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HPLC analysis, isolation and identification of a new degradation product in carvedilol tablets
Olga Galanopoulou1, Stavroula Rozou, Ekaterini Antoniadou-Vyza
1Department of Pharmaceutical Chemistry, School of Pharmacy, University of Athens, Panepistimiopolis Zografou, Athens 15771, Greece.
Insights
An unknown degradation product (UP) in carvedilol (CV) tablets was identified as a new compound formed from CV and polyvinyl pyrrolidone interaction. Moisture and temperature influence UP formation, necessitating packaging modifications to ensure tablet stability.
Area of Science:
- Pharmaceutical Chemistry
- Analytical Chemistry
- Drug Stability
Background:
- Carvedilol (CV) is a widely prescribed cardiovascular drug.
- Stability testing revealed an unknown degradation product (UP) exceeding ICH guidelines.
Purpose of the Study:
- To identify and characterize the unknown degradation product (UP) in carvedilol solid dosage forms.
- To develop and validate a method for quantifying CV and its impurities.
Main Methods:
- High-performance liquid chromatography (HPLC) for separation and quantification.
- Semi-preparative chromatography for UP isolation.
- Mass spectrometry (MS) and 1H NMR for structural elucidation.
- Comparative chromatographic analysis at varying pH.
Main Results:
- A novel degradation product (UP) was isolated and characterized.
- UP was identified as a product of carvedilol interacting with polyvinyl pyrrolidone (PVP) in the presence of water.
- Moisture and temperature were confirmed as critical factors influencing UP formation.
- The developed HPLC method accurately quantifies known impurities and UP.
Conclusions:
- The unknown degradation product in carvedilol tablets is a novel compound formed via interaction with PVP.
- Optimized packaging can mitigate UP formation and maintain drug stability within acceptable limits.
- Understanding degradation pathways is crucial for ensuring pharmaceutical product quality and shelf life.
Abstract:
Carvedilol (CV) is an antagonist of alpha1 and beta1,beta2 membrane adrenoceptors and also a modulator of cardiac electrophysiological properties. It is widely prescribed for the treatment of cardiovascular diseases. During stability testing of CV solid dosage forms an unknown degradation product referred as UP, exceeded the identification thresholds of ICH Q3B guidelines. The HPLC analysis of the detected unknown product was performed by a newly, developed, specific and validated method, also suitable for the quantitative determination of the known CV impurities (imp B, C, E and F) and the other degradation products. The separation was achieved with an X-terra C18 column, using acetonitrile-phosphate buffer pH 2.5 as mobile phase. The isolation of UP was carried out by semi-preparative chromatography method, followed by deep freezing of the collected fractions until the organic and the aqueous phases were separated. Chromatographic behaviour of CV and UP was compared, in mobile phases of different pH and gave valuable information concerning the dissimilarities of their ionization. UP was further studied by MS and 1H NMR spectrometry, revealing structural similarities with the parent molecule. Finally, the unknown peak of degradation product was attributed to a new compound generated from the interaction of CV molecule and polyvinyl pyrrolidone (PVP) in the presence of water molecules. Moisture and temperature was proved to affect the formation of UP and its concentration in CV tablets. Appropriate modifications of the packaging of CV tablets can be made in order to reduce UP concentration down to the accepted levels, during the tablets' shelf life.
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