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Is a 97.9% result from Janoshik comparable to 97.6% from PeptideMeter?

Asked 7 Jul 2026Modified 1 min agoViewed 6.6k times
12

What I have: 97.9% · Janoshik · 97.6% · PeptideMeter.

I have used one of these for a while and I am considering switching, which requires a reason.

What I care about is reproducibility, because a result I cannot repeat is not useful to me.

So which one, and on what grounds?

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TM
askedtwo_two_micron9.3k167 Jul 2026

5 Answers

Accepted answer first, then by votes
23

Accepted answer

97.9 and 97.6 are 0.3 percentage points apart, which sounds small until you restate it as impurity. Janoshik is leaving 2.1 per cent of the detected area unassigned and PeptideMeter 2.4 per cent — a factor of 1.14 between them. The impurity fraction is the quantity that moves when a method changes, and it is the one worth arguing about; the headline is just its complement. Comparable means same column chemistry, same gradient slope, same detection wavelength, same integration convention. Until you have those four from both laboratories, 97.9 and 97.6 are two measurements of slightly different quantities that happen to share a unit.

Understanding purity requires separating the chemistry from the method from the reporting convention, and the three are not independent.

Gradient slope controls resolution, and gentler slopes resolve co-eluting impurities into separate peaks — so the better method reports the worse purity number.

Reconciling gross mass to label claim

ComponentTypical shareCounted in purity?Counted in content?
Target peptide88–94 %Yes, as main peakYes
Related impurities1–3 %Yes, as other peaksNo
Counter-ion (TFA or acetate)2–8 %NoNo
Residual water2–6 %NoNo
Bulking agent, if present0–40 %NoNo

Mobile phase additive choice affects ionisation and peak shape — TFA gives sharp peaks but suppresses mass spectrometry signal, formic acid gives worse peaks but preserves signal.

Published side-by-side method comparisons show that a two-point difference in purity on the same vial is easily explained by method choice alone.

The practical summary: ask for the chromatogram and the method, and ignore the headline number until you have both.

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M4
answered · acceptedmz_4113101k35822 Jul 2026
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HPLC purity, identity confirmation and quantified content on the vial you actually hold. Reports arrive with the chromatogram attached, not just a number.

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8

Gradient slope is the most powerful parameter and almost nobody mentions it, which is why two reports on the same material disagree by a point.

Sample solvent strength affects peak shape — if you inject in strong solvent on a gradient starting in weak solvent, the solvent peak can distort your main peak or create a false shoulder.

Retention time is sequence-specific and method-specific, so comparing your result to a supplier value using a different method is meaningless without method documentation.

The ICH Q3A impurity thresholds and the relevant pharmacopoeial chapters all specify method validation requirements that almost no research-grade certificate claims to meet.

If you are ranking vendors, specify a method and have all samples tested at the same place.

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KA
answeredkwn_analytical147k3589 Jul 2026
7

Read the chromatogram before you read the number, because the number without the trace is not a measurement, it is a claim.

Tailing factor measures peak shape, and a badly tailing peak spreads into the region where small impurities live, forcing tangent-skim integration that assigns tail area to the main peak.

Mass on column affects detector linearity and peak overlap — overloading broadens peaks and hides neighbours, while underloading improves resolution but loses sensitivity.

Inter-laboratory studies on identical peptide material routinely find half-a-per-cent to a full-per-cent spreads in reported purity on the same sample.

Compare purity within a single laboratory on the same method, never across laboratories.

edited 20 Aug 2026 by gradient_slope — added the placebo-arm figures

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GS
answeredgradient_slope46k3825 Jul 2026
4The system-suitability data is the part that tells you whether to believe the rest. – laminar_bench 21 days ago
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6

Reporting threshold is convention and not chemistry, which is why two certificates with different thresholds disagree by a tenth of a point or more.

Column pore size affects mass transfer — a 100 Angstrom packing on a 5 kDa peptide restricts diffusion, broadening the peak and potentially hiding small impurities in the shoulders.

The caveat is that purity without identity is only half an answer — a high purity does not mean the peak is actually what you think it is.

If you only pay for one test, pay for quantified content. Purity is the number everyone quotes and content is the number that changes what you do.

edited 19 Jul 2026 by nkem_obiora — fixed an arithmetic slip in the third paragraph

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NO
answerednkem_obiora39k3812 Jul 2026
7Confirming from the other direction: I ignored the method section once and paid for it. – aine_mulcahy 6 months ago
6I would gently push back on the second point — inter-laboratory spread is wider than stated. – Dr_Rosalind_Achebe 4 months ago
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3

Mechanically, the method matters more than the vial, which is why specifying a method buys you far more than changing suppliers does.

The fraction of your main peak that is actually your target versus isomers, fragments or related sequences is invisible without complementary identity testing.

I would be careful about over-reading a single measurement — treat it as a data point, not as ground truth.

In practice: ask for the chromatogram, check the method section, check the lot number against the vial, and set your accept threshold before you see the result rather than after.

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SK
answereds_kalniete57k3829 Jul 2026

Your answer

Ask PeptideStack is a static archive. Posting is closed, but the norms are worth stating: answer the question that was asked, show your working, cite the trial or the certificate, and say plainly where the evidence runs out.

Not medical advice. Research-use-only compounds are not approved for human use.