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Non-extractive spectrophotometric determination of memantine HCl, clomipramine HCl and fluvoxamine maleate in pure form and in pharmaceutical products by ion-pair complex formation with rose Bengal.
Faculty
Pharmacy
Year:
2020
Type of Publication:
ZU Hosted
Pages:
375-386
Authors:
Omnia Ahmed Emam Ismaiel
Staff Zu Site
Abstract In Staff Site
Journal:
Annales Pharmaceutiques Françaises ScienceDirect
Volume:
Keywords :
Non-extractive spectrophotometric determination , memantine HCl, clomipramine
Abstract:
The objective of this work is to develop a simple, sensitive and non-extractive spectrophotometric method for the determination of memantine HCl (MEM), clomipramine HCl (CLM) and fluvoxamine maleate (FLV). The proposed method was based on the formation of colored ion-pair complexes between the basic nitrogen of the target drugs and rose bengal (RB) dye in a weak acidic medium. The formed complexes were measured at 576 nm for MEM, CLM and at 575 nm for FLV. The reaction conditions were optimized to obtain the maximum color intensity. Beer's law was obeyed in the range of 2–20, 1–16 and 6–30 μg/mL for MEM, CLM and FLV, respectively. The limit of detection (LOD) was 0.476, 0.185, 0.806 and the limit of quantitation (LOQ) was 1.443, 0.559 and 2.443 for MEM, CLM and FLV, respectively. The composition ratio of the ion-pair complexes was found to be 1:1 as determined by Job's method. Conclusion The proposed method was applied successfully for the analysis of the cited drugs in pure and dosage forms. Results of the proposed method were statistically compared with the reported methods by applying student's t- and F-tests and no significant differences were observed.
Author Related Publications
Omnia Ahmed Emam Ismaiel, "Monitoring phospholipids for assessment of matrix effects in a liquid chromatography–tandem mass spectrometry method for hydrocodone and pseudoephedrine in human plasma", USA, 2007
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Omnia Ahmed Emam Ismaiel, "Monitoring phospholipids for assessment of ion enhancement and ion suppression in ESI and APCI LC/MS/MS for chlorpheniramine in human plasma and the importance of multiple source matrix effect evaluations", USA, 2008
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Omnia Ahmed Emam Ismaiel, "Assessment of matrix effects and determination of niacin in human plasma using liquid–liquid extraction and liquid chromatography–tandem mass spectrometry", USA, 2008
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Omnia Ahmed Emam Ismaiel, "Development of a Liquid Chromatography-Negative ESI-Tandem Mass Spectrometry Method for Ibuprofen with Minimization of Matrix Effects Associated with Phospholipids", USA, 2008
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Omnia Ahmed Emam Ismaiel, "Investigation of endogenous blood plasma phospholipids, cholesterol and glycerides that contribute to matrix effects in bioanalysis by liquid chromatography/mass spectrometry", USA, 2010
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Department Related Publications
Manal Samer Abdelhamied Mahmoud Elmasry, "Instrumental Methods of Analysis for Certain Pharmaceutical Compounds", لايوجد, 1900
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Rania Adel Sayed Ahmd, "The use of surface plasmon resonance band of green silver nanoparticles and conductometry for quantitative determination of minor concentrations of doxycycline hyclate and oxytetracycline HCl in pure and pharmaceutical dosage forms", Inderscience Publishers Ltd., 2020
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Abdallah Abdelaziem Abdallah Shlabi , "The use of surface plasmon resonance band of green silver nanoparticles and conductometry for quantitative determination of minor concentrations of doxycycline hyclate and oxytetracycline HCl in pure and pharmaceutical dosage forms", Inderscience Publishers Ltd., 2020
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Magda Youssef Ali Elmamly , "The use of surface plasmon resonance band of green silver nanoparticles and conductometry for quantitative determination of minor concentrations of doxycycline hyclate and oxytetracycline HCl in pure and pharmaceutical dosage forms", Inderscience Publishers Ltd., 2020
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Manal Samer Abdelhamied Mahmoud Elmasry, "The use of surface plasmon resonance band of green silver nanoparticles and conductometry for quantitative determination of minor concentrations of doxycycline hyclate and oxytetracycline HCl in pure and pharmaceutical dosage forms", Inderscience Publishers Ltd., 2020
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