Developing and Optimizing A Validated Isocratic Reversed-Phase High Performance Liquid ‎Chromatography Separation of Nimodipine and Impurities in Tablets Using Experimental ‎Design Methodology

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Journal Title, Volume, Page: 
Journal of Pharmaceutical and Biomedical Analysis Volume 49, Issue 5, 12, Pages 1192–1202
Year of Publication: 
2009
Authors: 
Feras Imad Kanaze
Pharmathen S.A., Pharmaceutical Industry, Athens, Greece
Current Affiliation: 
Department of Pharmacy,Faculty of Medicine & Health Sciences, An-Najah National University, Nablus, Palestine
Panagiotis Barmpalexis
Department of Pharmacy and Drug Control, School of Pharmacy, Aristotle University of Thessaloniki, 541 24 Thessaloniki, Greece
Emanouil Georgarakis
Department of Pharmacy and Drug Control, School of Pharmacy, Aristotle University of Thessaloniki, 541 24 Thessaloniki, Greece
Preferred Abstract (Original): 

In the present study an isocratic reversed-phase high-performance liquid chromatography was investigated for the separation of nimodipine and impurities (A, B and C) using statistical experimental design. Initially, a full factorial design was used in order to screen five independent factors: type of the organic modifier – methanol or acetonitrile – and concentration, column temperature, mobile phase flow rate and pH. Except pH, the rest examined factors were identified as significant, using ANOVA analysis. The optimum conditions of separation (optimum values of significant factors) determined with the aid of central composite design were: (1) mobile phase: acetonitrile/H2O (67.5/32.5, v/v), (2) column temperature 40 °C and (3) mobile phase flow rate 0.9 ml/min. The proposed method showed good prediction ability (observed–predicted correlation). The analysis was found to be linear, specific, precise, sensitive and accurate. The method was also studied for robustness and intermediate precision using experimental design methodology. Three commercially available nimodipine tablets were analyzed showing good % recovery and %RSD. No traceable amounts of impurities were found in all products.

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