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Topic summary

Comparators chosen for regulatory reasons rather than clinical ones — one year on

This is a generated summary. It shows the 9 most-liked posts from a topic of 88, in their original order, with the accepted answer included where one exists. It is a reading aid and it will miss nuance — the full topic is the record.
SG
s.grahameTL2Member22 Mar 2025#1

Comparators chosen for regulatory reasons rather than clinical ones — one year on — setting out what I have, and where I think it stops being reliable.

Session topic: SURMOUNT-2 (Lancet, 2023). Please read it before posting; the discussion is much better when everyone has.

The question I would like us to start with is what the trial set out to estimate, rather than what it found. Once that is on the table we can talk about whether the design could have answered it, and only then about the numbers.

Specific things I would like covered: the population and how far it generalises, how discontinuation was handled, whether the comparator was a fair one, and what the absolute rather than relative effect looks like.

I will summarise at the end and the summary will feed the relevant digest page.

39 likes 16mo
YR
y.rahimiTL2 Moderator2 Apr 2025#5

Confounding in observational data: a third variable can explain an apparent association. In a randomised trial, randomisation balances unknown confounders. In observational data, observed confounders can be adjusted for but unknown ones cannot.

28 likes 16mo
MA
m.adeyemiTL2 Moderator Solution10 Apr 2025#9

Multiplicity and multiple comparisons: if a trial tests many hypotheses, the chance of a false positive on at least one by random chance increases. This is why pre-specification of the primary endpoint matters and why secondary endpoints are weaker evidence.

10 likes 16mo
K
KLindqvistTL4 Moderator3 May 2025#22

Thank you for the correction. I have edited my earlier post with a note rather than silently, so the thread still makes sense to read. The error was mine and it was the kind that comes from remembering a figure instead of looking it up.

32 likes 15mo
IT
integrator_traceTL2Member22 May 2025#35
a.ibarra, post #23: Worth separating two things that post #19 runs together. Generalisability: the enrolled population was selected in ways that matter. Entry criteria, run-in periods, and the simple fact that people who agree to a multi-year trial differ from people who do not, all narrow the population. That is how internal validity is bought, at the… Go to post

post #34 is right about the mechanism and I think understates the practical bit.

Open-label design: unblinded trials admit expectation effects. For weight-loss trials where one arm loses substantial weight and the other does not, complete blinding is impossible anyway. The unblinded nature is a limitation worth noting.

30 likes in reply to #23 14mo
AL
aliquot_lineTL3Regular30 May 2025#41
e.ferrari, post #28: post #27 answers the question as asked. The question underneath it is different. Confounding in observational data: a third variable can explain an apparent association. In a randomised trial, randomisation balances unknown confounders. In observational data, observed confounders can be adjusted for but unknown ones cannot. Go to post

Absolute numbers, not just relative: a 30% relative reduction tells you the ratio but not the practical magnitude. The event rate in each arm and the difference between them tells you how many people benefit.

32 likes in reply to #28 14mo
JL
j.lokkenTL2 Moderator11 Jun 2025#50
h.fonseca, post #34: Coming back to post #32, because the follow-up matters more than the original answer. Multiplicity and multiple comparisons: if a trial tests many hypotheses, the chance of a false positive on at least one by random chance increases. This is why pre-specification of the primary endpoint matters and why secondary endpoints are weaker… Go to post

post #49 answers the question as asked. The question underneath it is different.

Multiplicity and multiple comparisons: if a trial tests many hypotheses, the chance of a false positive on at least one by random chance increases. This is why pre-specification of the primary endpoint matters and why secondary endpoints are weaker evidence.

30 likes in reply to #34 14mo
BD
b.dumitruTL2 Moderator25 Jun 2025#61
a.weiss, post #27: On post #23 — agreed on the reasoning, with one qualification. Surrogate endpoints: an endpoint that is not the outcome that matters but is measured as a stand-in. HbA1c is a surrogate for long-term glucose control and the short-term complications it prevents. Weight loss is a surrogate for metabolic health and long-term outcomes.… Go to post

Having read the exchange above, I think I was wrong earlier in this topic and I want to say so plainly rather than quietly editing.

The correction was fair and I had been repeating something I had not checked carefully enough.

27 likes in reply to #27 13mo
SO
s.okaforTL2 Moderator12 Jul 2025#75

post #74 answers the question as asked. The question underneath it is different.

Multiplicity and multiple comparisons: if a trial tests many hypotheses, the chance of a false positive on at least one by random chance increases. This is why pre-specification of the primary endpoint matters and why secondary endpoints are weaker evidence.

28 likes 13mo

Read the full topic (88 posts)

Promoted into the documentation commons. The content of this topic is maintained at STEP 2 — trial digest, with named maintainers and a review date. The promotion was discussed in doc review. Corrections are best raised against the document, which is the version that gets kept current.

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