Kinetic spectrophotometric determination of certain cephalosporins in pharmaceutical formulations.

Int J Anal Chem

Analytical Chemistry Department, Faculty of Pharmacy, Minia University, 61519 Minia, Egypt.

Published: July 2011

AI Article Synopsis

  • A new kinetic spectrophotometric method was developed to measure eight cephalosporin antibiotics by tracking their oxidation with alkaline potassium permanganate.
  • The method involves measuring absorbance changes at 610 nm, using both initial rate and fixed time methods to create linear calibration graphs for drug concentration.
  • Validation studies confirm the method's accuracy and precision, demonstrating its effectiveness in analyzing cephalosporins in commercial medications.

Article Abstract

A simple, reliable, and sensitive kinetic spectrophotometric method was developed for determination of eight cephalosporin antibiotics, namely, Cefotaxime sodium, Cephapirin sodium, Cephradine dihydrate, Cephalexin monohydrate, Ceftazidime pentahydrate, Cefazoline sodium, Ceftriaxone sodium, and Cefuroxime sodium. The method depends on oxidation of each of studied drugs with alkaline potassium permanganate. The reaction is followed spectrophotometrically by measuring the rate of change of absorbance at 610 nm. The initial rate and fixed time (at 3 minutes) methods are utilized for construction of calibration graphs to determine the concentration of the studied drugs. The calibration graphs are linear in the concentration ranges 5-15 mug mL(-1) and 5-25 mug mL(-1) using the initial rate and fixed time methods, respectively. The results are validated statistically and checked through recovery studies. The method has been successfully applied for the determination of the studied cephalosporins in commercial dosage forms. Statistical comparisons of the results with the reference methods show the excellent agreement and indicate no significant difference in accuracy and precision.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2814136PMC
http://dx.doi.org/10.1155/2009/596379DOI Listing

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