REQUIMTE/LAQV, Laboratory of Pharmacognosy, Department of Chemistry, Faculty of Pharmacy, University of Porto, R. Jorge Viterbo Ferreira, 228, 4050-313 Porto, Portugal.
Centre of Chemistry, Department of Chemistry, University of Minho, Campus of Gualtar, 4710-057 Braga, Portugal.
Molecules. 2021 Oct 31;26(21):6616. doi: 10.3390/molecules26216616.
A series of β-amino alcohols were prepared by the reaction of eugenol epoxide with aliphatic and aromatic amine nucleophiles. The synthesized compounds were fully characterized and evaluated as potential insecticides through the assessment of their biological activity against insect cells, compared with a commercial synthetic pesticide (chlorpyrifos, CHPY). Three derivatives bearing a terminal benzene ring, either substituted or unsubstituted, were identified as the most potent molecules, two of them displaying higher toxicity to insect cells than CHPY. In addition, the most promising molecules were able to increase the activity of serine proteases (caspases) pivotal to apoptosis and were more toxic to insect cells than human cells. Structure-based inverted virtual screening and molecular dynamics simulations demonstrate that these molecules likely target acetylcholinesterase and/or the insect odorant-binding proteins and are able to form stable complexes with these proteins. Encapsulation assays in liposomes of DMPG and DPPC/DMPG (1:1) were performed for the most active compound, and high encapsulation efficiencies were obtained. A thermosensitive formulation was achieved with the compound release being more efficient at higher temperatures.
一系列β-氨基醇通过丁香酚环氧化物与脂肪族和芳香族胺亲核试剂的反应制备。合成的化合物经过充分表征,并通过评估它们对昆虫细胞的生物活性来评估它们作为潜在杀虫剂的潜力,与商业合成农药(毒死蜱,CHPY)进行了比较。三个带有末端苯环的衍生物,无论是取代的还是未取代的,被鉴定为最有效的分子,其中两个对昆虫细胞的毒性比 CHPY 更高。此外,最有前途的分子能够增加对细胞凋亡至关重要的丝氨酸蛋白酶(半胱天冬酶)的活性,并且对昆虫细胞的毒性比人细胞更高。基于结构的反向虚拟筛选和分子动力学模拟表明,这些分子可能靶向乙酰胆碱酯酶和/或昆虫气味结合蛋白,并能够与这些蛋白形成稳定的复合物。对最活跃的化合物进行了 DMPG 和 DPPC/DMPG(1:1)的脂质体包封实验,获得了高包封效率。实现了热敏制剂,在较高温度下化合物的释放效率更高。