Department of Chemistry, Illinois State University, Campus Box 4160, Normal, IL 61790-4160, USA.
Molecules. 2020 Nov 21;25(22):5461. doi: 10.3390/molecules25225461.
Construction of a focused library of polycyclic ether-benzopyrans was undertaken in order to discover new therapeutic compounds that affect growth and infectivity. This is especially of interest since there are few drug therapies for leishmaniasis that do not have serious drawbacks such high cost, side effects, and emerging drug resistance. The construction of these polycyclic ether-benzopyrans utilized an acetoxypyranone-alkene [5+2] cycloaddition and the Suzuki-Miyaura cross-coupling. The multi-gram quantity of the requisite aryl bromide was obtained followed by effective Pd-catalyzed coupling with boronic acid derivatives. Compounds were tested in vitro using the parasitic protozoan, . Effects of concentration, time, and exposure to light were evaluated. In addition, the effects on secreted acid phosphatase activity and nitric oxide production were investigated, since both have been implicated in parasite infectivity. The data presented herein are indicative of disruption of the and thus provide impetus for the development and testing of a more extensive library.
为了发现影响生长和感染力的新型治疗化合物,我们构建了一个聚环醚苯并吡喃的聚焦文库。这是特别有趣的,因为对于利什曼病,几乎没有没有严重缺点的药物治疗方法,如高成本、副作用和新出现的药物耐药性。这些聚环醚苯并吡喃的构建利用了乙酰氧基吡喃酮-烯烃[5+2]环加成和铃木-宫浦交叉偶联。所需的芳基溴化物的多克数量得到了,然后与硼酸衍生物进行有效的 Pd 催化偶联。使用寄生原生动物进行了化合物的体外测试。评估了浓度、时间和暴露于光的影响。此外,还研究了对分泌酸性磷酸酶活性和一氧化氮产生的影响,因为这两者都与寄生虫感染力有关。本文提供的数据表明对的破坏,从而为更广泛文库的开发和测试提供了动力。