What the new South Africa guidance says about stopping
The evidence base is thin and the document says so, which is to its credit.
TheCompound Journal
Reporting on incretins, compounding & the peptide supply chain
Stopping
Dose reduction is not withdrawal, and the trials that tested withdrawal cannot be read as testing it.
The Journal has asked several clinicians how they handle maintenance and received a consistent answer that is not in any guideline: reduce by one escalation step, hold for eight to twelve weeks, watch the weight, and go back up if it moves. That is defensible empiricism and it is not evidence. We report it as what is being done rather than as what is supported, and we note that the absence of a dose-reduction trial in a drug class of this commercial scale is a choice somebody made.
STEP 4 is the cleanest test of continuation in the semaglutide programme. All participants took semaglutide through a twenty-week escalation to 2.4 mg weekly, achieving a mean reduction of approximately 10.6 per cent. They were then randomised two to one to continue semaglutide or to switch to placebo for a further forty-eight weeks, with lifestyle support maintained in both arms.1
Those who continued lost a further 7.9 per cent, reaching roughly 17.4 per cent below their original baseline at week 68. Those switched to placebo regained approximately 6.9 per cent, ending near 5 per cent below baseline. The between-group difference of about fifteen percentage points is the effect of continuing treatment for a year, measured in a population that had already demonstrated a response.
The design detail that matters most is that lifestyle support continued in the placebo arm. This is not a comparison of drug against nothing; it is a comparison of drug plus support against support alone, in people who had lost weight on the drug. The regain observed is therefore what happens with the behavioural intervention still running, which makes it a more conservative estimate of the drug contribution rather than a less one.
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.23
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.
Every withdrawal trial compared a full dose against nothing. The comparison almost every patient actually faces has never been randomised.
On the maintenance gapSet the three withdrawal trials side by side and a conspicuous absence appears. All three compared a full maintenance dose against placebo. None compared a full dose against a reduced one. The comparison that the great majority of successfully treated people actually face — can I take less of this and hold what I have — has not been randomised at any dose, in any programme, for any agent in this class.
The commercial explanation is straightforward and the Journal states it without much comment: a trial demonstrating that a third of the dose maintains most of the effect would reduce the revenue per treated patient by roughly the same fraction, and sponsors are not obliged to run trials against their own interest. The regulatory explanation is that maintenance dosing falls outside the approved label question, which is whether the product is effective at the studied dose.
The result is that an enormous amount of clinical practice is being conducted on inference. What can be inferred is that the dose-response curve for weight effect flattens at the top of the range, which suggests a step down would cost less than proportionally. Whether the curve is the same shape descending as ascending is unknown, and hysteresis in either direction would not be surprising.
It is worth noting what the one head-to-head weight trial in this class did and did not do. It compared two agents at their respective licensed doses and reported the difference in weight outcome; it did not establish dose equivalence between them, and it cannot be used to convert a maintenance dose of one into a maintenance dose of the other.4 Pharmacies asked to substitute during the shortage period had no equivalence basis to work from, whatever the conversion tables in circulation implied.
| Study | Design | Lead-in | Randomised follow-up | Lifestyle support after |
|---|---|---|---|---|
| STEP 1 extension | Off-treatment observation | 68 weeks on drug | 52 weeks off | Withdrawn |
| STEP 4 | Randomised switch to placebo | 20 weeks to 2.4 mg | 48 weeks | Continued |
| SURMOUNT-4 | Randomised switch to placebo | 36 weeks to max tolerated | 52 weeks | Continued |
| S-LiTE | Post-diet maintenance, 4 arms | 8-week low-energy diet | 52 weeks | Continued |
| STEP 5 | Continuous treatment, no withdrawal | — | 104 weeks on drug | Continued |
| The first three are the withdrawal evidence base. STEP 5 is included because it is the only two-year continuous-treatment comparator and is frequently cited alongside the withdrawal data as though it were part of it. | ||||
The Journal has asked clinicians in four jurisdictions how they manage maintenance and received a broadly consistent description that appears in no guideline. Reduce by one escalation step once the weight has been stable for a period; hold for eight to twelve weeks, which is long enough for the new exposure to reach steady state and for a trend to become visible; if the weight rises by more than a small threshold, return to the previous step. Some reduce again after a further stable interval; most do not go below the second step.
Two things recommend this approach and neither is evidence. It follows the pharmacokinetics, in that eight to twelve weeks is comfortably longer than the four to five weeks required to reach steady state at the new dose, so the observation is not being made on a still-changing exposure. And it is reversible, which a decision to stop is not in the same easy way.
