Department of Organic Synthesis, University of Chemical Technology and Metallurgy, 8 Kliment Ohridski Blvd., 1756 Sofia, Bulgaria.
Institute of Organic Chemistry with Centre of Phytochemistry, Bulgarian Academy of Sciences, Acad. G. Bonchev Str. Bl. 9, 1113 Sofia, Bulgaria.
Molecules. 2023 Jun 27;28(13):5034. doi: 10.3390/molecules28135034.
[1,3,5]Triazino[1,2-]benzimidazole-2-amines bearing heterocyclic moiety in 4-position were synthesized. The compounds were characterized by elemental analysis, IR, H-NMR, C-NMR, and HRMS spectroscopy. The molecular geometry and electron structure of these molecules were theoretically studied using density functional theory (DFT) methods. The molecular structure of the synthesized fused triazinobenzimidazole was confirmed to correspond to the 3,4-dihydrotriazinobenzimidazole structure through the analysis of spectroscopic NMR data and DFT calculations. The antinematodic activity was evaluated in vitro on isolated encapsulated muscle larvae (ML) of . The results showed that the tested triazinobenzimidazoles exhibit significantly higher efficiency than the conventional drug used to treat trichinosis, albendazole, at a concentration of 50 μg/mL. The compound substituted with a thiophen-2-yl moiety exhibited the highest anthelmintic activity, with a larvicidal effect of 58.41% at a concentration of 50 μg/mL after 24 h of incubation. Following closely behind, the pyrrole analog demonstrated 49.90% effectiveness at the same concentration. The preliminary structure-anti- activity relationship (SAR) of the analogues in the series was discussed. The cytotoxicity of the benzimidazole derivatives against two normal fibroblast cells (3T3 and CCL-1) and two cancer human cell lines (MCF-7 breast cancer cells and chronic myeloid leukemia cells AR-230) was evaluated using the MTT-dye reduction assay. The screening results indicated that the compounds showed no cytotoxicity against the tested cell lines. An in silico study of the physicochemical and pharmacokinetic characteristics of the novel synthesized fused triazinobenzimidazoles showed that they were characterized by a significant degree of drug-likeness and optimal properties for anthelmintic agents.
[1,3,5]三嗪并[1,2-b]苯并咪唑-2-胺类化合物具有 4-位杂环取代基。通过元素分析、IR、H-NMR、C-NMR 和 HRMS 光谱对化合物进行了表征。使用密度泛函理论(DFT)方法对这些分子的分子几何形状和电子结构进行了理论研究。通过对光谱 NMR 数据和 DFT 计算的分析,确认合成的稠合三嗪并苯并咪唑的分子结构与 3,4-二氢三嗪并苯并咪唑结构相对应。在体外对包封肌肉幼虫(ML)进行抗线虫活性评估。结果表明,在所测试的三嗪并苯并咪唑中,在 50 μg/mL 浓度下,与用于治疗旋毛虫病的常规药物阿苯达唑相比,表现出显著更高的效率。取代噻吩-2-基的化合物表现出最高的驱虫活性,在 24 h 孵育后,在 50 μg/mL 浓度下,幼虫致死率为 58.41%。紧随其后的是吡咯类似物 ,在相同浓度下的有效率为 49.90%。讨论了该系列类似物的初步结构-抗活性关系(SAR)。使用 MTT 染料还原测定法评估了苯并咪唑衍生物对两种正常成纤维细胞(3T3 和 CCL-1)和两种人癌细胞系(乳腺癌细胞 MCF-7 和慢性髓系白血病细胞 AR-230)的细胞毒性。筛选结果表明,这些化合物对测试的细胞系没有细胞毒性。新型稠合三嗪并苯并咪唑的理化和药代动力学特性的计算机研究表明,它们具有显著的药物样性质和驱虫剂的最佳特性。