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Novel macrocyclic molecules based on 12a-N substituted 16-membered azalides and azalactams as potential antifungal agents

机译:基于12a-N取代的16元氮杂内酯和氮杂内酰胺类作为潜在抗真菌剂的新型大环分子

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摘要

Novel macrocyclic molecules comprising sulfonyl and acyl moiety at the position N-12a of 16-membered azalides (6a-n) and azalactams (10a-r) scaffold were synthesized from cyclododecanone 1 as starting material via 5 steps and 4 steps, respectively. The antifungal activity of these compounds against Sclerotinia sclerotiorum, Pyricularia oryzae, Botrytis cinerea, Rhizoctonia solani and Phytophthora capsici were evaluated and found that compounds possessing α-exomethylene (6c, 6d, 6e and 6g) showed antifungal activity comparable to commercial fungicide Chlorothalonil against P. oryzae and compounds possessing p-chlorobenzoyl exhibited enhanced antifungal activity than those with other substituents against S. sclerotiorum, P. oryzae, and B. cinerea. These findings suggested that the α-exomethylene and p-chlorobenzoyl may be two potential pharmacological active groups with antifungal activities.
机译:由环十二烷酮1作为原料,分别通过5个步骤和4个步骤合成了在16元氮杂内酯(6a-n)和氮杂内酰胺(10a-r)支架的N-12a位置上包含磺酰基和酰基部分的新型大环分子。评估了这些化合物对菌核菌,稻瘟病菌,灰霉菌,茄根霉和辣椒疫霉的抗真菌活性,发现具有α-外亚甲基(6c,6d,6e和6g)的化合物显示出与商业杀真菌剂绿藻类似的抗真菌活性。与具有其他取代基的米曲霉,米曲霉和灰质芽孢杆菌相比,米曲霉和具有对氯苯甲酰基的化合物显示出增强的抗真菌活性。这些发现表明,α-异亚甲基和对氯苯甲酰基可能是具有抗真菌活性的两个潜在的药理活性基团。

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