The caveat is that this arithmetic assumes the vial contains what the label says, and without a content assay it is precise about an unknown quantity.
Choose the volume that puts your largest intended dose between 10 and 30 units. Everything else follows.
Same experience here, different supplier. – h_villanueva 5 months ago add a comment