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Spectophotometric methods for determination of cefdinir in pharmaceutical formulations via derivatization with 1,2-naphthoquinone-4-sulfonate and 4-chloro-7-nitrobenzo-2-oxa-1, 3-diazole
Faculty
Science
Year:
2012
Type of Publication:
Article
Pages:
991-1000
Authors:
Hashem, Hisham, Gouda, Ayman A, Hassan, Wafaa
DOI:
10.1002/dta.280
Journal:
DRUG TESTING AND ANALYSIS WILEY-BLACKWELL
Volume:
4
Research Area:
Biochemistry \& Molecular Biology; Chemistry; Pharmacology \& Pharmacy
ISSN
ISI:000312546600014
Keywords :
spectrophotometry, cefdinir, NQS, NBD-Cl, pharmaceutical formulations
Abstract:
Two new simple, sensitive, accurate, and precise spectrophotometric methods have been developed and validated for the determination of cefdinir (CFD) in bulk drug and in its pharmaceutical formulations. The first method was based on the reaction of CFD with 1, 2- napthaquinone-4- sulfonic acid sodium (NQS) in an alkaline medium (pH 11) to form an orange-coloured product that was measured at 490 nm. The second method depends on hydrolysis of CFD using 0.5 M NaOH at 100 degrees C and subsequent reaction of the formed sulfide ions with 4-chloro-7-nitrobenzo-2-oxa-1,3-diazole (NBD-Cl) to form a yellow-coloured chromogen measured at 390 nm. Different variables affecting the reactions of CFD with both NQS and NBD-Cl (e.g. NaOH concentration, hydrolysis time, NQS or NBD-Cl concentration and diluting solvent) were studied and optimized. Under optimum conditions, good linear relationships with good correlation coefficients (0.99900.9999) were found in the range of 1080 and 5.030 mu g ml-1 for NQS and NBD-Cl, respectively. The limits of assay detection and quantitation ranged from 1.097 and 0.280 and 3.656 and 0.934 mu g ml-1 for NQS and NBD-Cl, respectively. The accuracy and precision of the proposed methods were satisfactory. The proposed method is simple, rapid, precise and convenient and was successfully applied for analysis of CFD in its pharmaceutical formulations and the recovery percentages ranged from 99.25 to 100.20\%. Copyright (c) 2011 John Wiley \& Sons, Ltd.
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