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Nahed El-Enany

Researcher at Mansoura University

Publications -  139
Citations -  2014

Nahed El-Enany is an academic researcher from Mansoura University. The author has contributed to research in topics: Detection limit & High-performance liquid chromatography. The author has an hindex of 23, co-authored 131 publications receiving 1748 citations.

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Simultaneous determination of loratadine and desloratadine in pharmaceutical preparations using liquid chromatography with a microemulsion as eluent.

TL;DR: Pseudoephedrine, the co-formulated drug substance, did not interference with the assay and was successfully separated using the developed HPLC method, as revealed by statistical analysis of the obtained results using the Student's t-test and the variance ratio F-test.
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Differential pulse polarographic determination of ofloxacin in pharmaceuticals and biological fluids.

TL;DR: The proposed method was successfully applied to the determination of ofloxacin in tablets and biological fluids and the results obtained were found to be in agreement with those obtained by a reference method.
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Application of the Stern–Volmer equation for studying the spectrofluorimetric quenching reaction of eosin with clindamycin hydrochloride in its pure form and pharmaceutical preparations

TL;DR: In this article, a sensitive, selective, economic, and validated spectrofluorimetric method was developed for the determination of clindamycin hydrochloride in pharmaceutical preparations, depending on the reaction of its tertiary amino group with eosin Y.
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Spectrophotometric, Spectrofluorometric and HPLC Determination of Desloratadine in Dosage Forms and Human Plasma

TL;DR: Four sensitive, simple and specific methods were developed for the determination of desloratadine (DSL), a new antihistaminic drug in pharmaceutical preparations and biological fluids and results were in agreement with those obtained using a reference method.
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Simultaneous determination of sitagliptin and metformin in pharmaceutical preparations by capillary zone electrophoresis and its application to human plasma analysis.

TL;DR: The proposed method was successfully applied for the analysis of the studied drugs in their synthetic mixtures and co-formulated tablets without interfering peaks due to the excipients present in the pharmaceutical tablets.