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一类有前途的杀螨四氢异喹啉衍生物:合成、生物评价和构效关系。

A class of promising acaricidal tetrahydroisoquinoline derivatives: synthesis, biological evaluation and structure-activity relationships.

机构信息

College of Science, Northwest A&F University, Yangling, Shaanxi 712100, China.

College of Life Science, Northwest A&F University, Yangling, Shaanxi 712100, China.

出版信息

Molecules. 2014 Jun 16;19(6):8051-66. doi: 10.3390/molecules19068051.

Abstract

As part of our continuing research on isoquinoline acaricidal drugs, this paper reports the preparation of a series of the 2-aryl-1-cyano-1,2,3,4-tetrahydroisoquinolines with various substituents on the N-phenyl ring, their in vitro acaricidal activities against Psoroptes cuniculi, a mange mite, and discusses their SAR as well. The structures of all compounds, including 12 new ones, were elucidated by analysis of UV, IR, NMR, ESI-MS, HR-MS spectra and X-ray diffraction experiments. All target compounds showed varying degrees of activity at 0.4 mg/mL. Compound 1 showed the strongest activity, with a 50% lethal concentration value (LC50) of 0.2421 μg/mL and 50% lethal time value (LT50) of 7.79 h, comparable to the standard drug ivermectin (LC50 = 0.2474 μg/mL; LT50 = 20.9 h). The SAR showed that the substitution pattern on the N-aromatic ring exerted a significant effect on the activity. The substituents 2'-F, 3'-F, 2'-Cl, 2'-Br and 2'-CF3 remarkably enhanced the activity. Generally, for the isomers with the same substituents at different positions, the order of the activity was ortho > meta > para. It was concluded that the target compounds represent a class of novel promising candidates or lead compounds for the development of new tetrahydroisoquinoline acaricidal agents.

摘要

作为我们对异喹啉杀螨药物持续研究的一部分,本文报道了一系列带有各种取代基的 2-芳基-1-氰基-1,2,3,4-四氢异喹啉的制备,这些化合物对兔痒螨(Psoroptes cuniculi)的体外杀螨活性,并讨论了它们的构效关系。所有化合物的结构,包括 12 个新化合物,都通过分析 UV、IR、NMR、ESI-MS、HR-MS 光谱和 X 射线衍射实验得到了阐明。所有目标化合物在 0.4mg/mL 时都表现出不同程度的活性。化合物 1 表现出最强的活性,其 50%致死浓度值(LC50)为 0.2421μg/mL,50%致死时间值(LT50)为 7.79h,与标准药物伊维菌素(LC50=0.2474μg/mL;LT50=20.9h)相当。构效关系表明,N-芳环上的取代模式对活性有显著影响。2'-F、3'-F、2'-Cl、2'-Br 和 2'-CF3 取代基显著增强了活性。一般来说,对于具有相同取代基在不同位置的异构体,活性顺序为邻位>间位>对位。结论是,目标化合物代表了一类新型的有前途的候选化合物或先导化合物,可用于开发新的四氢异喹啉杀螨剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6da/6271959/4e4a9a2a0645/molecules-19-08051-g001.jpg

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