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The Design of a Quantitative Western Blot Experiment

BioMed Research International · 2014 · Vol. 2014 · pp. 1–8
Sean C. TaylorAnton Posch

Abstract

Western blotting is a technique that has been in practice for more than three decades that began as a means of detecting a protein target in a complex sample. Although there have been significant advances in both the imaging and reagent technologies to improve sensitivity, dynamic range of detection, and the applicability of multiplexed target detection, the basic technique has remained essentially unchanged. In the past, western blotting was used simply to detect a specific target protein in a complex mixture, but now journal editors and reviewers are requesting the quantitative interpretation of western blot data in terms of fold changes in protein expression between samples. The calculations are based on the differential densitometry of the associated chemiluminescent and/or fluorescent signals from the blots and this now requires a fundamental shift in the experimental methodology, acquisition, and interpretation of the data. We have recently published an updated approach to produce quantitative densitometric data from western blots (Taylor et al., 2013) and here we summarize the complete western blot workflow with a focus on sample preparation and data analysis for quantitative western blotting.

Advanced Proteomics Techniques and ApplicationsMolecular Biology Techniques and ApplicationsEnzyme Structure and FunctionBlotWestern blotQuantitative analysis (chemistry)BiologyChemistryBiochemistryChromatography

MeSH terms

DensitometryLuminescent MeasurementsProteinsStatistics as TopicBlotting, Western
Citations
396
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9.20
field-weighted impact
References
24
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99%
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Citations per year
References
Quantifying Western blots: Pitfalls of densitometry
Electrophoresis · 2009 · 429 citations
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