The Journal reports this as description, not endorsement. It is not a dosing recommendation, no trial supports it, and the appropriate person to design a maintenance strategy is a clinician who knows the patient. We report it because a practice this widespread deserves to be described accurately rather than left to circulate in fragments.
For a drug eliminated with first-order kinetics, the accumulation ratio at steady state is approximately one divided by one minus the exponential of minus the elimination rate constant times the dosing interval. For a seven-day half-life given weekly, that yields a ratio of about two. Given fortnightly, the interval is two half-lives, the residual fraction at the next dose is a quarter, and the accumulation ratio falls to about one and a third.
Two consequences follow. Average concentration on a fortnightly schedule at the same nominal dose is roughly a third lower than weekly, not half, because accumulation differs. And the peak-to-trough ratio rises from modest to fourfold, so the exposure pattern is qualitatively different: the person spends part of each cycle at an exposure that would be sub-therapeutic on a weekly schedule and part at a higher peak.
What the arithmetic cannot tell you is whether that pattern is better, worse or equivalent for maintaining weight, because the relationship between exposure pattern and weight effect is not known — only the relationship between average exposure and weight effect at steady state. The modelling is solid and it answers a different question from the one people bring to it.
There is no withdrawal syndrome from these agents, no dependence, and no pharmacological reason to reduce gradually rather than to stop. A seven-day half-life produces its own taper: concentrations halve within a week and fall to a few per cent within a month regardless of intent. On the pharmacology alone, a planned taper accomplishes nothing that stopping does not.
The behavioural argument is different and better. Appetite returns over weeks. A person whose dose is reduced in steps experiences that return in stages, while continuing to have some pharmacological support, and has a window in which to establish eating patterns that will have to hold without the drug. A person who stops outright experiences the same return without that window. Whether the window produces better outcomes is an empirical question that has not been asked in a trial.
The Journal’s position is that the behavioural argument is worth making on its own terms and worth not dressing in pharmacological clothing. What a taper cannot do is prevent regain, since the withdrawal trials establish that ongoing exposure is what holds the weight. Presenting a taper as a way of stopping without regaining is a claim the evidence does not support in any form.
Exposure falls on a predictable schedule. A week after a final weekly injection roughly half the steady-state concentration remains; at two weeks a quarter; at four weeks a few per cent. Appetite returns along a curve that lags the concentration curve somewhat, and delayed gastric emptying resolves over a similar interval, so the sensation of early fullness that has been governing meal size for months disappears over about a month.
What people report, and the Journal reports it as report rather than as measurement, is that the appetite return is experienced as abrupt rather than gradual — as a threshold being crossed somewhere in the third or fourth week rather than as a smooth ramp. That is consistent with a non-linear relationship between receptor occupancy and the perceived effect, which is what the dose-response data would predict, and it is not consistent with the exposure curve alone.
Glycaemic parameters follow their own timescale. Fasting glucose responds within days to weeks; HbA1c, which reflects the preceding three months with the recent weeks weighted most heavily, will not show the full consequence of stopping for a full quarter. A panel drawn four weeks after cessation will understate the change, and this is a specific and common misreading. In the trial population with type 2 diabetes, where glycaemic control was a co-primary concern, the treatment effect on HbA1c was of the order of one and a half percentage points, which is the scale of what a cessation eventually undoes.5
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 receivedRestarting 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.
| Interval | Residual at next dose | Accumulation ratio | Peak-to-trough ratio |
|---|---|---|---|
| Weekly | 50% | 2.00 | ≈2.0 |
| Every 10 days | 37% | 1.59 | ≈2.7 |
| Fortnightly | 25% | 1.33 | ≈4.0 |
| Every three weeks | 12.5% | 1.14 | ≈8.0 |
| Every four weeks | 6.3% | 1.07 | ≈16 |
| First-order elimination, complete absorption, unchanged nominal dose. Illustrative arithmetic only: no interval other than weekly has been tested in a randomised trial and this is not a dosing schedule. | |||
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.
The Journal will keep pressing the maintenance question, because it is answerable, cheap to answer, and unanswered for reasons that are commercial rather than scientific. A dose-reduction trial in this class would cost a small fraction of a pivotal programme and would change the treatment of millions of people. Its absence is the single most conspicuous gap in the literature this department covers.
The evidence base is thin and the document says so, which is to its credit.
The gap between a defensible recommendation and a confident one is where most of the harm in this subject lives.
Real-world persistence figures, with their definitions stated, because the definitions are doing most of the work.
A design note rather than a result: what the comparator was, and what that permits you to conclude.
The evidence base is thin and the document says so, which is to its credit.
Three randomised withdrawal designs have tested what happens when treatment stops. Their results are consistent and they are consistently misreported.