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Updated: Aug 21, 2026

Using Capillary Electrophoresis to Quantify Organic Acids from Plant Tissue: A Test Case Examining Coffea arabica Seeds
Published on: November 12, 2016
Novel Analytical Workflow for Tracing Synthetic Caffeine Adulteration in Amazonian Guaraná (Paullinia cupana) Using
Jelmir Craveiro de Andrade1,2, Pedro Lucas Caetano de Oliveira1,2, Maxsueli Machado1,2,3
1Center for Food Analysis (NAL), Technological Development Support Laboratory (LADETEC), Federal University of Rio de Janeiro (UFRJ), Cidade Universitária, Rio de Janeiro21941-598, RJ, Brazil.
Abstract:
Maués guaraná (Paullinia cupana), a Brazilian product with Geographical Indication (GI), is highly susceptible to economically motivated fraud, particularly through the undeclared addition of synthetic caffeine. Conventional chromatographic methods for authenticity control are time-consuming, costly, and rely on hazardous chemicals. This study presents a comparatively streamlined, solvent-efficient, and environmentally friendly approach based on low-field 1H NMR spectroscopy coupled with chemometrics, eliminating the need for deuterated solvents. Using authentic (n = 40), commercial (n = 18), and adulterated samples (1-10% synthetic caffeine), the data-driven soft independent modeling of the class analogy (DD-SIMCA) model achieved 100% sensitivity and over 99% accuracy for authentication. Simultaneously, a PLS regression model accurately quantified adulteration levels, showing high predictive performance (Rpred2 = 0.9891; RMSEP = 0.36%) and low detection limits. This orthogonal workflow successfully distinguished natural agro-industrial variability from intentional adulteration, demonstrating the potential of a practical, affordable, and sustainable first-line screening approach for future regulatory application.
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