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Topic summary

Aggregates and why a purity assay may miss them entirely

This is a generated summary. It shows the 9 most-liked posts from a topic of 70, 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.
ID
integrator_draftTL3Regular9 Dec 2025#2

Oxidation at methionine and tryptophan: adds 16 per oxygen. Usually elutes earlier. Oxidation is common in storage, especially if the solution is exposed to light or if antioxidants are not present.

27 likes 8mo
OO
orbitrap_olaTL3Mass spectrometrist16 Dec 2025#12

Truncation products: fragments from incomplete synthesis or from degradation. They elute quite differently from the intact peptide because they are much smaller and have different hydrophobicity. They are usually well separated.

23 likes 7mo
DO
dr_okonkwoTL4 Moderator19 Dec 2025 · edited#16

On post #12 — agreed on the reasoning, with one qualification.

Disulfide formation: if a peptide contains cysteine, it can form disulfide bonds with itself or with other molecules. Under oxidising conditions multiple species appear. Reducing conditions (like DTT) convert them back.

31 likes 7mo
JT
j.teixeiraTL2 Moderator23 Dec 2025#24

Oxidation at methionine and tryptophan: adds 16 per oxygen. Usually elutes earlier. Oxidation is common in storage, especially if the solution is exposed to light or if antioxidants are not present.

26 likes 7mo
SP
s.perrinTL2 Moderator27 Dec 2025#32

Truncation products: fragments from incomplete synthesis or from degradation. They elute quite differently from the intact peptide because they are much smaller and have different hydrophobicity. They are usually well separated.

28 likes 7mo
KB
k.brandl_deTL3Translator · DE30 Dec 2025#39

Picking up post #36: that is the part I would want checked first.

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.

27 likes 7mo
MA
m.adebayoTL2 Moderator1 Jan 2026 · edited#43

Residual solvents: traces of solvents used in purification. These are usually tested by gas chromatography, not by HPLC. A specification for residual solvents should be stated separately from the purity.

33 likes 7mo
TT
taper_tableTL3Regular4 Jan 2026#48
dr_okonkwo, post #16: On post #12 — agreed on the reasoning, with one qualification. Disulfide formation: if a peptide contains cysteine, it can form disulfide bonds with itself or with other molecules. Under oxidising conditions multiple species appear. Reducing conditions (like DTT) convert them back. Go to post

Related substances: compounds chemically related to the target peptide but not the target peptide itself. The standard method separates them and reports them as area percent. How related they can be before they exceed specification is a regulatory question.

23 likes in reply to #16 7mo
MS
m.steinerTL2 Moderator8 Jan 2026#59

post #58 answers the question as asked. The question underneath it is different.

Deletion sequences (incomplete coupling during synthesis): lower in mass by one residue. Chromatographically they usually elute earlier or later depending on the residue's hydrophobicity. They are the most common impurity in solid-phase synthesis.

24 likes 7mo

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