Carbon Nanotube Modified Glassy Carbon Electrodes for on‐line and off‐line in vitro Therapeutic Equivalence Assessment of Paracetamol Tablets

Author:

Cumsille‐Escandar Sebastián12ORCID,Yáñez Claudia2,Álvarez‐Lueje Alejandro1

Affiliation:

1. Laboratorio de Análisis de Fármacos, Departamento de Química Farmacológica y Toxicológica, Facultad de Ciencias Químicas y Farmacéuticas Universidad de Chile 8380492 Santiago Chile

2. Centro de Investigación de Procesos Redox (CiPRex), Facultad de Ciencias Químicas y Farmacéuticas Universidad de Chile 8380492 Santiago Chile

Abstract

AbstractIn vitro bioequivalence assessment of paracetamol tablets was carried out by differential pulse voltammetry (DPV) and amperometry using a multiwalled carbon nanotube modified glassy carbon electrode (GCE/MWCNT). For the DPV developed method, samples were collected from the USP paddle apparatus, while amperometric measurements were carried out in situ. The DPV method was validated in three supporting electrolytes (per in vitro bioequivalence guidelines) by measuring the recovery from standard solutions and paracetamol tablet solutions, while precision was evaluated through the RSD (n=6). In HCl pH 1.2 solution the LOD and LOQ were 48 nM and 160 nM, respectively and the linear range was between 0.18–2.2 μM. In acetate buffer pH 4.5 the LOD and LOQ were 15 nM and 51 nM, respectively and the linear range was between 88 nM–880 nM. And in phosphate buffer pH 6.8 the LOD and LOQ were 4.6 nM and 15 nM, respectively and the linear range was between 88 nM–880 nM. Recovery values were between 95 and 105 % and precision values were less than 5 %. Results showed that both methods were effectively applied for the analysis of samples.

Publisher

Wiley

Reference53 articles.

1. Paracetamol

2. “21 CFR 314.3 – Definitions. ” can be found underhttps://www.ecfr.gov/current/title-21/part-314/section-314.3n.d.

3. Inc. United States pharmacopeial Convention The United States Pharmacopeia. The National Formulary Rockville Md1979.

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