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A novel automated electrochemical ascorbic acid assay in the 24-well microtiter plate format
Authors:Intarakamhang Sireerat  Leson Christian  Schuhmann Wolfgang  Schulte Albert
Institution:aBiochemistry–Electrochemistry Research Unit, School of Chemistry and Biochemistry, Institute of Science, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand;bAnalytische Chemie–Elektroanalytik & Sensorik, Ruhr-University Bochum, D-44780 Bochum, Germany
Abstract:Automatic ascorbic acid (AA) voltammetry was established in 24-well microtiter plates. The assay used a movable assembly of a pencil rod working, an Ag/AgCl reference and a Pt counter electrode with differential pulse voltammetry (DPV) for concentration-dependent current generation. A computer was in command of electrode (z) and microtiter plate (x, y) positioning and timed potentiostat operation. Synchronization of these actions supported sequential approach of all wells and subsequent execution of electrode treatment procedures or AA voltammetry at defined intervals in a measuring cycle. DPV in well solutions offered a linear current/concentration range between 0.1 and 8.0 mM, a sensitivity of about 1 μA mM−1 AA, and a detection limit of 50 μM. When used with a calibration curve or standard addition, automated voltammetry of samples with added known amounts of AA demonstrated good recovery rates. Also, the assay achieved the accurate determination of the AA content of vitamin C tablets, a fruit juice and an herbal tea extract. Robotic AA voltammetry has the advantage of conveniently handling multiple samples in a single measuring run without the continuous attention of laboratory personnel. It is a good option when the goal is cost-effective AA screening of sample libraries and has potential for applications in health care and the food processing, cosmetic and pharmaceutical industries.
Keywords:Robotic electrochemistry  Electroanalysis  Voltammetry  Ascorbic acid  Vitamin C  Microtiter plates
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