Why the fifth week of a dulaglutide dose feels different from the first
An accumulation model, drawn from published parameters, with its assumptions stated.
TheCompound Journal
Reporting on incretins, compounding & the peptide supply chain
Reconstitution
The evidence base here is the insulin injection-technique literature, which is large and transfers well on tissue questions.
One anatomical instruction is worth stating on its own, because it is universal, it appears in every set of published recommendations, and it is ignored more often than any other. The area immediately around the umbilicus — conventionally a radius of about two inches — is avoided because the tissue there is tethered to underlying structures and the subcutaneous layer is inconsistent in thickness. Beyond that boundary, the anterior abdominal wall is the largest, flattest and most forgiving surface available to most people, and it is where the great majority of injections in this drug class are given.
Intramuscular delivery of a subcutaneous preparation accelerates and destabilises absorption. The insulin literature established this cleanly: intramuscular administration produces faster onset and markedly greater between-occasion variability than subcutaneous administration of the same preparation.1
For a weekly acylated agonist the consequences of one such injection are less acute than for a mealtime insulin, because the depot is designed to release over days and albumin binding dominates the kinetics. It is nonetheless an unintended change in the input function, and where it happens repeatedly — a long needle used consistently in a lean thigh — it becomes a persistent alteration in exposure that no dose adjustment will explain.
The signals are not reliable. A deeper ache during and after injection, more bleeding, and a sensation of the injection being harder to push are all suggestive and none are diagnostic. This is why the answer is structural rather than perceptual: a 4 mm needle removes the possibility, and no amount of attentiveness makes a 12.7 mm needle in a lean thigh safe from it.
The four conventional subcutaneous sites are the anterior abdominal wall, the anterior and lateral thigh, the posterolateral upper arm, and the upper outer buttock. For most people the abdomen is the largest, most accessible and most forgiving, and it is where the majority of injections in this class are given.
Two exclusions apply. The area within roughly two inches of the umbilicus is avoided, because the tissue is tethered and the subcutaneous layer inconsistent. Any area of scarring, striae, active inflammation, bruising or existing lipohypertrophy is avoided, because absorption from altered tissue is altered.
Practical constraints matter as much as anatomy. The posterolateral arm is difficult to reach and to see on oneself, which makes it a poor routine site for self-injection even though it is perfectly good tissue. The buttock is similarly awkward without assistance. That leaves the abdomen and thighs as the realistic rotation surface for most people, which is ample: the abdomen alone offers a very large number of non-overlapping sites at a spacing of a couple of centimetres.
A unit tells you the volume. Only the concentration tells you the dose. Every large error in this market starts by forgetting that.
On the hundred-unit conventionLipohypertrophy is thickened, rubbery subcutaneous tissue produced by repeated injection into the same small area. Surveys of insulin-injecting populations have found it in a substantial proportion of patients — figures around a third or higher are commonly reported — and identified inadequate rotation and needle reuse as the principal risk factors.2
Its consequence is not cosmetic. Injection into lipohypertrophic tissue produces blunted and considerably more variable absorption; controlled work in insulin users found impaired and less predictable action following injection into such tissue compared with normal tissue.3 For any injected depot preparation the implication is the same: an unpredictable fraction of an intended dose.
The self-reinforcing feature is that lipohypertrophic tissue is less sensitive, so injecting into it is more comfortable, so people prefer it. Any rotation scheme therefore has to be followed against a mild incentive not to.
The schemes that survive contact with real life are simple: move at least a needle-length — practically, a couple of centimetres — from the previous site every time, and shift region on a fixed calendar cue rather than by memory. Palpating the sites occasionally for thickening is worth more than any grid diagram, because it detects the problem the scheme exists to prevent.
| Error | Direction | Magnitude | Usual trigger |
|---|---|---|---|
| Millilitres read as units, or the reverse | Either | 10× | Non-insulin syringe used interchangeably |
| Milligram / microgram decimal slip | Either | 1000× | Converting between label and dose units |
| 2-unit graduations read as 1-unit | Either | 2× | Change of barrel size |
| Unit count carried across a concentration change | Either | 2× or more | New vial or new diluent volume |
| Dead space and bubbles at small volumes | Under | 10–30% | High-concentration reconstitution |
| Pen not primed | Under | Variable | Habit erosion; intermittent feedback |
| Needle withdrawn before ten-second hold | Under | Small | Haste; visible as wet skin |
| Ranking derived from reader correspondence over twelve months. This is a self-selected sample that over-represents people who noticed the error; the denominator is unknown and no frequency should be inferred. | |||
Insulin absorption differs by site, which is why insulin regimens specify them. For the long-acting acylated incretin agonists, the labelling treats abdomen, thigh and upper arm as interchangeable, and the clinical pharmacokinetic literature reflects site comparisons conducted during development.4
The mechanistic reason is straightforward. These molecules are engineered to bind albumin reversibly and to release slowly from a subcutaneous depot; that release, and not regional blood flow, is the rate-limiting step. Where the depot sits therefore matters much less than it does for a preparation whose absorption is perfusion-limited.
