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Laboratory quality

LC-MS

Liquid chromatography–mass spectrometry — how peptide identity is confirmed and what its typical CoA line actually verifies.

Last updated:
2026-07-22

Overview

Liquid Chromatography–Mass Spectrometry (LC-MS) couples an HPLC-style separation to a mass spectrometer that measures the mass-to-charge ratio of ionised molecules. For a peptide, the result is a mass spectrum that shows the peptide's molecular mass with high precision.

On a CoA, LC-MS is typically used for identity confirmation: the observed mass is compared to the theoretical mass calculated from the peptide's sequence.

Why it matters

LC-MS is what turns "we think this is peptide X" into "the mass observed is consistent with peptide X within measurement tolerance." It is the most direct laboratory answer to "is this actually the molecule the label says?"

Key concepts

  • Theoretical vs. observed mass

    The peptide's sequence determines a theoretical monoisotopic mass. LC-MS measures the observed mass. A well-drafted CoA reports both and shows that the two agree within instrumental tolerance.

  • Charge states

    Peptides are often observed as multiply charged ions ([M+H]+, [M+2H]2+, etc.). The mass spectrometer reports mass-to-charge; the analyst deconvolves to the true mass.

  • Sensitivity to structural changes

    Even small structural changes (deamidation, oxidation) shift the mass by a predictable amount and are often detectable on LC-MS.

Common misconceptions

  • "Correct mass" is not the same as "correct sequence." Two different amino-acid orderings with the same composition can have the same mass. For most therapeutic peptides that is not a real ambiguity, but for de novo identification it matters.
  • LC-MS does not quantify potency by itself. It reports what molecule is present, not how much biological activity it has.
  • LC-MS does not measure sterility or endotoxin.

Practical interpretation

When a CoA line reads "identity confirmed by LC-MS" with a specific observed mass, it is direct evidence that the molecule tested is the expected peptide. It is not evidence that every vial from the batch is what the label says; it is evidence about the specific sample the lab tested.

Limitations

Sample handling affects results. A CoA is only as good as the chain of custody between the batch and the tested sample.