合成了26个4-氟苯基取代的1,5-苯并硫氮杂类化合物2a~2z,其结构经核磁共振波谱、红外光谱和高分辨质谱确证.采用抑菌圈法测试了其对白色念珠菌和新生隐球菌的抑菌活性,结果表明,4-(2,3-二氟苯基)/(2,5-二氟苯基)/(3,4-二氟苯基)-2,3-二氢-1,5-苯并[b]硫氮杂(2a~2f)对新生隐球菌有较强的抑制作用,但杂2a~2z对白色念珠菌均无活性.进一步考察了高活性杂2a~2f对新生隐球菌的最小抑菌浓度(MIC,MIC80)和最小杀菌浓度(MFC),发现其MIC和MFC远低于对照药氟康唑.在此基础上,对杂2a~2f进行了初步构效关系研究,并合成了4个系列21个杂衍生物3a~3f,4a~4f,5a~5f和6a~6c.通过考察其对新生隐球菌的抑菌效果,证明了杂2a~2f分子中的硫原子、碳氮双键结构单元以及2位的甲氧/乙氧羰基是该类化合物抑真菌的必需基团.
Twenty-six 4-fluoropheny-2,3-dihydro-l,5-benzothiazepine derivatives 2a—2z were synthesized and characterized by1 H NMR,13 C NMR,IR and high resolution mass spectrum( HRMS). The antifungal activities of those compounds were screened using the disk diffusion method against C. albicans and C. neoformans. The results showed that benzothiazepines 2a—2f had high antifungal activities against C. neoformans,while all of the benzothiazepines 2a—2z were almost inactive against C. albicans. Furthermore,the 1,5-benzothiazepines2a—2f,which had high antifungal activities,were subjected to further pharmacological evaluation,including minimum inhibitory concentration( MIC,MIC80) and minimum fungicidal concentration( MFC) against C. neoformans. The results revealed that the MIC and MFC values for the above compounds were much lower than those of fluconazole. In order to study the structural features responsible for the antifungal activity of compounds 2a—2f,four series of analogues 3a—3f,4a—4f,5a—5f and 6a—6c were synthesized and tested for their antifungal activities against C. neoformans. The results suggested that the sulfur atoms,C N structure on the seven-membered ring and the methoxycarbonyl / ethoxycarbonyl group at the 2 position are essential for antifungal activity.