Guanylhydrazone and semicarbazone derivatives as potential prototypes for the design of cholinesterase inhibitors against Alzheimer's disease: biological evaluation and molecular modeling studies

IF 4.7 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Denise Cristian Ferreira Neto , Joyce Sobreiro Francisco Diz , Sulayne Janayna Araújo Guimarães , Eduardo Mendes dos Santos , Maria do Desterro Soares Brandão Nascimento , Ana Paula Silva de Azevedo-Santos , Tanos Celmar Costa França , Steven R. LaPlante , Claudia Jorge do Nascimento , Josélia Alencar Lima
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Abstract

Despite being present in many drugs, guanylhydrazones and semicarbazones are two functional groups that have been little investigated as potential therapeutic strategies for the treatment of Alzheimer's disease (AD). For this reason, we initiated the synthesis and evaluation of these compounds as potential anticholinesterase agents, aiming to offer new alternatives for drug development against AD. In the severe phase of AD butyrylcholinesterase (BChE) becomes the main enzyme responsible for the hydrolysis of acetylcholine (ACh). Therefore, in this project, we present the results of BChE inhibitory activity, enzyme kinetics, cytotoxicity, and molecular modeling studies for three guanylhydrazone and two semicarbazone derivatives that were previously synthesized and evaluated as acetylcholinesterase (AChE) inhibitors. Among the compounds tested, guanylhydrazones (1, 2, and 3) showed inhibitory activity against BChE, exhibiting a mixed non-competitive inhibition profile. Specifically, compound 2 (phenanthrenequinone) demonstrated superior inhibitory potency with an IC50 of 0.68 μM, compared to compound 1 (acridinone) with an IC50 of 3.87 μM, and compound 3 (benzodioxole) with an IC50 of 101.7 μM. In contrast, semicarbazones (4 and 5) showed no BChE inhibition up to the highest concentration tested (300 μM). Importantly, all five compounds were found to be non-cytotoxic. Our results suggest that these compounds have potential as drug prototypes targeting different phases of AD. Compounds 3, 4, and 5 may be more effective in the early phase, when AChE activity remains high; compound 1 could be useful in the intermediate phase; and compound 2 appears particularly promising for the severe phase, when BChE plays a more dominant role.

Abstract Image

鸟酰腙和氨基脲衍生物作为设计抗阿尔茨海默病胆碱酯酶抑制剂的潜在原型:生物学评价和分子模型研究
尽管存在于许多药物中,但鸟苷酰肼和半咔唑酮这两个官能团作为治疗阿尔茨海默病(AD)的潜在治疗策略却鲜有研究。因此,我们开始合成和评估这两种化合物,并将其作为潜在的抗胆碱酯酶药物,旨在为治疗阿尔茨海默病的药物开发提供新的选择。在老年痴呆症的严重阶段,丁酰胆碱酯酶(BChE)成为乙酰胆碱(ACh)水解的主要酶。因此,在本项目中,我们展示了之前合成并作为乙酰胆碱酯酶(AChE)抑制剂评估的三种鸟苷腙和两种半咔唑酮衍生物的 BChE 抑制活性、酶动力学、细胞毒性和分子模型研究结果。在测试的化合物中,鸟苷腙(1、2 和 3)对 BChE 具有抑制活性,表现出混合非竞争性抑制特征。具体来说,化合物 2(菲醌)的抑制效力更强,IC50 为 0.68 μM,而化合物 1(吖啶酮)的 IC50 为 3.87 μM,化合物 3(苯并二恶唑)的 IC50 为 101.7 μM。相比之下,半咔唑酮类化合物(4 和 5)在测试的最高浓度(300 μM)下对 BChE 没有抑制作用。重要的是,这五种化合物均无细胞毒性。我们的研究结果表明,这些化合物有可能成为针对AD不同阶段的药物原型。化合物 3、4 和 5 可能对 AChE 活性仍然很高的早期阶段更有效;化合物 1 可能对中期阶段有用;化合物 2 似乎对 BChE 起主导作用的严重阶段特别有希望。
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来源期刊
CiteScore
7.70
自引率
3.90%
发文量
410
审稿时长
36 days
期刊介绍: Chemico-Biological Interactions publishes research reports and review articles that examine the molecular, cellular, and/or biochemical basis of toxicologically relevant outcomes. Special emphasis is placed on toxicological mechanisms associated with interactions between chemicals and biological systems. Outcomes may include all traditional endpoints caused by synthetic or naturally occurring chemicals, both in vivo and in vitro. Endpoints of interest include, but are not limited to carcinogenesis, mutagenesis, respiratory toxicology, neurotoxicology, reproductive and developmental toxicology, and immunotoxicology.
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