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探索基于酰基硫代三嗪并吲哚的药效团:设计、合成及构效关系研究,采用分子对接技术对尿素酶、α-淀粉酶、α-葡萄糖苷酶进行生物活性谱分析,以及对抗菌和抗氧化靶点的研究。

Exploring Acyl Thiotriazinoindole Based Pharmacophores: Design, Synthesis, and SAR Studies with Molecular Docking and Biological Activity Profiling against Urease, α-amylase, α-glucosidase, Antimicrobial, and Antioxidant Targets.

机构信息

Department of Chemistry, Quaid-I-Azam University, Islamabad, 45320, Pakistan.

Department of Biochemistry and Biotechnology, University of Gujrat, Gujrat, 50700, Pakistan.

出版信息

Protein J. 2024 Oct;43(5):1009-1024. doi: 10.1007/s10930-024-10229-6. Epub 2024 Sep 2.

Abstract

A diminutive chemical library of acyl thiotriazinoindole (ATTI) based bioactive scaffolds was synthesized, instigated by taking the economical starting material Isatin, through a series of five steps. Isatin was first nitrated followed by the attachment of pentyl moiety via nucleophilic substitution reaction. The obtained compound was reacted with thiosemicarbazide to obtain thiosemicarbazone derivative, which was eventually cyclized using basic conditions in water as solvent. Finally, the reported series was obtained through reaction of nitrated thiotriazinoindole moiety with differently substituted phenacyl bromides. The synthesized compounds were characterized using NMR spectroscopy and elemental analysis. Finally, the synthesized motifs were scrutinized for their potential to impede urease, α-glucosidase, DPPH, and α-amylase. Compound 5 h with para cyano group manifested the most pivotal biological activity among all, displaying IC values of 29.7 ± 0.8, 20.5 ± 0.5 and 36.8 ± 3.9 µM against urease, α-glucosidase, and DPPH assay, respectively. Simultaneously, for α-amylase compound 5 g possessing a p-CH at phenyl ring unfolded as most active, with calculated IC values 90.3 ± 1.1 µM. The scaffolds were additionally gauged for their antifungal and antibacterial activity. Among the tested strains, 5d having bromo as substituent exhibited the most potent antibacterial activity, while it also demonstrated the highest potency against Aspergillus fumigatus. Other derivatives 5b, 5e, 5i, and 5j also exhibited dual inhibition against both antibacterial and antifungal strains. The interaction pattern of derivatives clearly displayed their SAR, and their docking scores were correlated with their IC values. In molecular docking studies, the importance of interactions like hydrogen bonding was further asserted. The electronic factors of various substituents engendered variety of interactions between the ligands and targets implying their importance in the structures of the synthesized heterocyclic scaffolds. To conclude, the synthesized compounds had satisfactory biological activity against various important targets. Further studies are therefore encouraged by attachment of different substitutions in the structure at various positions to enhance the activity of these compounds.

摘要

我们合成了一系列基于酰基噻三嗪并吲哚(ATTI)的小型化化学文库,该文库以经济的起始原料靛红为原料,通过五步反应得到。首先对靛红进行硝化,然后通过亲核取代反应引入戊基。得到的化合物与氨基硫脲反应得到缩氨基硫脲衍生物,然后在水作为溶剂的碱性条件下环化。最后,通过硝化噻三嗪并吲哚部分与不同取代的苯乙酮溴反应得到报告的系列化合物。合成的化合物通过 NMR 光谱和元素分析进行了表征。最后,对合成的母体化合物进行了抑制脲酶、α-葡萄糖苷酶、DPPH 和α-淀粉酶的潜力研究。带有对氰基的化合物 5h 表现出最强的生物活性,对脲酶、α-葡萄糖苷酶和 DPPH 测定的 IC 值分别为 29.7±0.8、20.5±0.5 和 36.8±3.9µM。同时,对于α-淀粉酶,苯环上带有 p-CH 的化合物 5g 表现出最强的活性,计算的 IC 值为 90.3±1.1µM。这些支架还被评估了它们的抗真菌和抗菌活性。在所测试的菌株中,具有溴取代基的 5d 表现出最强的抗菌活性,同时对烟曲霉也表现出最高的活性。其他衍生物 5b、5e、5i 和 5j 也对两种抗菌和抗真菌菌株表现出双重抑制作用。衍生物的相互作用模式清楚地显示了它们的 SAR,它们的对接分数与它们的 IC 值相关。在分子对接研究中,进一步证明了氢键等相互作用的重要性。各种取代基的电子因素在配体和靶标之间产生了各种相互作用,这表明它们在合成杂环支架结构中的重要性。总之,合成的化合物对各种重要靶标具有令人满意的生物活性。因此,通过在结构的不同位置连接不同的取代基,进一步研究这些化合物的活性是值得鼓励的。

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