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Published on: April 23, 2019
Validated stability indicating reverse phase liquid chromatography method for oxcarbazepine and its degradation
1Department of Applied Pharmaceutical Sciences and Clinical Pharmacy, Faculty of Pharmacy, Isra University, P.O. Box 22, Amman, 11622, Jordan. aktham.mestareehi@med.wayne.edu.
Abstract:
Oxcarbazepine is a widely prescribed anticonvulsant used in the management of epilepsy through modulation of abnormal neuronal excitability. The objective of the present study was to synthesize oxcarbazepine in the laboratory and develop a reliable, stability-indicating, and environmentally conscious reverse-phase high-performance liquid chromatography (RP-HPLC) method for its quality assessment, including the quantification of impurities and degradation products. Oxcarbazepine was synthesized and characterized using infrared spectroscopy (IR), nuclear magnetic resonance (NMR), and high-performance liquid chromatography (HPLC) techniques. Chromatographic separation was achieved using a Supelco Discovery C18 column (4.6 × 250 mm, 5 µm) with a mobile phase consisting of 75% potassium phosphate monobasic buffer (pH 5.0) and 25% acetonitrile at a flow rate of 1.0 mL/min. Detection was performed at 257 nm, and oxcarbazepine exhibited a retention time of approximately 11 min. The developed RP-HPLC method was validated according to ICH, USP, and FDA guidelines. Forced degradation studies were conducted under acidic, basic, oxidative, thermal, and photolytic conditions to evaluate the stability-indicating capability of the method. In addition, the environmental impact of the analytical procedure was assessed using Green Analytical Chemistry (GAC) metrics, including the Analytical Eco-Scale, GAPI, and AGREE tools. The developed method demonstrated excellent specificity, linearity, accuracy, precision, robustness, and sensitivity. All degradation products were well resolved from the parent oxcarbazepine peak, confirming the stability-indicating nature of the method. Excellent linearity was observed over the concentration range of 0.24-2000 ppm with a correlation coefficient (R2) of 0.9995. Accuracy values ranged from 99.4% to 101.5%, while the limit of detection (LOD) and limit of quantification (LOQ) were 0.3 ppm and 0.9 ppm, respectively, indicating high sensitivity suitable for trace-level analysis. Robustness studies confirmed the reliability of the method under deliberate variations in chromatographic conditions. Furthermore, greenness assessment revealed an Analytical Eco-Scale score of approximately 75, a GAPI pictogram with predominantly green and yellow zones, and an AGREE score of 0.57/1.0, indicating moderate environmental friendliness. Overall, the validated RP-HPLC method provides a reliable, precise, sensitive, stability-indicating, and environmentally conscious analytical approach for routine quality control, impurity profiling, and stability studies of oxcarbazepine in raw materials and pharmaceutical formulations.
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