Vol. 3, No. 6 — June 2026Independent since 2024

TheCompound Journal

Reporting on incretins, compounding & the peptide supply chain

A monthly journal of record.
30 issues · 32 contributors
Not medical advice. We sell nothing.

Dose practice

Holding a dose is a decision, not a failure

Reducing a dose is not going backwards. In a tolerability-limited class it is the mechanism by which the ceiling is found.

What the Journal cannot tell you is how long to hold, and we want to be blunt about why. There is no trial that randomised hold duration. The four-week convention is a kinetic floor, not an optimum. Clinicians we spoke to described holds of four, eight and twelve weeks, and several described patients who never went higher and did well. All of that is observation. Presenting it as a protocol would be dressing consensus up as evidence, which is the specific failure this publication exists to avoid.

The tirzepatide ladder is a different shape

Tirzepatide begins at 2.5 mg weekly for four weeks, moves to 5 mg, and thereafter increases in 2.5 mg increments at intervals of not less than four weeks, to a maximum of 15 mg. The structural difference from semaglutide is important: after the first doubling the increments are fixed in absolute terms, which means the ratio falls steadily — 1.5-fold, then 1.33, then 1.25, then 1.20.

The practical consequence is that the upper half of the tirzepatide ladder is unusually gentle in proportional terms, and the first step from 2.5 mg to 5 mg is by some distance the most demanding thing the schedule asks. Clinicians we spoke to described the 2.5-to-5 transition as the point at which most early attrition occurs, which is what the ratios predict.

The label also states, in language that repays attention, that 5 mg is a therapeutic dose in its own right and that escalation beyond it should reflect response and tolerability. That is a materially different instruction from a ladder with a fixed destination, and it is closer to how the drug is actually used.1

What the protocols allowed and the labels lost

The pivotal protocols in this class permitted escalation to be delayed. In the semaglutide obesity programme, participants unable to tolerate a dose increase could remain at the previous dose and attempt escalation later; the tirzepatide programme contained comparable provisions, with defined windows and a limit on how long a participant could remain below target before being counted as not having reached it.

This matters for how the efficacy figures should be read. The mean weight reductions quoted from STEP and SURMOUNT were produced by populations in which a meaningful minority spent time below their assigned target dose. The trials therefore already contain the effect of flexible titration, and the flexible approach is not a departure from the evidence but part of how the evidence was generated.

What the labels carry forward is the ladder. What they largely omit is the permission. A prescriber who reads only the label sees a fixed calendar; a prescriber who reads the trial documentation sees a calendar with a documented escape valve. The Journal has raised this with two regulatory affairs specialists, both of whom regarded it as a known and unglamorous gap in how trial conduct is translated into prescribing information.2

A step from 0.25 mg to 0.5 mg is a doubling. A step from 12.5 mg to 15 mg is a fifth. Nobody explains this to the person holding the pen.

On the arithmetic of a step

Accelerated and decelerated schedules

The evidence on deviating from four-week steps is observational and one-sided. Slower escalation — five, six or eight weeks per rung — is reported by clinicians to reduce early discontinuation, is consistent with the tachyphylaxis data, and has never been randomised against the standard interval in a trial of adequate size. Faster escalation has no supporting rationale we can identify and a clear kinetic argument against it.

What can be said with confidence is that the cost of going slower is bounded and calculable: a longer time to target exposure, and therefore a later arrival at the efficacy plateau. Because the plateau itself sits at sixty weeks or beyond, adding four or eight weeks to the escalation phase is a small fraction of the treatment course. The cost of going faster is a higher probability of discontinuation, and discontinuation costs the entire effect.

That asymmetry is the strongest thing the Journal is willing to say on the subject. It is an argument from consequence rather than from trial data, and we flag it as such rather than dressing it as a finding.3

The arithmetic of a step: proportional increase per rung
MoleculeStepAbsolute increaseFold increase
Semaglutide0.25 → 0.5 mg0.25 mg2.00
Semaglutide0.5 → 1.0 mg0.5 mg2.00
Semaglutide1.0 → 1.7 mg0.7 mg1.70
Semaglutide1.7 → 2.4 mg0.7 mg1.41
Tirzepatide2.5 → 5 mg2.5 mg2.00
Tirzepatide7.5 → 10 mg2.5 mg1.33
Tirzepatide12.5 → 15 mg2.5 mg1.20
Identical absolute increments produce steadily smaller proportional increases as the ladder rises. Exposure-response depends on the ratio, which is why the lower rungs are the demanding ones.