This is a genuine practical simplification and it should be said clearly, because rotation advice imported wholesale from insulin practice can leave people believing that changing region will change their exposure. Rotation in this class is about protecting tissue from repeated trauma. It is not a dose-control measure, and a person who injects the thigh one week and the abdomen the next has not altered their treatment.
The exception is tissue that has already changed. Once lipohypertrophy is established, absorption from that area is unpredictable regardless of molecule, and the interchangeability above no longer applies.
Every calculation above starts from a stated mass of peptide in the vial. For licensed product that figure is a release specification. For research-grade lyophilised powder it is a claim, and the difference matters because the claim sits at the front of every subsequent computation.
Two distinct quantities are involved. Chromatographic purity is the proportion of peptide-related material that is the intended peptide. Peptide content is the fraction of the vial mass that is peptide at all, the remainder being counter-ions, residual solvent, water and excipient. A vial can be ninety-nine per cent pure and contain materially less peptide than labelled, and content is the number that determines a dose.
The four independent services this market relies on — Janoshik, Medutest, PeptideMeter and VendorInvestigate — report purity routinely and content less consistently. Several vendors, among them WXT, SSA, CPC, SWB and MKM, publish per-batch reports; others publish nothing verifiable. Where content has not been measured, the labelled mass should be treated as an upper bound and the resulting dose figure as an estimate. That is unsatisfying and it is honest, and it is why the Journal has argued in Analytics for content and endotoxin as standard reported fields.
Two bodies of evidence underlie this file. Questions of tissue, depth, needle length and rotation come from the insulin injection-technique literature, which is large, well conducted and directly transferable because it concerns anatomy rather than any particular molecule. Questions of absorption by site, in-use stability and exposure come from the incretin literature, which is smaller and where we say so. Where we describe practice rather than evidence, the text states it.
We give arithmetic in full rather than in tables of pre-computed unit counts, deliberately. A pre-computed table is correct only for the concentration it was computed for, and the recurring error in this market is precisely the reuse of a correct number under changed conditions. A reader who can perform the four-line calculation is protected against a class of error that no table can prevent.
Nothing in this file is medical advice. The Journal does not recommend doses, products, diluents or suppliers, and cannot assess an individual. Several compounds discussed are sold for research use only, are not approved for human use in any jurisdiction, and are not manufactured or released to any human sterility, content or endotoxin standard. Injection technique is properly taught in person by a clinician or nurse, and this file is not a substitute for that.
This file sits between two others in the department. Titration decides what dose is intended; tolerability decides whether it can be sustained; technique decides whether the intended dose is the one delivered. All three have to be right, and the third is the only one that can be got right in full by a careful person with a calculator.
Selected from correspondence received on this article. Writers are identified by initial, surname and city, verified before printing. Replies are from the desk that filed the piece or from the standards editor. Write to letters@compoundjournal.com.
I gave myself a tenth of my intended dose for five weeks. I had been using insulin syringes, ran out, and used the 1 mL syringes that came with the vials, which are marked in millilitres. I did not notice because the plunger was in roughly the same place. Nobody warned me these were different scales.
— N. Prasetyo, Surabaya
This is the error we rank first for magnitude and we are grateful for the account, because it happened exactly as the mechanism predicts: a substitution that produced no visible signal. The one structural defence is to buy syringes deliberately and keep to a single type rather than using whatever arrives in the parcel.
Nothing in this file addresses what to do when you realise mid-week that you have made an error. I gave double my dose on a Sunday and could find no guidance anywhere about what that meant.
— V. Bhattarai, Kathmandu
A real gap and we will address it properly rather than in a reply. The short version is that it is a pharmacokinetic question — how much excess exposure, over what half-life — and a clinical one about symptom burden, and neither is answerable in the abstract. It also belongs in the titration file, which currently discusses omission and not excess.
An accumulation model, drawn from published parameters, with its assumptions stated.
The limit for a parenteral product is calculable from the dose and the body weight in two lines. Almost nobody in this trade performs the calculation.
The evidence base is thin and the document says so, which is to its credit.
A unit is a volume. A dose is a mass. The bridge between them is concentration, and concentration is a number somebody has to calculate.
A blank certificate with the numbers left editable is an ordinary internal document. Its circulation as a finished record is the problem.
Gradient slope is the single most consequential method parameter for a reported purity figure, and it is the one most often omitted.