• Title of article

    Simultaneous determination of olanzapine and fluoxetine hydrochloride in capsules by spectrophotometry, TLC-spectrodensitometry and HPLC

  • Author/Authors

    Tantawy, Mahmoud A. Cairo University - Faculty of Pharmacy - Analytical Chemistry Department, Egypt , Hassan, Nagiba Y. Cairo University - Faculty of Pharmacy - Analytical Chemistry Department, Egypt , Elragehy, Nariman A. Cairo University - Faculty of Pharmacy - Analytical Chemistry Department, Egypt , Abdelkawy, Mohamed Cairo University - Faculty of Pharmacy - Analytical Chemistry Department, Egypt

  • From page
    173
  • To page
    180
  • Abstract
    This paper describes sensitive, accurate and precise spectrophotometric, TLC-spectrodensitometric and high performance liquid chromatographic (HPLC) methods for simultaneous determination of olanzapine and fluoxetine HCl. Two spectrophotometric methods were developed, namely; first derivative (D^1) and derivative ratio (DD^1) methods. The TLC method employed aluminum TLC plates precoated with silica gel GF254 as the stationary phase and methanol: toluene:ammonia (7:3:0.1, by volume) as the mobile phase, where the chromatogram was scanned at 235 nm. The developed HPLC method used a reversed phase C18 column with isocratic elution. The mobile phase composed of phosphate buffer pH 4.0:acetonitrile:triethylamine (53:47:0.03, by volume) at flow rate of 1.0 mL min^-1. Quantitation was achieved with UV detection at 235 nm. The methods were validated according to the International Conference on Harmonization (ICH) guidelines. The selectivity of the proposed methods was tested using laboratory-prepared mixtures. The developed methods were successfully applied for the determination of olanzapine and fluoxetine HCl in bulk powder and combined capsule dosage form.
  • Keywords
    Spectrophotometry , TLC , spectrodensitometry , HPLC , Olanzapine , Fluoxetine HCl
  • Journal title
    Journal of Advanced Research
  • Journal title
    Journal of Advanced Research
  • Record number

    2589889