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A High-performance Thin Layer Chromatography Densitometric Method for the assay of Mebendazole Tablets

By: Contributor(s): Material type: TextTextPublisher number: Phone: +255 28 298 3384 Fax: +255 28 298 3386 Email: vc@bugando.ac.tz Website: www.bugando.ac.tz Language: English Series: ; Journal East and Central African Journal of Pharmaceutical Sciences Volume 23 Issue 2 Publication details: Mwanza: Tanzania Catholic University of Health and Allied Sciences [CUHAS – Bugando] & East and Central African Journal of Pharmaceutical Sciences 2020-10-01 Description: Pages 54-59ISSN:
  • eISSN: 1026-552X
Summary: Abstract A simple, precise and accurate high-performance thin layer chromatographic (HPTLC) method was developed for the assay of mebendazole tablets. The separation was carried out by using HPTLC Silica gel 60 F254, (20 × 10 cm) with 250 μm thickness using ethyl acetate - ammonia 25% solution (25:0.5) as a mobile phase. HPTLC separation of the drug was followed by densitometry measurement at 310 nm. Mebendazole was satisfactorily resolved with retention factor (Rf) values of 0.51 ± 0.02. The method complied with International Conference on Harmonization acceptance criteria for linearity (250 - 600 ng), precision, accuracy and specificity.
Item type: RESEARCH ARTICLES
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Item type Current library Collection Status Barcode
RESEARCH ARTICLES MWALIMU NYERERE LEARNING RESOURCES CENTRE-CUHAS BUGANDO NFIC -1 RA0439
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Abstract

A simple, precise and accurate high-performance thin layer chromatographic (HPTLC) method was developed for the assay of mebendazole tablets. The separation was carried out by using HPTLC Silica gel 60 F254, (20 × 10 cm) with 250 μm thickness using ethyl acetate - ammonia 25% solution (25:0.5) as a mobile phase. HPTLC separation of the drug was followed by densitometry measurement at 310 nm. Mebendazole was satisfactorily resolved with retention factor (Rf) values of 0.51 ± 0.02. The method complied with International Conference on Harmonization acceptance
criteria for linearity (250 - 600 ng), precision, accuracy and specificity.

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