A porous graphitized carbon column hplc method for the quantification of paracetamol, pseudoephedrine, and chlorpheniramine in a pharmaceutical formulation

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Abstract

A simple, rapid, and stability-indicating HPLC method has been developed, fully validated, and applied to the quantification of paracetamol, pseudoephedrine hydrochloride, and chlorpheniramine maleate in a pharmaceutical formulation, using hydrochlorothiazide as an internal standard. Chromatographic separation was achieved isocratically on an RP porous graphitized carbon analytical column (125 × 2.1 mm id, particle size 5 μm) using 5.0 mM ammonium acetate-acetonitrile (35 + 65, v/v) mobile phase at a flow rate of 0.50 mL/min. UV spectrophotometric detection at 220 nm was used. The method had linear calibration curves over the range of 30-70 mg/mL for paracetamol, 1.8-4.2 mg/mL for pseudoephedrine hydrochloride, and 120-280 ng/mL for chlorpheniramine maleate. The intraday and interday RSD values were less than 3.2% for all compounds, while the relative error was less than 2.9%. Accelerated stability studies performed under various stress conditions proved the selectivity of the method. The developed method was applied successfully to QC and content uniformity tests of commercial tablets.

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Kalogria, E., Koupparis, M., & Panderi, I. (2010). A porous graphitized carbon column hplc method for the quantification of paracetamol, pseudoephedrine, and chlorpheniramine in a pharmaceutical formulation. Journal of AOAC International, 93(4), 1093–1101. https://doi.org/10.1093/jaoac/93.4.1093

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