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Direct Enantiomeric Resolution of Betaxolol with Application to Analysis of Pharmaceutical Products

A high-performance liquid chromatographic (HPLC) method has been developed for the separation and determination of S- and R-enantiomers of betaxolol in tablets and ophthalmic preparations. Baseline resolution was achieved by using teicoplanin macrocyclic antibiotic chiral stationary phase (CSP) know...

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Autores principales: Hefnawy, Mohamed M., Sultan, Maha A., Al-Shehri, Mona M.
Formato: Texto
Lenguaje:English
Publicado: Libertas Academica 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2716771/
https://www.ncbi.nlm.nih.gov/pubmed/19690633
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author Hefnawy, Mohamed M.
Sultan, Maha A.
Al-Shehri, Mona M.
author_facet Hefnawy, Mohamed M.
Sultan, Maha A.
Al-Shehri, Mona M.
author_sort Hefnawy, Mohamed M.
collection PubMed
description A high-performance liquid chromatographic (HPLC) method has been developed for the separation and determination of S- and R-enantiomers of betaxolol in tablets and ophthalmic preparations. Baseline resolution was achieved by using teicoplanin macrocyclic antibiotic chiral stationary phase (CSP) known as Chirobiotic T with fluorescence detection at excitation/emission wavelengths 275/305 nm. The polar ionic mobile phase (PIM) consists of methanol-glacial acetic acid-triethylamine, (100:0.020:0.025, v/v/v) has been used at a flow rate of 1.5 ml/min. All analytes with S-(–)-atenolol as internal standard were conducted at ambient temperature. The method is highly specific where another coformulated compounds did not interfere. The stability of betaxolol enantiomers under different degree of temperature also studied. The results showed that it is stable for at least 7 days at 70°C. The method validated for its linearity, accuracy, precision and robustness. Experimental design was used during validation to evaluate method robustness. Using the chromatographic conditions described, S- and R-betaxolol were well resolved with mean retention times of 11.3 and 12.6 min, respectively. Linear response (r > 0.997) was observed over the range of 10–500 ng/ml of betaxolol enantiomers, with detection limit of 5 ng/ml. The recoveries of S- and R-betaxolol from tablets and ophthalmic preparation ranged from 97.4 to 101.4% and 98.0 to 102.0%, respectively. The mean relative standard deviation (R.S.D.%) for both enantiomers were 1.1–1.4% and 1.3–1.7% in tablets and ophthalmic solution, respectively.
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spelling pubmed-27167712009-08-18 Direct Enantiomeric Resolution of Betaxolol with Application to Analysis of Pharmaceutical Products Hefnawy, Mohamed M. Sultan, Maha A. Al-Shehri, Mona M. Anal Chem Insights Original Research A high-performance liquid chromatographic (HPLC) method has been developed for the separation and determination of S- and R-enantiomers of betaxolol in tablets and ophthalmic preparations. Baseline resolution was achieved by using teicoplanin macrocyclic antibiotic chiral stationary phase (CSP) known as Chirobiotic T with fluorescence detection at excitation/emission wavelengths 275/305 nm. The polar ionic mobile phase (PIM) consists of methanol-glacial acetic acid-triethylamine, (100:0.020:0.025, v/v/v) has been used at a flow rate of 1.5 ml/min. All analytes with S-(–)-atenolol as internal standard were conducted at ambient temperature. The method is highly specific where another coformulated compounds did not interfere. The stability of betaxolol enantiomers under different degree of temperature also studied. The results showed that it is stable for at least 7 days at 70°C. The method validated for its linearity, accuracy, precision and robustness. Experimental design was used during validation to evaluate method robustness. Using the chromatographic conditions described, S- and R-betaxolol were well resolved with mean retention times of 11.3 and 12.6 min, respectively. Linear response (r > 0.997) was observed over the range of 10–500 ng/ml of betaxolol enantiomers, with detection limit of 5 ng/ml. The recoveries of S- and R-betaxolol from tablets and ophthalmic preparation ranged from 97.4 to 101.4% and 98.0 to 102.0%, respectively. The mean relative standard deviation (R.S.D.%) for both enantiomers were 1.1–1.4% and 1.3–1.7% in tablets and ophthalmic solution, respectively. Libertas Academica 2007-02-06 /pmc/articles/PMC2716771/ /pubmed/19690633 Text en Copyright © 2006 The authors. http://creativecommons.org/licenses/by/3.0 This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Original Research
Hefnawy, Mohamed M.
Sultan, Maha A.
Al-Shehri, Mona M.
Direct Enantiomeric Resolution of Betaxolol with Application to Analysis of Pharmaceutical Products
title Direct Enantiomeric Resolution of Betaxolol with Application to Analysis of Pharmaceutical Products
title_full Direct Enantiomeric Resolution of Betaxolol with Application to Analysis of Pharmaceutical Products
title_fullStr Direct Enantiomeric Resolution of Betaxolol with Application to Analysis of Pharmaceutical Products
title_full_unstemmed Direct Enantiomeric Resolution of Betaxolol with Application to Analysis of Pharmaceutical Products
title_short Direct Enantiomeric Resolution of Betaxolol with Application to Analysis of Pharmaceutical Products
title_sort direct enantiomeric resolution of betaxolol with application to analysis of pharmaceutical products
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2716771/
https://www.ncbi.nlm.nih.gov/pubmed/19690633
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