Why your laboratory interval differs from the one in the textbook
Two sources of noise sit under every number: how reproducible the assay is, and how much the analyte varies within the same person on the same day.
TheCompound Journal
Reporting on incretins, compounding & the peptide supply chain
Titration
We work the arithmetic out in full, because it is arithmetic and it is short.
The interval between escalation steps in this class is almost always four weeks, and the reason is arithmetic rather than clinical. A drug eliminated with a seven-day half-life reaches about ninety-four per cent of its steady-state concentration after four half-lives and about ninety-seven per cent after five. Four weeks is therefore approximately the period after which a given dose has stopped becoming stronger on its own. Escalate before that and the person absorbs two increases at once: the one written on the pen and the one still arriving from the previous rung.
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
The elimination rate constant of a drug is 0.693 divided by its half-life. Fractional approach to steady state after time t is 1 minus e to the power of minus k times t. For a seven-day half-life this yields about seventy-five per cent of steady state at two weeks, eighty-eight per cent at three, ninety-four per cent at four and ninety-seven per cent at five.
Four weeks is therefore the point at which a once-weekly dose has essentially finished getting stronger. Escalate at two weeks and the person receives the increment written on the pen plus roughly a further quarter of the previous rung still accumulating underneath it. That is not dangerous in any dramatic sense, but it does mean the symptom burden attributed to the new dose is partly the tail of the old one, and it makes the escalation harder to interpret.
For tirzepatide, with a half-life closer to five days, four weeks corresponds to more than five half-lives and the previous rung is fully settled. The same interval is therefore slightly conservative for one molecule and exactly adequate for the other, which is a small illustration of how a shared convention can be right for different reasons.2
A month without the drug is not a pause. It is a fresh escalation at a rung you have not occupied for four weeks.
On re-titrationA dose increase should be described as a ratio, because receptor occupancy and the exposure-response relationship are governed by proportional change rather than by absolute milligrams. On the semaglutide weight-management ladder the ratios are 2.00, 2.00, 1.70 and 1.41. On the tirzepatide ladder they are 2.00, 1.50, 1.33, 1.25 and 1.20.
Two consequences follow. The first is that the early rungs are the hard ones, in both ladders, and the widespread expectation that titration gets progressively more difficult is backwards. The second is that a person who has tolerated the doubling at the bottom of the ladder has already survived the largest proportional insult the schedule contains.
There is a third, less obvious consequence for anyone dosing from a multi-dose vial rather than a fixed pen. Fixed-pen users move in the ratios above. Vial users can move in any ratio they like, including ratios small enough to be pharmacologically meaningless and large enough to be foolish. Freedom of increment is the single largest practical difference between pen and vial administration, and the arithmetic is the only guardrail.
After an interruption the pharmacokinetic reasoning is straightforward: several half-lives without a dose and the exposure has gone. Resuming where one left off is resuming without the accommodation that produced the tolerance in the first place.
| Weeks without a dose | Residual fraction | Practical reading |
|---|---|---|
| 1 | ≈50% | Perturbation; label window generally applies |
| 2 | ≈25% | Resumption at previous rung usually uneventful |
| 3 | ≈13% | Consider stepping back one rung |
| 4 | ≈6% | Treat as a restart |
| 6 | <2% | Full re-titration |
| 8 | <1% | Full re-titration |
| First-order elimination model, illustrative only. Assumes steady state at the point of interruption and a seven-day half-life; shorter-half-life molecules clear faster. | ||
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
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.
Weight trajectories in the published trials flatten well before the studies end. Expectations set on the early gradient are set on a section of a curve that does not continue, and a plateau at a modest dose is a result rather than an incomplete titration.
First, the optimal escalation interval. No adequately powered randomised comparison of intervals at a fixed target dose exists for any molecule in this class.
Second, the optimal hold duration for a person who has not adapted at four weeks. Practice ranges from four to twelve weeks on no comparative evidence at all.
Third, the lowest maintenance dose that preserves a result. The withdrawal trials compared full dose with nothing.
Fourth, whether tolerability at one rung predicts tolerability at the next. Clinicians assume it does, plausibly, and the published dose-ranging data is not analysed in a way that answers the question.
Fifth, whether any measurable baseline characteristic predicts the ceiling. Nothing published does so usefully, which mirrors the situation for efficacy: mean behaviour in this class is well characterised and individual variation is not.4
The Journal lists these not as a complaint about researchers but as a map of where confident advice is currently outrunning its evidence. Anyone offering a precise answer to any of the five is offering an opinion, and should be read as doing so.
The Journal ends where the evidence does. Escalation intervals in this class rest on a kinetic argument that is sound and on a randomised comparison that does not exist. Dose holding rests on a documented adaptation and on clinical consensus. Maintenance rests on two withdrawal trials that answered a narrower question than the one readers ask. None of that makes the current practice wrong; it makes it provisional, and provisional practice deserves to be described as such rather than printed as a table.
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.
Interval and half-life are related by arithmetic that is published for each compound in this class, and the discussion proceeds mostly without it. The accumulation ratio for a given interval is calculable and rarely calculated.
— N. Halstead, Blackburn
The arithmetic is straightforward and it settles several arguments that are currently conducted on intuition. We have put a worked example in the reference desk.
A step from one dose to the next is a proportional change and the proportion shrinks as the doses rise. Doubling early in a schedule is a much larger relative change than the same absolute increment later, and tolerability tracks the proportion rather than the milligrams.
— C. Pettersson, Örebro
Two sources of noise sit under every number: how reproducible the assay is, and how much the analyte varies within the same person on the same day.
The dose-response curve in this class flattens near its top. That has direct consequences for whether the final rung is worth climbing.
Nausea and gastric delay attenuate over weeks at an unchanged dose. That single physiological fact is the entire justification for holding.
The four-week step exists because four to five weeks is approximately how long a once-weekly drug takes to stop rising at a fixed dose. That is a good reason, and it is not…
A plateau at an intermediate dose and a plateau at the maximum dose look identical from the outside and mean different things.
Head-to-head data exists for some of these comparisons and not for others. This piece says which.