Module 01 · Foundations
What does “validated antibody” actually mean?
Build the vocabulary needed to judge antibody evidence without confusing binding, specificity, sensitivity and fitness-for-purpose.
- Distinguish specificity, selectivity, sensitivity, affinity and reproducibility.
- Explain why validation is application- and context-specific.
- Recognise the five IWGAV validation strategies and the scope of YCharOS characterisation.
Validation is a defined claim
An antibody can bind its intended target and still be unsuitable for a particular experiment. Experimental processing changes the antigen: SDS-PAGE can denature proteins; fixation can cross-link epitopes; detergents can alter membrane proteins; immunoprecipitation requires an accessible native epitope. A robust validation claim therefore specifies the antibody, application, biological material, species, sample preparation and controls.
One antibody. Different molecular contexts.
Evidence in one assay should not be silently transferred to another. A WB-validated antibody is evidence for WB under the tested conditions, not automatic evidence for IF, IHC, IP, flow or ELISA.
The five IWGAV validation strategies
Compare signal in target-present material with knockout, knockdown or other genetic loss of target.
Compare antibody signal with target abundance measured by a method that does not depend on that antibody.
Use a second antibody recognising a different epitope and look for concordant biological patterns.
Compare antibody detection with a genetically introduced tag when appropriate, while recognising overexpression and tagging artefacts.
Identify captured proteins by mass spectrometry to test what the antibody actually enriches.
YCharOS standardises comparative antibody characterisation using isogenic knockout controls in Western blot, immunoprecipitation and immunofluorescence. It should not be presented as a direct protocol for IHC, flow cytometry or ELISA.
A supplier shows a clean Western blot with a target-sized band. What can you conclude?