Electrochemical Quantitative Assessment of Labetalol Hydrochloride in Pure Form and Combined Pharmaceutical Formulations

This work describes how to utilize the electrochemical technique to determine labetalol hydrochloride (Lab) in pure form and combined pharmaceutical formulation for quality control purposes. Four membrane sensors were developed using two plasticizers, dioctyl phthalate with 2-hydroxypropyl-β-cyclode...

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Main Authors: Maissa Yacoub Salem, Nagiba Yehia Hassan, Yasmin Mohamed Fayez, Samah Abd-EL Sabour Mohamed, ENAS Shabaan ALI
Format: Article
Language:English
Published: Slovenian Chemical Society 2020-06-01
Series:Acta Chimica Slovenica
Subjects:
Online Access:https://journals.matheo.si/index.php/ACSi/article/view/5140
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spelling doaj-f45bb65788cb4d7cbf1e1f73c423700c2020-11-25T03:11:47ZengSlovenian Chemical SocietyActa Chimica Slovenica1318-02071580-31552020-06-0167239640210.17344/acsi.2019.5140835Electrochemical Quantitative Assessment of Labetalol Hydrochloride in Pure Form and Combined Pharmaceutical FormulationsMaissa Yacoub Salem0Nagiba Yehia Hassan1Yasmin Mohamed Fayez2Samah Abd-EL Sabour Mohamed3ENAS Shabaan ALI4Faculty of pharmacy-Cairo universityFaculty of pharmacy-Cairo universityFaculty of pharmacy-Cairo universityNational Organization for Drug Control And ResearchNational Organization for Drug Control And ResearchThis work describes how to utilize the electrochemical technique to determine labetalol hydrochloride (Lab) in pure form and combined pharmaceutical formulation for quality control purposes. Four membrane sensors were developed using two plasticizers, dioctyl phthalate with 2-hydroxypropyl-β-cyclodextrin and ammonium reineckate (RNC) for sensors 1a and 2a, and tributyl phthalate with 2-hydroxypropyl-β-cyclodextrin and ammonium reineckate for sensors 1b and 2b as ionophores in polyvinyl chloride (PVC) matrix. Fast response and stable Nernstian slopes of 59.60, 57.58, 53.00 and 55.00 mV/decade for sensors 1a, 2a, 1b, and 2b, respectively, were obtained by developed sensors within a concentration range 10–4 M–10–2 M over pH range 2.00–5.10. Developed sensors showed good selectivity for Lab in pure form, in the presence of co-administered drugs, many of interfering ions, and excipients present in pharmaceutical formulation. No remarkable difference was detected upon the statistical comparison between the results of proposed sensors and the official method.https://journals.matheo.si/index.php/ACSi/article/view/5140ammonium reineckateβ-cyclodextrinion selective-electrodelabetalol hydrochloridetributylphethalatedioctylphethalate.
collection DOAJ
language English
format Article
sources DOAJ
author Maissa Yacoub Salem
Nagiba Yehia Hassan
Yasmin Mohamed Fayez
Samah Abd-EL Sabour Mohamed
ENAS Shabaan ALI
spellingShingle Maissa Yacoub Salem
Nagiba Yehia Hassan
Yasmin Mohamed Fayez
Samah Abd-EL Sabour Mohamed
ENAS Shabaan ALI
Electrochemical Quantitative Assessment of Labetalol Hydrochloride in Pure Form and Combined Pharmaceutical Formulations
Acta Chimica Slovenica
ammonium reineckate
β-cyclodextrin
ion selective-electrode
labetalol hydrochloride
tributylphethalate
dioctylphethalate.
author_facet Maissa Yacoub Salem
Nagiba Yehia Hassan
Yasmin Mohamed Fayez
Samah Abd-EL Sabour Mohamed
ENAS Shabaan ALI
author_sort Maissa Yacoub Salem
title Electrochemical Quantitative Assessment of Labetalol Hydrochloride in Pure Form and Combined Pharmaceutical Formulations
title_short Electrochemical Quantitative Assessment of Labetalol Hydrochloride in Pure Form and Combined Pharmaceutical Formulations
title_full Electrochemical Quantitative Assessment of Labetalol Hydrochloride in Pure Form and Combined Pharmaceutical Formulations
title_fullStr Electrochemical Quantitative Assessment of Labetalol Hydrochloride in Pure Form and Combined Pharmaceutical Formulations
title_full_unstemmed Electrochemical Quantitative Assessment of Labetalol Hydrochloride in Pure Form and Combined Pharmaceutical Formulations
title_sort electrochemical quantitative assessment of labetalol hydrochloride in pure form and combined pharmaceutical formulations
publisher Slovenian Chemical Society
series Acta Chimica Slovenica
issn 1318-0207
1580-3155
publishDate 2020-06-01
description This work describes how to utilize the electrochemical technique to determine labetalol hydrochloride (Lab) in pure form and combined pharmaceutical formulation for quality control purposes. Four membrane sensors were developed using two plasticizers, dioctyl phthalate with 2-hydroxypropyl-β-cyclodextrin and ammonium reineckate (RNC) for sensors 1a and 2a, and tributyl phthalate with 2-hydroxypropyl-β-cyclodextrin and ammonium reineckate for sensors 1b and 2b as ionophores in polyvinyl chloride (PVC) matrix. Fast response and stable Nernstian slopes of 59.60, 57.58, 53.00 and 55.00 mV/decade for sensors 1a, 2a, 1b, and 2b, respectively, were obtained by developed sensors within a concentration range 10–4 M–10–2 M over pH range 2.00–5.10. Developed sensors showed good selectivity for Lab in pure form, in the presence of co-administered drugs, many of interfering ions, and excipients present in pharmaceutical formulation. No remarkable difference was detected upon the statistical comparison between the results of proposed sensors and the official method.
topic ammonium reineckate
β-cyclodextrin
ion selective-electrode
labetalol hydrochloride
tributylphethalate
dioctylphethalate.
url https://journals.matheo.si/index.php/ACSi/article/view/5140
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AT nagibayehiahassan electrochemicalquantitativeassessmentoflabetalolhydrochlorideinpureformandcombinedpharmaceuticalformulations
AT yasminmohamedfayez electrochemicalquantitativeassessmentoflabetalolhydrochlorideinpureformandcombinedpharmaceuticalformulations
AT samahabdelsabourmohamed electrochemicalquantitativeassessmentoflabetalolhydrochlorideinpureformandcombinedpharmaceuticalformulations
AT enasshabaanali electrochemicalquantitativeassessmentoflabetalolhydrochlorideinpureformandcombinedpharmaceuticalformulations
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