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Evaluation of a novel oxiconazole nitrate formulation: The thermosensitive gel

Superficial fungal infections caused by Candida species are common skin diseases. Therefore, this study aimed to develop a new formulation containing oxiconazole nitrate, which is an azole group derivative for antifungal treatment, as a thermosensitive gel since there has been no literature study un...

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Autores principales: Arslan, Alper, Kose Ozkan, Cansel, Sig, Ali Korhan, Dogan, Eyup, Esim, Ozgur, Cetinkaya, Serdar, Atalay, Filiz, Tas, Cetin, Savaser, Ayhan, Ozkan, Yalcin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6035325/
https://www.ncbi.nlm.nih.gov/pubmed/29991910
http://dx.doi.org/10.1016/j.jsps.2018.02.025
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author Arslan, Alper
Kose Ozkan, Cansel
Sig, Ali Korhan
Dogan, Eyup
Esim, Ozgur
Cetinkaya, Serdar
Atalay, Filiz
Tas, Cetin
Savaser, Ayhan
Ozkan, Yalcin
author_facet Arslan, Alper
Kose Ozkan, Cansel
Sig, Ali Korhan
Dogan, Eyup
Esim, Ozgur
Cetinkaya, Serdar
Atalay, Filiz
Tas, Cetin
Savaser, Ayhan
Ozkan, Yalcin
author_sort Arslan, Alper
collection PubMed
description Superficial fungal infections caused by Candida species are common skin diseases. Therefore, this study aimed to develop a new formulation containing oxiconazole nitrate, which is an azole group derivative for antifungal treatment, as a thermosensitive gel since there has been no literature study until now. MIC value of the novel thermosensitive formulation against three Candida species was calculated and time-dependent antifungal activity analysis was performed. Viscosity, transition temperature T(sol-gel) (°C) and gelation time of the thermosensitive gel formulation were also determined in the viscometer. The measurements performed on the tensilometer device were analyzed for adhesion hardness and elongation percentages of the formulation. In the FT-IR spectrometer, the spectrum of solution and gel state was compared between 650 and 4000 cm(−1) and it was found that there is no difference between them. It was found that the temperature is reversible on the formulation and did not cause any disruption of its components. Characterization parameters of the thermosensitive gel formulation containing oxiconazole nitrate and time-dependent activity against Candida species was observed to be the same as those of the solution containing only oxiconazole nitrate. MIC, MFC and time-dependent antifungal analysis did not show any particular difference between formulation and oxiconazole nitrate itself. Thermosensitive gel formulation containing oxiconazole nitrate was found to be effective on superficial fungal infections. We believe it is also appropriate for in vivo usage, but it is necessary to perform animal and human research. It is also needed to evaluate the formulation against other etiologic agents of superficial fungal infections.
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spelling pubmed-60353252018-07-10 Evaluation of a novel oxiconazole nitrate formulation: The thermosensitive gel Arslan, Alper Kose Ozkan, Cansel Sig, Ali Korhan Dogan, Eyup Esim, Ozgur Cetinkaya, Serdar Atalay, Filiz Tas, Cetin Savaser, Ayhan Ozkan, Yalcin Saudi Pharm J Article Superficial fungal infections caused by Candida species are common skin diseases. Therefore, this study aimed to develop a new formulation containing oxiconazole nitrate, which is an azole group derivative for antifungal treatment, as a thermosensitive gel since there has been no literature study until now. MIC value of the novel thermosensitive formulation against three Candida species was calculated and time-dependent antifungal activity analysis was performed. Viscosity, transition temperature T(sol-gel) (°C) and gelation time of the thermosensitive gel formulation were also determined in the viscometer. The measurements performed on the tensilometer device were analyzed for adhesion hardness and elongation percentages of the formulation. In the FT-IR spectrometer, the spectrum of solution and gel state was compared between 650 and 4000 cm(−1) and it was found that there is no difference between them. It was found that the temperature is reversible on the formulation and did not cause any disruption of its components. Characterization parameters of the thermosensitive gel formulation containing oxiconazole nitrate and time-dependent activity against Candida species was observed to be the same as those of the solution containing only oxiconazole nitrate. MIC, MFC and time-dependent antifungal analysis did not show any particular difference between formulation and oxiconazole nitrate itself. Thermosensitive gel formulation containing oxiconazole nitrate was found to be effective on superficial fungal infections. We believe it is also appropriate for in vivo usage, but it is necessary to perform animal and human research. It is also needed to evaluate the formulation against other etiologic agents of superficial fungal infections. Elsevier 2018-07 2018-02-19 /pmc/articles/PMC6035325/ /pubmed/29991910 http://dx.doi.org/10.1016/j.jsps.2018.02.025 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Arslan, Alper
Kose Ozkan, Cansel
Sig, Ali Korhan
Dogan, Eyup
Esim, Ozgur
Cetinkaya, Serdar
Atalay, Filiz
Tas, Cetin
Savaser, Ayhan
Ozkan, Yalcin
Evaluation of a novel oxiconazole nitrate formulation: The thermosensitive gel
title Evaluation of a novel oxiconazole nitrate formulation: The thermosensitive gel
title_full Evaluation of a novel oxiconazole nitrate formulation: The thermosensitive gel
title_fullStr Evaluation of a novel oxiconazole nitrate formulation: The thermosensitive gel
title_full_unstemmed Evaluation of a novel oxiconazole nitrate formulation: The thermosensitive gel
title_short Evaluation of a novel oxiconazole nitrate formulation: The thermosensitive gel
title_sort evaluation of a novel oxiconazole nitrate formulation: the thermosensitive gel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6035325/
https://www.ncbi.nlm.nih.gov/pubmed/29991910
http://dx.doi.org/10.1016/j.jsps.2018.02.025
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