2017The Scientific World JOURNALOpen access

In VitroAntifungal Activity of Hexahydropyrimidine Derivatives against the Causative Agents of Dermatomycosis

Francislene Juliana Martins, César Augusto Caneschi, Mônica Senra, Gustavo Senra Gonçalves de Carvalho, Adilson David da Silva, Nádia Rezende Barbosa Raposo

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Abstract

Nitrogenated heterocyclic compounds are present in both natural and synthetic drugs, and hexahydropyrimidine derivatives may prove to be efficient in treating dermatomycosis causing fungi. This study evaluated the antifungal activity of four hexahydropyrimidine derivatives against the dermatomycosis causing fungi. These derivatives were synthesized, characterized, and assessed in terms of their activity againstTrichophyton mentagrophytes,Microsporum canis,Microsporum gypseum,Trichophyton rubrum,Fusarium oxysporum, andEpidermophyton floccosumbetween concentrations 7.8 and 1,000 μg mL−1. Scanning electron micrographs were assessed for the active derivatives and reference drugs, and these micrographs revealed that new agents cause morphological changes in fungi. The derivatives HHP1, HHP3, and HHP4 revealed poor activity against the four fungal strains (MICs range 500–1000 μg mL−1). Compound HHP3 was found to be the best potential antifungal agent among those tested and was the most effective among all the active derivatives that caused morphological changes in the susceptible strains.

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Nitrogenated heterocyclic compounds are present in both natural and synthetic drugs, and hexahydropyrimidine derivatives may prove to be efficient in treating dermatomycosis causing fungi. This study evaluated the antifungal activity of four hexahydropyrimidine derivatives against the dermatomycosis causing fungi. These derivatives were synthesized, characterized, and assessed in terms of their activity againstTrichophyton mentagrophytes,Microsporum canis,Microsporum gypseum,Trichophyton rubrum,Fusarium oxysporum, andEpidermophyton floccosumbetween concentrations 7.8 and 1,000 μg mL−1. Scanning electron micrographs were assessed for the active derivatives and reference drugs, and these micrographs revealed that new agents cause morphological changes in fungi. The derivatives HHP1, HHP3, and HHP4 revealed poor activity against the four fungal strains (MICs range 500–1000 μg mL−1). Compound HHP3 was found to be the best potential antifungal agent among those tested and was the most effective among all the active derivatives that caused morphological changes in the susceptible strains.

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Available abstract

Nitrogenated heterocyclic compounds are present in both natural and synthetic drugs, and hexahydropyrimidine derivatives may prove to be efficient in treating dermatomycosis causing fungi. This study evaluated the antifungal activity of four hexahydropyrimidine derivatives against the dermatomycosis causing fungi. These derivatives were synthesized, characterized, and assessed in terms of their activity againstTrichophyton mentagrophytes,Microsporum canis,Microsporum gypseum,Trichophyton rubrum,Fusarium oxysporum, andEpidermophyton floccosumbetween concentrations 7.8 and 1,000 μg mL−1. Scanning electron micrographs were assessed for the active derivatives and reference drugs, and these micrographs revealed that new agents cause morphological changes in fungi. The derivatives HHP1, HHP3, and HHP4 revealed poor activity against the four fungal strains (MICs range 500–1000 μg mL−1). Compound HHP3 was found to be the best potential antifungal agent among those tested and was the most effective among all the active derivatives that caused morphological changes in the susceptible strains.

Key concepts: Dermatomycosis, Microsporum canis, Epidermophyton floccosum, Trichophyton rubrum, Microsporum gypseum, Trichophyton, Fusarium oxysporum, Microsporum

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