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Fabrication and Evaluation of Voriconazole Loaded Transethosomal Gel for Enhanced Antifungal and Antileishmanial Activity

Voriconazole (VRC) is a broad-spectrum antifungal agent belonging to BCS class II (biopharmaceutical classification system). Despite many efforts to enhance its solubility, this primary issue still remains challenging for formulation scientists. Transethosomes (TELs) are one of the potential innovat...

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Autores principales: Farooq, Mudassir, Usman, Faisal, Zaib, Sumera, Shah, Hamid Saeed, Jamil, Qazi Adnan, Akbar Sheikh, Fatima, Khan, Ajmal, Rabea, Sameh, Hagras, Soheir A. A., El-Saber Batiha, Gaber, Khan, Imtiaz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9144605/
https://www.ncbi.nlm.nih.gov/pubmed/35630825
http://dx.doi.org/10.3390/molecules27103347
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author Farooq, Mudassir
Usman, Faisal
Zaib, Sumera
Shah, Hamid Saeed
Jamil, Qazi Adnan
Akbar Sheikh, Fatima
Khan, Ajmal
Rabea, Sameh
Hagras, Soheir A. A.
El-Saber Batiha, Gaber
Khan, Imtiaz
author_facet Farooq, Mudassir
Usman, Faisal
Zaib, Sumera
Shah, Hamid Saeed
Jamil, Qazi Adnan
Akbar Sheikh, Fatima
Khan, Ajmal
Rabea, Sameh
Hagras, Soheir A. A.
El-Saber Batiha, Gaber
Khan, Imtiaz
author_sort Farooq, Mudassir
collection PubMed
description Voriconazole (VRC) is a broad-spectrum antifungal agent belonging to BCS class II (biopharmaceutical classification system). Despite many efforts to enhance its solubility, this primary issue still remains challenging for formulation scientists. Transethosomes (TELs) are one of the potential innovative nano-carriers for improving the solubility and permeation of poorly soluble and permeable drugs. We herein report voriconazole-loaded transethosomes (VRCT) fabricated by the cold method and followed by their incorporation into carbopol 940 as a gel. The prepared VRCT were evaluated for % yield, % entrapment efficiency (EE), surface morphology, possible chemical interaction, particle size, zeta potential, and polydispersity index (PDI). The optimized formulation had a particle size of 228.2 nm, a zeta potential of −26.5 mV, and a PDI of 0.45 with enhanced % EE. Rheology, spreadability, extrudability, in vitro release, skin permeation, molecular docking, antifungal, and antileishmanial activity were also assessed for VRCT and VRC loaded transethosomal gel (VTEG). Ex-vivo permeation using rat skin depicted a transdermal flux of 22.8 µg/cm(2)/h with enhanced efficiency up to 4-fold. A two-fold reduction in inhibitory as well as fungicidal concentration was observed against various fungal strains by VRCT and VTEG besides similar results against L-donovani. The development of transethosomal formulation can serve as an efficient drug delivery system through a topical route with enhanced efficacy and better patient compliance.
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spelling pubmed-91446052022-05-29 Fabrication and Evaluation of Voriconazole Loaded Transethosomal Gel for Enhanced Antifungal and Antileishmanial Activity Farooq, Mudassir Usman, Faisal Zaib, Sumera Shah, Hamid Saeed Jamil, Qazi Adnan Akbar Sheikh, Fatima Khan, Ajmal Rabea, Sameh Hagras, Soheir A. A. El-Saber Batiha, Gaber Khan, Imtiaz Molecules Article Voriconazole (VRC) is a broad-spectrum antifungal agent belonging to BCS class II (biopharmaceutical classification system). Despite many efforts to enhance its solubility, this primary issue still remains challenging for formulation scientists. Transethosomes (TELs) are one of the potential innovative nano-carriers for improving the solubility and permeation of poorly soluble and permeable drugs. We herein report voriconazole-loaded transethosomes (VRCT) fabricated by the cold method and followed by their incorporation into carbopol 940 as a gel. The prepared VRCT were evaluated for % yield, % entrapment efficiency (EE), surface morphology, possible chemical interaction, particle size, zeta potential, and polydispersity index (PDI). The optimized formulation had a particle size of 228.2 nm, a zeta potential of −26.5 mV, and a PDI of 0.45 with enhanced % EE. Rheology, spreadability, extrudability, in vitro release, skin permeation, molecular docking, antifungal, and antileishmanial activity were also assessed for VRCT and VRC loaded transethosomal gel (VTEG). Ex-vivo permeation using rat skin depicted a transdermal flux of 22.8 µg/cm(2)/h with enhanced efficiency up to 4-fold. A two-fold reduction in inhibitory as well as fungicidal concentration was observed against various fungal strains by VRCT and VTEG besides similar results against L-donovani. The development of transethosomal formulation can serve as an efficient drug delivery system through a topical route with enhanced efficacy and better patient compliance. MDPI 2022-05-23 /pmc/articles/PMC9144605/ /pubmed/35630825 http://dx.doi.org/10.3390/molecules27103347 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Farooq, Mudassir
Usman, Faisal
Zaib, Sumera
Shah, Hamid Saeed
Jamil, Qazi Adnan
Akbar Sheikh, Fatima
Khan, Ajmal
Rabea, Sameh
Hagras, Soheir A. A.
El-Saber Batiha, Gaber
Khan, Imtiaz
Fabrication and Evaluation of Voriconazole Loaded Transethosomal Gel for Enhanced Antifungal and Antileishmanial Activity
title Fabrication and Evaluation of Voriconazole Loaded Transethosomal Gel for Enhanced Antifungal and Antileishmanial Activity
title_full Fabrication and Evaluation of Voriconazole Loaded Transethosomal Gel for Enhanced Antifungal and Antileishmanial Activity
title_fullStr Fabrication and Evaluation of Voriconazole Loaded Transethosomal Gel for Enhanced Antifungal and Antileishmanial Activity
title_full_unstemmed Fabrication and Evaluation of Voriconazole Loaded Transethosomal Gel for Enhanced Antifungal and Antileishmanial Activity
title_short Fabrication and Evaluation of Voriconazole Loaded Transethosomal Gel for Enhanced Antifungal and Antileishmanial Activity
title_sort fabrication and evaluation of voriconazole loaded transethosomal gel for enhanced antifungal and antileishmanial activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9144605/
https://www.ncbi.nlm.nih.gov/pubmed/35630825
http://dx.doi.org/10.3390/molecules27103347
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