Design and synthesis of new imidazolinone derivatives as potential antifungal agents
作者:Navin B. Patel、Hemant R. Patel
DOI:10.1002/jhet.588
日期:2011.3
6c, 6d, 6e, 6f, 6g, 6h, 6i, 6j, 6k, 6l, 6m, 6n, 6o) were synthesized from the reaction of pyrimidine and oxazolone derivatives (prepared by Erlenmeyer azlactone synthesis). The structures of the synthesized compounds were assigned on the basis of elemental analyses, IR, 1H‐NMR, and 13C‐NMR spectral data. All the products were screened against different strains of bacteria and fungi. Most of these compounds
描述了一系列新的查耳酮,嘧啶和咪唑啉酮。查耳酮(4a,4b,4c,4d,4e,4f,4g,4h,4i,4j,4k,4l,4m,4n,4o)是由铅4 [2-(5-乙基吡啶-2--2-基)制成的乙氧基]苯甲醛。嘧啶类(5a,5b,5c,5d,5e,5f,5g,5h,5I,5J,5K,5升,5米,5N,50)是从查尔酮在碱介质中的反应和硝酸胍制备。咪唑啉酮(6a,6b,6c,6d,6e,6f,6g,6h,6i,6j,6k,6l,6m,6n,6o由嘧啶和恶唑酮衍生物的反应(由Erlenmeyer氮杂内酯合成制备)合成。根据元素分析,IR,1 H-NMR和13 C-NMR光谱数据指定合成化合物的结构。对所有产品进行了针对不同菌株的细菌和真菌的筛选。与标准药物相比,这些化合物大多数显示出更好的抑制活性。J.杂环化学。(2011)。