Biomedical Chromatography, volume 36, issue 7

Stability‐indicating HPLC method development and validation for simultaneous estimation of metformin, dapagliflozin, and saxagliptin in bulk drug and pharmaceutical dosage form

Krishna Rao Vankalapati 1
Pallavi Alegete 1
Sathyanarayana Boodida 1
1
 
Department of Chemistry JNTUH University College of Engineering Jagtial Jagtial India
Publication typeJournal Article
Publication date2022-04-29
scimago Q3
SJR0.384
CiteScore3.6
Impact factor1.8
ISSN02693879, 10990801
PubMed ID:  35434817
Drug Discovery
Biochemistry
Molecular Biology
General Medicine
Pharmacology
Clinical Biochemistry
Analytical Chemistry
Abstract
A simple, precise, and rapid stability-indicating reversed-phase-HPLC method was developed and validated for the estimation of metformin (MET), dapagliflozin (DAP), and saxagliptin (SAX) combination in bulk and tablet dosage forms. The proposed method uses a Kromasil C18 column (150 × 4.6 mm, 5 μm) with column oven temperature of 30°C and mobile phase containing a mixture of 60% phosphate buffer (pH = 3) and 40% acetonitrile. The flow rate was set at 1.0 mL/min, and the injection volume was 10 μL. The detection was carried out at 230 nm using a photodiode array detector, and the total run time was 4 min. The proposed method was validated according to International Council for Harmonisation (ICH) guidelines for specificity, linearity, precision, accuracy, robustness, and solution stability. The method is linear over the range of 125-750 μg/mL for MET, 1.25-7.5 μg/mL for DAP, and 0.625-3.75 μg/mL for SAX. The observed correlation coefficients (R2 ) for MET, DAP, and SAX are >0.999. The proposed method is precise, and the percentage relative standard deviation was found to be between 0.4 and 0.8. The observed percentage recoveries were between 98.51 and 100.80 for all three compounds. The product was subjected to stress conditions of acid, base, oxidative, thermal, and photolytic degradation. The product was found to degrade significantly in oxidative, acid, and base hydrolysis degradation conditions, and the degradation products were well determined from the active peaks, thus proving the stability-indicating power of the method. The developed and validated stability-indicating reversed-phase-HPLC method was appropriate for quantitative determination of these drugs in pharmaceutical preparations and also for quality control in bulk manufacturing.

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