The 23-day notice: how a compounding wind-down works in the United Kingdom
The document is four pages. Three of them are about dates.
TheCompound Journal
Reporting on incretins, compounding & the peptide supply chain
Discontinuation
Cost is the modal reason for discontinuation in every dataset we have seen, and it is absent from the clinical literature.
A paragraph on intermittent dosing schedules was rewritten before publication after the standards desk objected that describing a schedule in detail, even with an explicit statement that no evidence supports it, functions as a protocol. The section now states the schedules in general terms and the evidentiary position in specific ones.
The shortage years produced an unintentional natural experiment in interrupted treatment, and its main lesson was about escalation rather than about regain. People who had been stable at a maintenance dose for months, lost access for six or eight weeks, and then resumed at the dose they had been on, frequently found the resumption far less tolerable than the original escalation had been. That is exactly what the pharmacokinetics predicts, it was widely experienced, and it was almost never explained in advance.
The parent programmes establish the losses from which the withdrawal arms fall: approximately 14.9 per cent at sixty-eight weeks for semaglutide 2.4 mg in adults without diabetes, approximately 20.9 per cent at seventy-two weeks for tirzepatide 15 mg, and — the only continuous two-year comparator anybody has — approximately 15.2 per cent sustained at week 104 with treatment maintained throughout.12
Read together, the withdrawal evidence supports four statements and does not support a fifth. Regain begins promptly after cessation, within weeks rather than months. It proceeds at a decelerating rate, with the steepest portion in the first three to six months. It does not, within twelve months of follow-up, return participants fully to their original baseline; residual reductions of roughly five to ten per cent persist at one year in all three datasets. And continued treatment maintains and usually extends the loss, with the extension diminishing as the plateau is approached.
The statement not supported is that the drugs cause weight regain, or that stopping leaves a person worse off than never having started. Nothing in these datasets shows overshoot above the original baseline at a group level. Every arm that stopped remained below where it began at the end of follow-up.
The Journal makes this point repeatedly because the contrary claim circulates widely and is often accompanied by a mechanistic story about metabolic damage. The withdrawal trials are the direct test of that claim and they do not support it. What they do support is the unremarkable proposition that a treatment for a chronic condition works while it is being taken.
The homeostatic response to weight loss was characterised in a study that predates this drug class and remains the clearest account of it. After a substantial diet-induced reduction, circulating leptin fell and remained suppressed, ghrelin rose and remained elevated, satiety hormones including peptide YY and cholecystokinin fell, and subjective hunger was significantly greater than baseline — and all of these persisted at twelve months, long after active dieting had ended.3
Alongside the hormonal changes sits a reduction in resting energy expenditure larger than the loss of metabolically active tissue predicts, an effect usually termed adaptive thermogenesis. Its magnitude and persistence are contested, but in the most extreme documented cohort — participants in a televised competitive weight-loss programme followed for six years — resting metabolic rate remained substantially suppressed relative to prediction long after most of the weight had returned.4
Both findings explain regain after drug withdrawal without invoking anything specific to incretins. A drug that suppresses appetite is holding a system away from a defended state. Remove the drug and the system, which has been signalling for restoration throughout, gets what it has been asking for. That is not a drug effect; it is the condition the drug was treating becoming visible again.
Every withdrawal trial compared a full dose against nothing. The comparison almost every patient actually faces has never been randomised.
On the maintenance gapThis is the most practically consequential item in the whole subject and the one least often stated in advance. Gastrointestinal tolerability to these agents develops over weeks of continued exposure and decays when exposure is removed. After four weeks without the drug, plasma concentrations are a small fraction of steady state and the tolerability accommodation has substantially reset. Resuming at the previous maintenance dose therefore presents the system with an exposure step it has not experienced for a month.
The clinical convention — resume at a lower dose and re-escalate — follows from the pharmacokinetics rather than from caution.5 Product labelling for several agents in the class advises consideration of re-initiation at a lower dose after an extended interruption, and the threshold at which this applies differs between products, which is a detail worth checking against the specific label rather than a general rule.
