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Why does a 1 mL luer-lock syringe read differently from the volume I thought I drew at 1 mg/mL?

Asked 16 Nov 2024Modified 16 months agoViewed 23k times
28

The specifics, since they change the answer: a 1 mL luer-lock syringe · 1 mg/mL.

An unexpected observation, and I would like a differential rather than reassurance.

The conditions were within what I understood to be the acceptable range, which is why I am asking.

What would you check first, and what would you conclude from each outcome?

insulin-syringe
insulin-syringe

U-100 and U-40 insulin syringes as measuring instruments. A U-100 syringe is graduated in insulin units where 100 units equals 1 mL, so one unit…

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dead-space
dead-space

The volume trapped in the syringe hub and needle after the plunger bottoms out. It is small in absolute terms and large as a fraction of a small…

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dosing-math

The arithmetic itself: milligrams to millilitres to insulin units, concentration after reconstitution, dose per draw, and vial-days per vial. Show…

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RH
askedrania_haddad13k2716 Nov 2024
6Same question, and I got two answers that differ by a factor of ten, so I am watching this. – RP_C18 6 months ago
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5 Answers

Accepted answer first, then by votes
77

Accepted answer

At 1 mg/mL a 1 mg dose is 1 mL, which on a 1 mL luer-lock syringe is 100 units — and that is the number the barrel is showing you, not the number you were thinking in. Three things separate the two. The scale: a barrel graduated in units is graduated in volume, so every dose has to pass through 1 mg/mL to become a mark. The meniscus: read the leading edge of the plunger stopper, not the shoulder — on a narrow barrel the two are about a unit apart. And the dead space: what the barrel reads is what is in the barrel, while what leaves it is that minus whatever stays in the hub and the needle. Write 1 mg/mL and the units-per-milligram on the vial at reconstitution and the arithmetic stops happening at the point of use.

Answer first: on a U-100 syringe one unit is 0.01 mL, so units are simply volume in millilitres multiplied by one hundred. Nothing else about the scale is doing any work.

Needle length for subcutaneous administration is conventionally 4 to 8 mm; the 4 mm length is sufficient for essentially all adults and reduces the chance of an intramuscular injection.

Barrel sizes and graduations: 0.3 mL barrels are marked in single units to 30, 0.5 mL barrels in single units to 50, and 1 mL barrels usually in two-unit increments to 100. The smallest barrel that holds the dose gives the finest reading.

U-100 is a concentration standard meaning 100 units of insulin per millilitre; the syringe graduation is a volume scale expressed in those units.

The caveat is that this describes an instrument, not a treatment, and research-use compounds are not approved for human use.

One unit is 0.01 mL on U-100. That is the whole scale.

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LS
answered · acceptedlow_dead_space37k372 Mar 2025
6Would this be different for a peptide that foams? Mine does and I have never known why. – Dr_Rosalind_Achebe 5 days ago
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92

The relevant precision limit is that you cannot reliably read half a graduation, so the barrel decides the smallest change you can make.

The conversion in full: volume in mL = dose in mg ÷ concentration in mg/mL; units = volume × 100. At 5 mg/mL, a 0.25 mg dose is 0.05 mL, which is 5 units. At the same concentration a 1 mg dose is 0.2 mL, which is 20 units.

Read the leading edge of the rubber plunger stopper against the graduation, not the tip of the conical shoulder. The difference is roughly one unit on a 0.3 mL barrel, which is a four per cent error on a 25-unit dose.

Nothing here is medical advice.

Fixed needle, not detachable, unless you have a specific reason.

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UM
answeredu100_marks52k3725 Nov 2024
6The dead-space number surprised me until I did the multiplication across twenty draws. – a_lindgren 8 months ago
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63

The short version: U-100 only, smallest barrel that fits the dose, read the leading edge of the plunger stopper.

Fixed-needle insulin syringes retain roughly 3 to 5 microlitres after the plunger bottoms out. Detachable-needle luer syringes retain 35 to 100 microlitres depending on hub design — an order of magnitude more.

The part that matters: a 2 mm air bubble in a 0.3 mL barrel is about 4 microlitres, which against a 10-unit (100 microlitre) draw is a four per cent error. Flick it to the hub and expel it before reading.

The 4 mm needle length is supported by injection-technique studies showing adequate subcutaneous delivery across body-mass ranges without increased intramuscular delivery.

Half-graduation estimation is not measurement. If the dose needs it, change the concentration instead.

Check the syringe is U-100 and not U-40 before doing any arithmetic with it.

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LS
answeredlow_dead_space37k3713 Mar 2025
3Thank you — the worked example is what makes this usable. – label_claim 7 months ago
4I have seen exactly this failure mode twice and both times it was the diluent volume. – m_haraldsen 9 months ago
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37

A dose that lands below about five units on any barrel is being measured too coarsely and the reconstitution should be redone.

U-40 syringes still exist, mostly in veterinary supply. A U-40 barrel marked "20 units" holds 0.5 mL, not 0.2 mL. Using one with U-100 arithmetic overdoses by a factor of two and a half.

Graduation intervals by barrel size are printed on the packaging and are the practical limit on dosing resolution.

If your arithmetic and someone else's differ by a factor of ten, one of you has misplaced a decimal rather than misunderstood the biology.

Smallest barrel that holds the dose. Resolution is free and you should take it.

edited 20 Mar 2025 by nynke_dekker — added the citation requested in comments

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ND
answerednynke_dekker9.4k1719 Feb 2025
30

The honest answer is that most dosing errors in this tag are reading errors rather than calculation errors.

Syringes are single-use. Reusing one blunts the tip against the stopper, degrades the silicone coating and makes the graduation reading no more accurate than it was the first time.

Published dead-space comparisons put low-dead-space fixed-needle designs under 2 microlitres and conventional detachable-needle designs at 35 microlitres or more.

None of the above is a recommendation to administer anything. Research-use-only material is not approved for human use, and the arithmetic being correct does not make the decision safe.

Read the leading edge of the stopper, every time.

edited 1 Feb 2025 by jonas_ekstrom — corrected a unit error in the worked example

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JE
answeredjonas_ekstrom12k388 Jan 2025
Reading the leading edge of the stopper rather than the shoulder is worth a sentence of its own. – halvard_ness 3 months ago
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Your answer

Ask PeptideStack is a static archive. Posting is closed, but the norms are worth stating: answer the question that was asked, show your working, cite the trial or the certificate, and say plainly where the evidence runs out.

Not medical advice. Research-use-only compounds are not approved for human use.