Highly sensitive determination of α-lipoic acid in pharmaceuticals on a boron-doped diamond electrode

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Abstract

A simple, highly sensitive, and selective differential pulse voltammetry method for the determination of α-lipoic acid (LA) in pharmaceutical preparations was developed and validated. The method is based on a quasi-reversible, diffusion-controlled, one-electron anodic oxidation of LA on a boron-doped diamond electrode (BDDE) in a McIlvaine (citrate-phosphate, C-PB) buffer solution at pH 3.0. For the first time, this environment was used for LA determination. A linear calibration curve was obtained within the concentration range 5.82 × 10-8 to 4.00 × 10-4 mol L-1 with a correlation coefficient of 0.9999. The limits of detection was estimated to be 1.94 × 10-8 mol L-1, which is one of the lowest values characteristic of voltammetric and chromatographic methods of LA determination. The proposed procedure is sensitive, accurate, and precise. Its utility was demonstrated in the determination of LA in pharmaceuticals without the need for its separation from the matrices. The results were comparable to those obtained by high performance liquid chromatography reference method and were in good accordance with the once declared by manufacturers. Thus, our method can be considered as an alternative to the dominant chromatographic determinations of α-LA in real samples.

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Skorupa, A., Michalkiewicz, S., & Jakubczyk, M. (2021). Highly sensitive determination of α-lipoic acid in pharmaceuticals on a boron-doped diamond electrode. Open Chemistry, 19(1), 843–854. https://doi.org/10.1515/chem-2021-0075

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