The shortage period demonstrated the consequence of ignoring this at scale. Large numbers of people lost access for six to ten weeks, resumed where they had left off, and experienced nausea and vomiting considerably worse than during their original escalation. It was predictable, it was predicted by anybody who had read the label carefully, and it was almost never communicated.
| Reason | Randomised evidence on outcome | Typical notice | Resumption likely? |
|---|---|---|---|
| Protocol-driven withdrawal | Three designs | Planned | Not applicable |
| Reached target weight | None | Planned | Sometimes |
| Intolerable side effects | Discontinuation rates only | Days | Sometimes, lower dose |
| Cost or coverage loss | None | Weeks or none | Often, when coverage returns |
| Supply interruption | None | None | Usually, at reset tolerability |
| Discontinuation rates for adverse events are reported in every pivotal trial; outcomes after discontinuation for the other reasons are not, because the trials did not enrol people who stopped for them. | |||
Analyses of pharmacy claims consistently find that persistence with these agents for weight management is poor relative to their efficacy, with a large minority of people no longer filling prescriptions within a year of starting and discontinuation concentrated in the first three months.6 The pattern tracks coverage, deductible reset timing and cash price far more closely than it tracks clinical response, which is the signature of an economic rather than a therapeutic discontinuation.
Almost none of this appears in the clinical literature on withdrawal. The trials studied people who stopped because a protocol told them to, with the drug supplied free, in a population willing to be randomised. That is close to the opposite of the situation in which most discontinuation actually occurs: unplanned, unsupervised, at a time set by an insurer or a price rise rather than by a clinical assessment, and frequently without anybody being told it has happened.
The Journal reports discontinuation in both this department and The Ledger for that reason. The clinical trajectory after stopping is a Patient Notes question; why people stop is an economics question; and the two literatures currently do not speak to one another at all.
A supply gap is a discontinuation with no notice, no plan and no taper. It differs from every other route to stopping in that it is imposed on both the patient and the prescriber, its duration is unknown at the outset, and it frequently ends as abruptly as it began. The shortage listings of recent years produced these events at population scale, and they have not been studied as a clinical exposure.
Three features make them distinctive. The patient cannot plan a maintenance strategy around an interruption of unknown length. Substitution — to a different agent, a different dose, or a compounded preparation — happens under time pressure and often without a dose-equivalence basis, since no head-to-head equivalence data exists between agents in this class. And the resumption problem described above applies in full, because the gaps were typically long enough to reset tolerability.
The Journal reported these events as they occurred and continues to think they represent the largest uncontrolled interruption experiment in the history of the class. What nobody collected was outcome data: how much weight was regained during the gaps, how many people never resumed, and what happened to the glycaemic control of those taking the drugs for diabetes rather than for weight.
The withdrawal question changes shape when the drug was prescribed for something other than weight. In the cardiovascular outcome trial of semaglutide in overweight and obesity without diabetes, the reduction in major adverse cardiovascular events emerged over years of continued treatment, and the trial provides no information about what happens to that benefit on cessation.7 The same applies to the renal outcome data in chronic kidney disease with type 2 diabetes, where the effect on kidney disease progression was measured over a median of several years of treatment.8
There is no reason to expect an outcome benefit that accrues over years to persist after the exposure ends, and no trial has tested it. For a person taking the drug for glycaemic control, stopping has an immediate and measurable consequence in HbA1c over the following three months. For a person taking it for cardiovascular or renal risk, stopping has no measurable short-term consequence at all, which makes the decision harder rather than easier.
This is the situation in which the Journal thinks the withdrawal-trial coverage has done the most damage. Framing discontinuation as a weight question invites a person taking the drug for kidney disease to reason about it in the wrong currency entirely.
Restarting after months away is well tolerated in general and the response is broadly reproducible: people who lost weight on an agent and stopped generally lose weight again on resuming, at a similar rate. There is no established phenomenon of a diminished second response in this class, and the withdrawal trials that re-offered treatment after their observation periods did not report one.
Three practical features recur. Escalation has to start again from a low dose for tolerability reasons, which means several weeks before the previous maintenance exposure is re-established. The nausea of a second escalation is frequently reported as worse than the first, for which the Journal has seen no mechanistic explanation and would not rule out reporting bias. And the weight trajectory on restarting begins from wherever the person now is, so a second course is a longer project than the first if regain was substantial.
None of this constitutes advice about whether to restart, which is a clinical decision. It is offered as a description of what the trial reports and the correspondence describe, and readers should note that no trial has been designed to study re-initiation as its primary question.
That a treatment for a chronic condition stops working when it is stopped is not a finding about the treatment. It is a finding about the condition.
On how the withdrawal trials were receivedEvery trial in this class delivers a behavioural intervention alongside the drug: energy-restriction targets, activity targets, and regular contact with a study team. That contact is itself an intervention of measurable effect, which is why placebo arms in these programmes lose two to three per cent of body weight rather than nothing. Where the behavioural component was deliberately intensified, the placebo arm lost around 5.7 per cent over sixty-eight weeks, which is a useful upper bound on what contact and counselling alone achieved in these populations.9
It matters for the withdrawal question in a way that is usually elided. The semaglutide off-treatment extension withdrew the drug and the lifestyle support together, so its regain figure describes the removal of a package.10 The STEP 4 and SURMOUNT-4 withdrawal arms kept the lifestyle component running, so their regain figures describe the removal of a molecule with support maintained.511 Those are different experiments and the second is the more conservative.
