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Antileishmanial Activity and Structure-Activity Relationship of Triazolic Compounds Derived from the Neolignans Grandisin Veraguensin and Machilin G

机译:源自新木脂素维拉菌素和马奇林G的三唑类化合物的抗leishmanial活性和构效关系。

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摘要

Sixteen 1,4-diaryl-1,2,3-triazole compounds >4–>19 derived from the tetrahydrofuran neolignans veraguensin >1, grandisin >2, and machilin G >3 were tested against Leishmania (Leishmania) amazonensis intracellular amastigotes. Triazole compounds >4–>19 were synthetized via Click Chemistry strategy by 1,3-dipolar cycloaddition between terminal acetylenes and aryl azides containing methoxy and methylenedioxy groups as substituents. Our results suggest that most derivatives were active against intracellular amastigotes, with IC50 values ranging from 4.4 to 32.7 µM. The index of molecular hydrophobicity (ClogP) ranged from 2.8 to 3.4, reflecting a lipophilicity/hydrosolubility rate suitable for transport across membranes, which may have resulted in the potent antileishmanial activity observed. Regarding structure-activity relationship (SAR), compounds >14 and >19, containing a trimethoxy group, were the most active (IC50 values of 5.6 and 4.4 µM, respectively), with low cytotoxicity on mammalian cells (SI = 14.1 and 10.6). These compounds induced nitric oxide production by the host macrophage cells, which could be suggested as the mechanism involved in the intracellular killing of parasites. These results would be useful for the planning of new derivatives with higher antileishmanial activities.
机译:来自四氢呋喃新木脂素veraguensin > 1 ,格兰迪菌素>的十六种1,4-二芳基-1,2,3-三唑化合物> 4 – > 19 测试了> 2 和machilin G > 3 对利什曼原虫(Leishmania)amazonensis细胞内羊膜炎的测试。三唑化合物> 4 – > 19 是通过Click Chemistry策略通过在末端乙炔和含有甲氧基和亚甲二氧基取代基的芳基叠氮化物之间进行1,3-偶极环加成反应合成的。我们的结果表明,大多数衍生物具有抗细胞内变形虫的作用,IC50值范围为4.4至32.7 µM。分子疏水性指数(ClogP)在2.8到3.4之间,反映了适合跨膜运输的亲脂性/水溶性,这可能导致观察到强效的抗菌活性。关于结构活性关系(SAR),包含三甲氧基的化合物> 14 和> 19 最具活性(IC50值分别为5.6和4.4 µM),对哺乳动物细胞的低细胞毒性(SI = 14.1和10.6)。这些化合物诱导宿主巨噬细胞产生一氧化氮,这可能被认为是参与寄生虫细胞内杀伤的机制。这些结果对于规划具有更高抗菌活性的新衍生物将是有用的。

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