Department of Chemistry, Centre for Analysis and Synthesis, Lund University, 22100 Lund, Sweden.
Centre of Agroindustrial Technology, San Simón University, Cochabamba 3299, Bolivia.
Molecules. 2020 Oct 1;25(19):4510. doi: 10.3390/molecules25194510.
Neglected tropical diseases affect most of the underprivileged populations in tropical countries. Among these are chagas and leishmaniasis, present mainly in South and Central America, Africa and East Asia. Current treatments are long and have severe adverse effects, therefore there is a strong need to develop alternatives. In this study, we base our research on the plant metabolite pulchrol, a natural benzochromene which has been shown to possess antiparasitic activity against and species. In a recent study, we investigated how changes in the benzyl alcohol functionality affected the antiparasitic activity, but the importance of B- and C-ring substituents is not understood. Fifteen derivatives of pulchrol with different substituents in positions 1, 2, 3, and 6 while leaving the A-ring intact, were therefore prepared by total synthesis, assayed, and compared with pulchrol and positive controls. The generated series and parental molecule were tested in vitro for antiparasitic activity against , , and , and cytotoxicity using RAW cells. Substantial differences in the activity of the compounds synthesized were observed, of which some were more potent towards than the positive control benznidazole. A general tendency is that alkyl substituents improve the potency, especially when positioned on C-2.
被忽视的热带病影响着热带国家的大多数贫困人群。其中包括恰加斯病和利什曼病,主要分布在南美洲、中美洲、非洲和东亚。目前的治疗方法漫长且有严重的不良反应,因此强烈需要开发替代方法。在这项研究中,我们以植物代谢产物 pulchrol 为研究基础,它是一种天然苯并色烯,已被证明具有抗寄生虫活性,可对抗 和 物种。在最近的一项研究中,我们研究了苯甲醇功能的变化如何影响抗寄生虫活性,但 B 环和 C 环取代基的重要性尚不清楚。因此,我们通过全合成制备了 15 种不同取代基的 pulchrol 衍生物,取代基位于 1、2、3 和 6 位,而 A 环保持不变,并与 pulchrol 和阳性对照物进行了测定和比较。所生成的系列和母体分子在体外针对 、 、 和 进行了抗寄生虫活性测试,并使用 RAW 细胞进行了细胞毒性测试。所合成的化合物的活性存在显著差异,其中一些化合物对 的活性比阳性对照物苯并硝唑更强。一般来说,烷基取代基可以提高活性,尤其是当位于 C-2 位时。