Holding a dose: what happens physiologically

Holding works because two of the three things a person notices attenuate on their own. Gastric emptying delay, measured by scintigraphy and by breath test, is largest early in exposure at a given dose and diminishes over subsequent weeks while the drug is continued unchanged. Nausea incidence in the trials follows a comparable trajectory: it peaks in the weeks following each escalation and declines toward a lower background.

The third thing — reduced appetite and early satiety — attenuates considerably less, which is the whole reason holding is worth doing rather than simply reducing. A held dose loses much of its unwanted effect and keeps most of its wanted one.

The magnitude of this adaptation is not enormous and it is not universal. Some proportion of people find that symptoms at a given dose do not settle at all over eight or twelve weeks, and for them the dose is simply above their ceiling. Distinguishing a slow adapter from a person at their limit cannot be done in advance, which means holding is also a diagnostic manoeuvre: it converts an unanswerable question about tolerance into an answerable question about time.4

Tolerability-led escalation, described plainly

The practice that has emerged across this class, without ever being formally codified, runs roughly as follows. Start at the initiation dose. Escalate when the current dose is comfortable enough that a person is eating normally, keeping fluids down, and not organising their week around symptoms. Do not escalate in the week of a symptom flare. If a rung is intolerable, step back to the previous one and try again later. If a rung is producing an adequate result, consider stopping there.

Every clinician we spoke to described something within a small variation of that, and none of them could point to a trial of it. It is a reasonable synthesis of the pharmacokinetics, the tachyphylaxis data and a great deal of accumulated observation.

The Journal has a specific position on this. The absence of randomised support for tolerability-led escalation is a real gap and should be closed, but its absence is not a reason to prefer the printed calendar, which has no randomised support either. Between two unrandomised schedules, the one that responds to information about the individual is the better bet. We say that as an editorial judgement rather than as a report of evidence.

564228140501 wk252 wk133 wk64 wk1.66 wk0.48 wkper cent of steady state
Figure. Residual fraction of steady-state exposure remaining after an interruption of n weeks, modelled on a seven-day elimination half-life. Illustrative; not patient data.

Stepping down is part of the method

Dose reduction in this class carries a stigma that the pharmacology does not justify. Because the ceiling is set by tolerability and tolerability varies severalfold between people, the only way to find an individual ceiling is to move until it is reached and then move back. A reduction is the second half of that measurement.

There is a practical detail worth stating. Reduction takes effect on the same kinetics as escalation, which means the relief is not immediate: a person dropping from 15 mg to 10 mg is still carrying substantial exposure from the higher dose for a fortnight, and concluding after five days that the reduction has not helped is premature.

There is also an arithmetic trap for vial users. Halving a dose halves exposure at steady state, but the transition takes three to four weeks, and during that transition the person is at neither dose. Anybody adjusting downward to escape a symptom should expect the answer to arrive on a three-week timescale, not a three-day one.

Re-titration in practice

The convention after a long interruption is to resume one or two rungs below the previous dose and re-escalate on the standard interval. Clinicians described re-escalation as generally faster than the original ascent, on the grounds that a person who previously tolerated a rung is likely to tolerate it again, but there is no trial evidence for accelerated re-titration and the kinetic argument for four-week steps applies unchanged.

Two failure modes recur. The first is resuming at the previous top dose because that was the dose on the last prescription, which reproduces first-exposure symptoms in someone who has forgotten what they were like. The second is the opposite: restarting at the initiation dose after a two-week gap, which discards several weeks of adaptation for no reason.

Both are avoidable with the residual-exposure figures and a note of the date of the last injection. The Journal has come to regard that date as the single most useful piece of information a person on this treatment can keep, and the one most reliably absent when it is needed.

The escalation table is not a finding. It is an administrative decision that survived into a label.

On how dose schedules are made

A dose is a number about a vial

Everything above assumes the dose administered is the dose intended. For licensed pens that assumption is reasonable. For research-grade lyophilised powder it is an assumption that should be examined, because a titration schedule built on an unreliable starting figure propagates the error through every subsequent rung.

Two distinct quantities are involved. Chromatographic purity describes the proportion of peptide-related material that is the intended peptide. Peptide content describes what fraction of the vial mass 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 substantially less peptide than its label states, and content is the figure that determines a dose.

Of the four independent services this market relies on, all report purity and only some report content routinely. Janoshik, Medutest, PeptideMeter and VendorInvestigate have each published results in which nominal and measured strength diverged. The Journal has argued in Analytics that content should be reported as standard, and we repeat it here for a titration-specific reason: without it, the arithmetic of a step is being performed on a number nobody has measured.

