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What fraction of loss on semaglutide is lean mass according to STEP 4?

Asked 5 Jul 2026Modified 1 min agoViewed 4.5k times
22

The specifics, since they change the answer: semaglutide · STEP 4.

I have the document in front of me and I can read the numbers. What I cannot do is interpret them.

I am reasonably comfortable with statistics and completely uncomfortable with chromatography, or vice versa.

What is the correct interpretation, and what is the common misreading?

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askedimani_dube8.9k155 Jul 2026

5 Answers

Accepted answer first, then by votes
26

Accepted answer

Take the STEP 4 body-composition substudy, not the main paper, and note how few participants were in it. Composition substudies are typically a small imaged subset of the full randomisation, so the lean-mass fraction carries a confidence interval far wider than the weight figures beside it. Then check the method: DEXA reports lean soft tissue, which includes water, and a large early fluid shift is counted as lean loss whether or not any protein left. The fraction most of these programmes land near is around a quarter of total loss, which is also roughly what caloric restriction alone produces — the interesting question is not the fraction but whether it differs from the deficit-matched control.

Answer first: lean mass falls during any substantial weight loss, typically as twenty to thirty per cent of the total, and the levers that change that fraction are protein intake and resistance training rather than anything pharmacological.

The conventional figure is that lean tissue accounts for roughly a quarter of total weight lost in unstructured weight loss, falling towards ten to fifteen per cent with adequate protein and progressive resistance training, and rising above a third with very rapid loss and no training stimulus.

Glycogen depletion in the first fortnight releases the water bound to it — roughly three grams of water per gram of glycogen — which shows up as several kilograms of "lean mass" lost before any tissue has gone anywhere.

Glycogen's water-binding ratio of roughly three to one is basic physiology and explains most early rapid weight change in any deficit.

Comparing scans from different machines is not a comparison. Different manufacturers use different algorithms.

Track absolute lean mass, not lean percentage, or the arithmetic will mislead you.

edited 22 Jul 2026 by Dr_Yusuf_Adeyemi — fixed an arithmetic slip in the third paragraph

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answered · acceptedDr_Yusuf_Adeyemi54k14718 Jul 2026
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20

Answering this needs the rate of loss, because faster loss reliably costs a larger lean fraction.

Scan-to-scan precision on lean mass is around one to two per cent for a good DXA under standardised conditions, so a change of half a kilogram is inside the noise.

Mechanically, because appetite is suppressed in this class, protein intake tends to fall in absolute terms even when it rises as a percentage of a smaller intake. That is the specific mechanism by which lean loss gets worse here.

Trials in this class that measured body composition report lean fractions broadly consistent with other weight-loss interventions of similar magnitude.

A quarter is typical. Below a fifth is a good outcome. Above a third means slow down.

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AB
answeredassay_blank45k3819 Jul 2026
9

The relevant confounder is glycogen: each gram of stored glycogen carries about three grams of water, and both register as lean mass.

A deficit of five hundred to seven hundred and fifty kilocalories per day is the range within which lean preservation is generally achievable. Larger deficits work faster and cost more lean tissue per kilogram lost.

To be exact about it, bone mineral density is measured on the same scan and falls slowly with weight loss; it is worth tracking on the same series rather than as a separate exercise.

Nothing here is medical or dietetic advice, and anyone with kidney disease has a protein question that needs a clinician.

Protein and progressive resistance training. Those are the two levers; everything else is a detail.

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SL
answeredsian_llewellyn65k14717 Jul 2026
8

Start with what "lean mass" means on your report, because it is fat-free mass including water, glycogen and organ tissue — not muscle protein.

A daily protein intake in the range of 1.6 to 2.4 grams per kilogram of reference body weight is the range the resistance-training literature supports for lean-mass preservation in a deficit. At the top of that range the marginal return is small.

The twenty-five per cent figure for lean loss in unstructured weight reduction is a long-standing result from body-composition studies across many interventions, including surgery.

Do not read the first fortnight as tissue loss. It is mostly glycogen and its water.

edited 9 Aug 2026 by ayo_fadipe — reworded for clarity after a comment

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AF
answeredayo_fadipe9.4k1615 Jul 2026
3Confirming that maintaining load rather than adding it is the realistic goal in a deficit. – jo_vandeberg 4 months ago
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8

Preserving lean mass and gaining it are different objectives with different requirements, and in an energy deficit only the first is realistic for most people.

Resistance training two to four times weekly with progressive load is the intervention with the strongest evidence for reducing the lean fraction of loss. Cardiovascular exercise does not substitute for it on this endpoint.

Protein intakes in the 1.6 to 2.2 g/kg range are supported by meta-analyses of resistance-training studies for lean-mass retention in energy deficit.

Same machine, same time of day, same hydration state, or the series is noise.

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GA
answeredgrainne_ahearn50k3816 Jul 2026
3The point about protein being hardest to eat exactly when it matters most is well made. – RP_C18 3 months ago
2Adding a vote because this deserves more of them. – tare_weight 43 days ago
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