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Control of Aedes aegypti larvae with Aea-TMOF mimics: aromatic derivatives of enoic acid.

机译:用Aea-TMOF模拟物控制埃及伊蚊幼虫:烯酸的芳香衍生物。

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Based on the 3D conformation of the N-terminus of TMOF in solution, six aromatic derivatives of enoic acid: 7-biphenyl-4-yl-hept-4-enoic acid (BPHE), 7-(4-butyl-phenyl)-hept-4-enoic acid (BuPHE), 7-cyclohexyl-hept-4-enoic acid (CyHE), 10-phenyl-dec-7-enoic acid (PDE), 7-p-tolyl-hept-2-enoic acid ethyl ester (THEEE) and 7-(4-methoxy-phenyl)-hept-2-enoic acid ethyl ester (MPEEE) were computer-modeled and synthesized. Treating first instar Aedes aegypti larvae with different concentrations of the TMOF mimics showed that addition of butyl to the benzyl ring, use of p-tolyl or converting the benzyl ring into cyclohexane increased the biological activity of the mimics by 5.2, 5.0 and 3.8-fold, respectively. Esterifying the carboxyl terminus into ethyl ester and addition of a methoxy group to the benzyl ring also increased, by 2-fold, the biological activity of the derivative. The position of the double bond in the aliphatic chain is important for enhanced biological activity. Aea-TMOF and CyHE fed to mosquito larvae equally inhibited trypsin biosynthesis in larvae for the first 24 h. The biological activity of CyHE, however, rapidly declined 2-3 days later, whereas TMOF activity stayed stable. These results indicate that TMOF organic mimics, although potent, need to be formulated in order to be more stable for future field applications.
机译:根据溶液中TMOF的N端的3D构象,可得到六种烯酸的芳族衍生物:7-联苯-4-基-庚-4-烯酸(BPHE),7-(4-丁基-苯基)-庚-4-烯酸(BuPHE),7-环己基庚-4-烯酸(CyHE),10-苯基-癸-7-烯酸(PDE),7-对甲苯基-庚-2-烯酸对乙基乙酯(THEEE)和7-(4-甲氧基-苯基)-庚-2-烯酸乙酯(MPEEE)进行计算机建模和合成。用不同浓度的TMOF模拟物处理第一龄的埃及伊蚊幼虫显示,向苄基环中添加丁基,使用对甲苯基或将苄基环转化为环己烷可使模拟物的生物活性提高5.2、5.0和3.8倍, 分别。将羧基末端酯化成乙酯并将甲氧基加到苄基环上也使衍生物的生物活性提高了2倍。脂族链中双键的位置对于增强生物活性很重要。在最初的24小时内,喂食蚊子幼虫的Aea-TMOF和CyHE同样抑制了幼虫中胰蛋白酶的生物合成。然而,CyHE的生物学活性在2-3天后迅速下降,而TMOF活性保持稳定。这些结果表明,TMOF有机模拟物虽然有效,但仍需配制,以使其在将来的现场应用中更加稳定。

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