Stepwise design, synthesis, and in vitro antifungal screening of (Z)-substituted-propenoic acid derivatives with potent broad-spectrum antifungal activity

Mohammed A KhedrDepartment of Pharmaceutical Chemistry, Faculty of Pharmacy, Helwan University, Cairo, EgyptAbstract: Fungal infections are a main reason for the high mortality rate worldwide. It is a challenge to design selective antifungal agents with broad-spectrum activity. Lanosterol 14&alp...

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Main Author: Khedr MA
Format: Article
Language:English
Published: Dove Medical Press 2015-08-01
Series:Drug Design, Development and Therapy
Online Access:http://www.dovepress.com/stepwise-design-synthesis-and-in-vitro-antifungal-screening-of-z-subst-peer-reviewed-article-DDDT
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spelling doaj-a31696dee4ff4b0d9fc84dc339bc2c992020-11-25T00:44:03ZengDove Medical PressDrug Design, Development and Therapy1177-88812015-08-012015default4501451323073Stepwise design, synthesis, and in vitro antifungal screening of (Z)-substituted-propenoic acid derivatives with potent broad-spectrum antifungal activityKhedr MAMohammed A KhedrDepartment of Pharmaceutical Chemistry, Faculty of Pharmacy, Helwan University, Cairo, EgyptAbstract: Fungal infections are a main reason for the high mortality rate worldwide. It is a challenge to design selective antifungal agents with broad-spectrum activity. Lanosterol 14α-demethylase is an attractive target in the design of antifungal agents. Seven compounds were selected from a number of designed compounds using a rational docking study. These compounds were synthesized and evaluated for their antifungal activity. In silico study results showed the high binding affinity to lanosterol 14α-demethylase (-24.49 and -25.83 kcal/mol) for compounds V and VII, respectively; these values were greater than those for miconazole (-18.19 kcal/mol) and fluconazole (-16.08 kcal/mol). Compound V emerged as the most potent antifungal agent among all compounds with a half maximal inhibitory concentration of 7.01, 7.59, 7.25, 31.6, and 41.6 µg/mL against Candida albicans, Candida parapsilosis, Aspergillus niger, Trichophyton rubrum, and Trichophyton mentagrophytes, respectively. The antifungal activity for most of the synthesized compounds was more potent than that of miconazole and fluconazole.Keywords: design, broad antifungal, molecular modelinghttp://www.dovepress.com/stepwise-design-synthesis-and-in-vitro-antifungal-screening-of-z-subst-peer-reviewed-article-DDDT
collection DOAJ
language English
format Article
sources DOAJ
author Khedr MA
spellingShingle Khedr MA
Stepwise design, synthesis, and in vitro antifungal screening of (Z)-substituted-propenoic acid derivatives with potent broad-spectrum antifungal activity
Drug Design, Development and Therapy
author_facet Khedr MA
author_sort Khedr MA
title Stepwise design, synthesis, and in vitro antifungal screening of (Z)-substituted-propenoic acid derivatives with potent broad-spectrum antifungal activity
title_short Stepwise design, synthesis, and in vitro antifungal screening of (Z)-substituted-propenoic acid derivatives with potent broad-spectrum antifungal activity
title_full Stepwise design, synthesis, and in vitro antifungal screening of (Z)-substituted-propenoic acid derivatives with potent broad-spectrum antifungal activity
title_fullStr Stepwise design, synthesis, and in vitro antifungal screening of (Z)-substituted-propenoic acid derivatives with potent broad-spectrum antifungal activity
title_full_unstemmed Stepwise design, synthesis, and in vitro antifungal screening of (Z)-substituted-propenoic acid derivatives with potent broad-spectrum antifungal activity
title_sort stepwise design, synthesis, and in vitro antifungal screening of (z)-substituted-propenoic acid derivatives with potent broad-spectrum antifungal activity
publisher Dove Medical Press
series Drug Design, Development and Therapy
issn 1177-8881
publishDate 2015-08-01
description Mohammed A KhedrDepartment of Pharmaceutical Chemistry, Faculty of Pharmacy, Helwan University, Cairo, EgyptAbstract: Fungal infections are a main reason for the high mortality rate worldwide. It is a challenge to design selective antifungal agents with broad-spectrum activity. Lanosterol 14α-demethylase is an attractive target in the design of antifungal agents. Seven compounds were selected from a number of designed compounds using a rational docking study. These compounds were synthesized and evaluated for their antifungal activity. In silico study results showed the high binding affinity to lanosterol 14α-demethylase (-24.49 and -25.83 kcal/mol) for compounds V and VII, respectively; these values were greater than those for miconazole (-18.19 kcal/mol) and fluconazole (-16.08 kcal/mol). Compound V emerged as the most potent antifungal agent among all compounds with a half maximal inhibitory concentration of 7.01, 7.59, 7.25, 31.6, and 41.6 µg/mL against Candida albicans, Candida parapsilosis, Aspergillus niger, Trichophyton rubrum, and Trichophyton mentagrophytes, respectively. The antifungal activity for most of the synthesized compounds was more potent than that of miconazole and fluconazole.Keywords: design, broad antifungal, molecular modeling
url http://www.dovepress.com/stepwise-design-synthesis-and-in-vitro-antifungal-screening-of-z-subst-peer-reviewed-article-DDDT
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