Withdrawal-design trials: continuation against cessation
TrialLead-inRandomised periodContinuedWithdrawn
STEP 420 weeks to 2.4 mg48 weeks−7.9% further+6.9% regain
SURMOUNT-436 weeks open-label52 weeks−5.5% further+14.0% regain
Both designs compared the achieved dose against placebo. Neither examined a reduced maintenance dose, which is the comparison most readers ask about.

Non-standard concentrations and the errors they cause

Compounded and grey-market preparations are frequently supplied at concentrations that do not correspond to any licensed presentation. That is not in itself a quality problem, but it removes every mental shortcut a person may have acquired, and it interacts badly with escalation.

The recurring error is arithmetic rather than clinical: a person who has learned that a particular volume equals a particular dose changes vial, keeps the volume, and changes the dose without intending to. We have seen this reported in both directions and at magnitudes exceeding a full rung on the ladder.

Two habits protect against it. Recompute the volume-to-dose conversion whenever the vial changes, from the stated content and the reconstitution volume, rather than carrying the old figure forward. And write the result down somewhere attached to the vial, because the calculation is easy and the recall is not. The Journal covers the underlying arithmetic in the injection-practice file; the point here is that changing vials mid-titration converts a titration decision into a units problem, and units problems are where the largest errors in this field occur.

How the Journal reports dose figures

Three conventions govern the numbers in this file. Weight-change figures are quoted with the estimand named, because the treatment-policy and trial-product analyses in the obesity programmes differ by two to three percentage points and secondary coverage habitually mixes them. Doses are quoted as the weekly amount, not as a pen volume or a unit count, because volume and units depend on concentration and concentration varies. And where a figure derives from a responder analysis rather than a primary endpoint, we say so.

Where we describe practice rather than evidence, the text says so explicitly. A substantial part of what is known about titration in this class is craft knowledge held by clinicians, and reporting it is legitimate journalism. Presenting it as trial data is not.

Nothing in this file is medical advice. The Journal does not recommend doses, schedules, products or suppliers. Several compounds discussed here are sold for research use only and are not approved for human use in any jurisdiction. Decisions about treatment belong with a licensed clinician who has examined the person concerned.

A short glossary, because the terms get swapped

Initiation dose: the first rung, chosen for tolerability and generally sub-therapeutic. Not a low treatment dose. Target dose: the dose a protocol or prescriber intends to reach. Maintenance dose: the dose continued once the intended effect is achieved. Maximum approved dose: the highest dose in the label, set by the studied range and the tolerability ceiling.

Escalation interval: the time between increments. Hold: deliberately remaining at a rung beyond the standard interval. Re-titration: re-ascending after exposure has been substantially cleared. Dose-limiting: describing an effect severe enough to prevent escalation, which is a property of the person and the dose jointly, not of the drug alone.

Steady state: the condition in which drug entering the body equals drug leaving it. Accumulation ratio: steady-state average concentration divided by first-dose average concentration. Precision here matters more than it sounds: a large share of the correspondence this desk receives about titration turns out on inspection to be a disagreement about which of these words the writer meant.

A closing note on the specific market this publication covers. Everything above assumes a known dose. For material sold for research use only, the dose is an inference from a label, and the independent testing services keep finding that the inference is sometimes wrong. Titration arithmetic performed on an unmeasured number is not titration; it is estimation with a decimal point.

References

  1. Jastreboff AM, Aronne LJ, Ahmad NN, et al. “Tirzepatide Once Weekly for the Treatment of Obesity.” New England Journal of Medicine. 2022;387(3):205–216.
  2. Garvey WT, Frias JP, Jastreboff AM, et al. “Tirzepatide once weekly for the treatment of obesity in people with type 2 diabetes (SURMOUNT-2).” Lancet. 2023;402(10402):613–626.
  3. Bettge K, Kahle M, Abd El Aziz MS, Meier JJ, Nauck MA. “Occurrence of nausea, vomiting and diarrhoea reported as adverse events in clinical trials studying glucagon-like peptide-1 receptor agonists: a systematic analysis of published clinical trials.” Diabetes, Obesity and Metabolism. 2017;19(3):336–347.
  4. Maselli DB, Camilleri M. “Effects of GLP-1 and Its Analogs on Gastric Physiology in Diabetes Mellitus and Obesity.” Advances in Experimental Medicine and Biology. 2021;1307:171–192.

Related coverage