Anybody comparing regain figures across the three should therefore expect the extension to look worse, and it does. The Journal states which withdrawal design a figure comes from every time it quotes one, because the alternative is pooling two different experiments into a single number that describes neither. The same caution applies to the frequent comparison with dietary weight-loss regain, where the behavioural intervention is the whole of the treatment.
| Time since last dose | Approx. residual exposure | What is measurable |
|---|---|---|
| 1 week | ≈50% | Little change in appetite reported |
| 2 weeks | ≈25% | Appetite return commonly reported; fasting glucose rising |
| 4 weeks | ≈3–6% | Gastric emptying normalised; tolerability reset |
| 8 weeks | <1% | Weight trajectory established; HbA1c partially reflects change |
| 12 weeks | nil | HbA1c reflects the post-cessation period |
| Residual exposure assumes a 7-day half-life and first-order elimination. The observations in the third column are drawn from trial reports and correspondence and are not measurements from a single study. | ||
The Journal’s position is that three trials would resolve almost everything currently argued about in this area, and that all three are straightforward. The first is a dose-reduction design: after a lead-in to target, randomise to full dose, one step down, two steps down, or placebo, and follow for a year with weight as the primary endpoint. It would establish the shape of the descending dose-response curve and would cost a fraction of a pivotal programme.
The second is an interval design: after a lead-in, randomise to weekly, fortnightly and three-weekly administration at the same nominal dose. It would answer the intermittent-schedule question directly and would settle whether the exposure pattern matters independently of average exposure.
The third is a taper design: randomise abrupt cessation against a stepped reduction over twelve weeks, with appetite, eating behaviour and weight measured for a year afterwards. It would test the only argument for tapering that is worth testing.
None of the three is under way as far as the Journal can establish. Readers who know otherwise should write to letters@compoundjournal.com; a registered protocol for any of them would be news in this department.
Four things accompany every regain number in these pages. Which withdrawal design it comes from, because an off-treatment extension and a randomised placebo switch are different experiments. Whether the lifestyle intervention continued in the arm being described. What the denominator is — regain as a percentage of body weight, as a percentage of the weight lost, or as a final position relative to original baseline, three quantities that are routinely quoted interchangeably. And the follow-up duration, because the regain curve decelerates and a figure at six months is not a figure at a year.
The third of those is where most of the misreporting happens. A statement that participants regained two-thirds is a proportion of loss; a statement that they regained eleven per cent is a proportion of body weight; a statement that they finished 5.6 per cent below baseline is a final position. All three can describe the same arm and they are not interchangeable.
Where a source we are quoting has not stated its denominator, we say that rather than inferring it. Readers who find a regain figure in these pages without its design and its denominator have found an error, and the standards desk would like to hear about it at standards@compoundjournal.com.
This is reporting on a body of trial evidence and it is not advice about whether or how to stop taking a medicine. The decision to discontinue an agent prescribed for glycaemic control, cardiovascular risk or kidney disease is materially different from the decision to discontinue one prescribed for weight, and in every case it belongs with a clinician who has seen the person and knows why the drug was started.
Two further notes. Compounds sold for research use only are not approved for human use in any jurisdiction, and nothing here should be read as guidance about using them or about stopping their use. And where this piece describes what clinicians report doing about maintenance dosing, that is description of practice and not a schedule anybody should adopt from a magazine.
The Journal takes correspondence on this subject at letters@compoundjournal.com and factual challenges at standards@compoundjournal.com. Letters describing a personal experience of stopping are read with attention and are published, where they are published, as accounts rather than as evidence — a distinction this department tries hard to preserve in both directions.
Two practical items follow from the pharmacology rather than from the trials, and only two. An interruption long enough to clear the drug is long enough to reset tolerability, so resumption is a fresh escalation and should be planned as one. And a laboratory panel drawn less than three months after stopping will not yet show the full glycaemic consequence, whatever it turns out to be.
The document is four pages. Three of them are about dates.
Concentrations fall by half a week, so a month away leaves a small fraction of steady state. Resuming at the previous dose presents the receptor with a step it has not seen…
Dose reduction is not withdrawal, and the trials that tested withdrawal cannot be read as testing it.
A design note rather than a result: what the comparator was, and what that permits you to conclude.
Why the reason for stopping changes what happens afterwards.
The condition on arrival is recorded by some services and not others, and it is one of the more informative lines in a report.