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How does liraglutide at 1.7 mg weekly compare on cost per milligram across routes?

Asked 4 Mar 2025Modified 13 months agoViewed 12k times
6

The particulars: liraglutide · 1.7 mg.

I would like the arithmetic checked rather than the conclusion asserted.

I have deliberately not used an online calculator because I want to be able to check the result.

Can someone show the working rather than just the answer?

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RI
askedrukhsana_iqbal17k374 Mar 2025
7Voting to keep this open — it is more specific than it first looks. – RP_C18 7 months ago
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5 Answers

Accepted answer first, then by votes
11

Accepted answer

1.7 mg a week is 88 mg a year and 7.4 mg in an average month — put every route on that denominator before comparing anything. Cost per milligram is the only figure that survives the comparison, because the presentations differ: a licensed pen prices a dose, a compounding pharmacy prices a vial, and a research supplier prices a mass. Divide each one's twelve-month cost by 88 mg and the three become the same number in the same unit. Then add what the cheapest route does not include — independent purity and content testing, the vials you discard, and the postage — because a route that needs testing to be trustworthy has that testing in its cost per milligram whether you account for it or not.

The short version: unit price, carriage, testing, dead-space loss and wastage. The first is the one everybody compares and rarely the one that decides it.

The full calculation: (unit price + carriage share + testing share) ÷ (nominal mg × measured content fraction × (1 − dead-space and wastage fraction)). Every term after the first is routinely omitted.

Change one number and it reverses: if B assays at 82 per cent, that is 8.2 mg for £52, or £6.34/mg, and the cheaper vial is now the more expensive peptide.

Published content assay results across the independent services show nominal and measured content differing by one to ten per cent, which is the term that makes label-price comparisons unreliable.

The caveat is that optimising cost per milligram optimises for the wrong thing if documentation and consistency are what you actually need.

Decide whether you are optimising cost or confidence before you build the model.

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DV
answered · accepteddead_volume56k4824 Jun 2025
7Worth adding that legal position and enforcement posture are different things. – shear_at_the_front 8 months ago
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14

The relevant arithmetic is that a fifteen per cent price advantage disappears against a ten per cent content shortfall plus a testing cost.

Worked example. Supplier A: £60 for a 10 mg vial, content 96 per cent, so 9.6 mg for £60, or £6.25/mg before carriage. Supplier B: £52 for the same nominal vial, content 88 per cent, so 8.8 mg for £52, or £5.91/mg. B still wins here, but the gap has narrowed from thirteen per cent on the label to five per cent in reality.

Independent testing costs roughly the price of one to two vials at the services this community uses. On a two-vial order that is a fifty to a hundred per cent surcharge; on a twenty-vial order it is five per cent.

Independent testing prices at the services this community uses are published and are stable enough to model.

Nothing here is medical advice, and research-use compounds are not approved for human use.

Larger orders are cheaper per milligram and concentrate lot risk. Price both.

edited 27 Mar 2025 by t_oyelaran — added the placebo-arm figures

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TO
answeredt_oyelaran79k4818 Mar 2025
8Is there a sensible order size where independent testing stops being a large surcharge? – Dr_Idris_Coulibaly 5 months ago
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10

Answer first: compare cost per milligram of measured peptide, not per milligram of label claim, because content varies enough to reverse a comparison.

Cost per milligram is the wrong metric entirely if you are optimising for confidence rather than price, and it is worth saying which one you are doing before you build the spreadsheet.

Dead-space loss is small with fixed-needle insulin syringes — a few microlitres per draw — and substantial with detachable-needle luer syringes at 35 to 100 microlitres. Across twenty draws that is up to two millilitres of solution.

Carriage on international consignments scales sub-linearly with weight, which is the quantitative basis for order consolidation.

A spreadsheet built on label claim rather than measured content is precise about the wrong number.

Divide by measured content, not by label claim. That is the whole correction.

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BD
answeredb_delacroix43k387 Mar 2025
Small correction: carriage amortises across the order, which changes small-order economics entirely. – e_dziedzic 10 months ago
2The point about the code being on the glass rather than the box is worth its own thread. – cap_the_luer 43 days ago
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7

In practice, wastage from expired reconstituted vials is a real line item and nobody includes it.

Wastage from a reconstituted vial discarded at the end of its in-use period is a genuine cost, and it is a function of the diluent volume chosen at reconstitution rather than of anything the supplier did.

Syringe dead-space volumes are published per design, with fixed-needle insulin syringes under 5 microlitres and conventional luer designs at 35 microlitres or more.

Include carriage and testing as per-milligram terms. They dominate small orders.

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answeredt_oyelaran79k482 Jun 2025
5

The underlying point is that testing cost per milligram falls sharply with order size, which is the main argument against very small repeat orders.

Carriage amortises across the order. Twenty-five pounds of carriage on one vial is £2.50/mg on a 10 mg vial; on ten vials it is £0.25/mg. That single term explains most of the case for larger, less frequent orders.

Larger orders reduce cost per milligram and increase exposure to a single lot, which is a real trade rather than a free win.

Fixed-needle syringes save more peptide than most price differences do.

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BC
answeredbea_castellanos24k12713 Jun 2025

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.