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If I reconstitute a 10 mg vial with 2.5 mL of 0.9% sodium chloride, what concentration do I end up with?

Asked 17 Mar 2025Modified 12 months agoViewed 38k times
35

The case in front of me: 10 mg · 2.5 mL · 0.9% sodium chloride.

Please show the division. I want to check my own against yours.

I would like the general form as well as the specific number, so I can apply it again.

How many significant figures are actually justified here?

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MI
askedmateo_iglesias16k2717 Mar 2025

5 Answers

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73

The answer depends on what you want your measurement resolution to be, and that is a real trade-off rather than a preference. More diluent gives you more syringe marks per dose and therefore less rounding error; it also gives you a larger volume to keep cold and a longer period over which the solution has to remain within specification.

Room temperature before drawing is worth the ten minutes. Cold solution is more viscous, draws slower, and is more likely to pull a bubble past the plunger seal.

Tilting the vial to pool solution in the corner before the final draw, and giving it a minute to drain down the walls, genuinely recovers ten to twenty microlitres.

Worth saying: if your arithmetic and someone else's disagree by a factor of ten, one of you has made a unit error.

None of this is exotic. It is just the difference between doing it deliberately and doing it approximately.

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DB
answeredDr_Fatima_Belkacem52k13813 Jul 2025
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48

Concretely, before anything else: a kitchen counter with an alcohol wipe is not an aseptic environment, and it is worth being honest about that rather than pretending the procedure is something it is not. What you are doing is reducing bioburden, not achieving sterility.

Check the barrel marking, not your memory of it.

The part that matters: do not use the same needle to pierce the stopper and to administer.

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.

The practical summary: fine gauge, gentle swirl, diluent down the wall, room temperature before drawing, and check the syringe scale.

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TM
answeredtobias_maartens94k25826 Mar 2025
Worth flagging that this changed in 2025, so older answers on the site are out of date. – ines_brandt 5 months ago
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35

If the supplier documentation specifies a diluent, there is usually a reason, and if it specifies nothing, water for injection is the conservative default.

If the material arrived warm and it was lyophilised, test it and proceed on the result.

Number of stopper piercings matters less than the gauge doing the piercing.

Do the arithmetic twice, ideally with someone else doing it independently.

edited 27 Jun 2025 by greta_holzmann — expanded the table to cover the lower concentration

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GH
answeredgreta_holzmann15k1821 Jun 2025
28

Concretely, read the cake before you touch the vial. An intact, opaque, evenly distributed puck that sits proud of the vial base is what a good lyophilisation cycle produces. Anything else — collapse, melt-back at the stopper, a glassy film, a cake that has slumped to one side — is evidence about the cycle, the shipping, or both.

Photograph the vial against a matte black card with a single point light source off to one side, not with a flash from the front.

None of this is exotic. It is just the difference between doing it deliberately and doing it approximately.

edited 27 Jul 2025 by micron22 — removed a claim I could not source

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MI
answeredmicron2236k1382 Jul 2025
23

Stated carefully, reconstitution is the step where most hands-on errors enter the system, which is why spending time on technique here pays off more than anywhere else.

The practical summary: fine gauge, gentle swirl, diluent down the wall, room temperature before drawing.

The caveat on all of this is that it assumes the vial contains what the label says.

The practical summary: fine gauge, gentle swirl, diluent down the wall, room temperature before drawing, and check the syringe scale.

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LM
answeredlucia_marchetti18k2829 Apr 2025

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