Laboratorio de Química Industrial, Facultad de Ciencias Químicas, Universidad Autónoma de Nuevo León, Av. Universidad s/n Cd. Universitaria, San Nicolás de los Garza 66455, Nuevo León, Mexico.
Laboratorio de Micología y Fitopatología, Facultad de Ciencias Biológicas, Universidad Autónoma de Nuevo León, Av. Universidad s/n Cd. Universitaria, San Nicolás de los Garza 66455, Nuevo León, Mexico.
Molecules. 2022 Jun 17;27(12):3886. doi: 10.3390/molecules27123886.
The genus is an emerging pathogen with worldwide prevalence and high mortality rates that gives multidrug resistance to antifungals; therefore, pharmacological alternatives must be sought for the treatment of diseases caused by this fungus. In the present project, six new α-aminophosphates were synthesized by the Kabachnik-Fields multicomponent reaction by vortex agitation, and six new monohydrolyzed α-aminophosphonic acids were synthesized by an alkaline hydrolysis reaction. Antifungal activity was evaluated using the agar diffusion method as an initial screening to determine the most active compound compared to voriconazole; then it was evaluated against 23 strains of the genus following the M38-A2 protocol from CLSI (activity range: 648.76-700 µg/mL). Results showed that compound exhibited the highest antifungal activity according to the agar diffusion method (≤1 mg/mL). Cytotoxicity against healthy COS-7 cells was also evaluated by the MTT assay and it was shown that compound exhibits a lower toxicity in comparison to voriconazole at the same concentration (1000 µM). A docking study was conducted afterwards, showing that the possible mechanism of action of the compound is through the inhibition of allosteric 14-α-demethylase. Taking these results as a basis, is presented as a compound with attractive properties for further studies.
该属是一种具有全球流行率和高死亡率的新兴病原体,对抗真菌药物具有多重耐药性;因此,必须寻找治疗这种真菌引起的疾病的药理学替代品。在本项目中,通过涡旋搅拌的 Kabachnik-Fields 多组分反应合成了 6 种新的α-氨基膦酸盐,通过碱性水解反应合成了 6 种新的单水解α-氨基膦酸。采用琼脂扩散法评估抗真菌活性,作为初步筛选,以确定与伏立康唑相比最具活性的化合物;然后根据 CLSI 的 M38-A2 方案对 23 株属进行评估(活性范围:648.76-700 µg/mL)。结果表明,根据琼脂扩散法,化合物 表现出最高的抗真菌活性(≤1 mg/mL)。通过 MTT 测定还评估了对健康 COS-7 细胞的细胞毒性,结果表明,在相同浓度(1000 µM)下,化合物 比伏立康唑的毒性更低。随后进行了对接研究,表明该化合物的可能作用机制是通过抑制别构 14-α-脱甲基酶。基于这些结果, 被认为是一种具有吸引力的进一步研究的化合物。