da Silva Aline Franzen, Cordeiro Larissa Marafiga, Soares Marcell Vallandro, Zamberlan Danielle Coradini, Baptista Fabiane Bicca Obetine, da Silveira Tássia Limana, Machado Marina Lopes, Arantes Leticia Priscilla, Nuñez-Figueredo Yanier, Rodríguez Estael Ochoa, Soares Félix Alexandre Antunes
Universidade Federal de Santa Maria, Centro de Ciências Naturais e Exatas, Departamento de Bioquímica e Biologia Molecular, Programa de Pós-graduação em Ciências Biológicas: Bioquímica Toxicológica, Camobi, Zip code 97105-900, Santa Maria, RS, Brazil.
Universidade Federal da Integração Latino-Americana, Instituto Latino-Americano de Ciências da Vida e da Natureza, Zip code 85870-650, Foz do Iguaçu, PR, Brazil.
Neurotoxicology. 2022 Dec;93:37-44. doi: 10.1016/j.neuro.2022.08.012. Epub 2022 Aug 24.
Along with the discovery of new candidate molecules for pharmaceuticals, several studies have emerged showing different mechanisms of action and toxicological aspects. 3-ethoxycarbonyl-2-methyl-4- (2-nitrophenyl)4,11-dihydro-1 H-pyrido [2,3-b] [1,5] benzodiazepine (JM-20) is a hybrid molecule. It is derived from 1,5-benzodiazepines and structurally differentiated by the addition of 1,4-dihydropyridine bonded to the benzodiazepine ring. This gives this molecule potential neuroprotective, antioxidant, and anxiolytic activity. As this is a promising multi-target molecule, further studies are necessary to improve the knowledge about its mechanism of action. In our study, we used Caenorhabditis elegans (C. elegans) to investigate the effects of chronic treatment with JM-20. Nematodes from the wild-type strain (N2) were treated chronically at different concentrations of JM-20. Our results show that JM-20 does not cause mortality, but higher concentrations can delay the development of worms after 48 h exposure. We assessed basic behaviors in the worm, and our data demonstrate decreased defecation cycle. Our results suggest that JM-20 acts on the C. elegans GABAergic system because GABA neurotransmission is associated with the worm intestine. We also observed increased locomotor activity and decreased egg-laying after JM-20 treatment. When both behaviors were evaluated in mutants with have reduced levels of GABA (unc-25), this effect is no observed, suggesting the GABAergic modulation. Still, the JM-20 exert similar effect of Diazepam in basic behaviors observed. To reinforce neuromodulatory action, computational analysis was performed, and results showed a JM-20 binding on allosteric sites of nematodes GABA receptors. Overall, this work provided a better understanding of the effects of JM-20 in C. elegans as well as showed the effects of this new molecule on the GABAergic system in this animal model.
随着新型候选药物分子的发现,出现了几项研究,展示了不同的作用机制和毒理学方面。3-乙氧羰基-2-甲基-4-(2-硝基苯基)-4,11-二氢-1H-吡啶并[2,3-b][1,5]苯二氮䓬(JM-20)是一种杂合分子。它源自1,5-苯二氮䓬,通过添加与苯二氮䓬环相连的1,4-二氢吡啶在结构上有所区别。这赋予了该分子潜在的神经保护、抗氧化和抗焦虑活性。由于这是一个有前景的多靶点分子,有必要进行进一步研究以增进对其作用机制的了解。在我们的研究中,我们使用秀丽隐杆线虫(线虫)来研究JM-20慢性处理的影响。来自野生型菌株(N2)的线虫用不同浓度的JM-20进行慢性处理。我们的结果表明,JM-20不会导致死亡,但较高浓度在暴露48小时后会延迟线虫的发育。我们评估了线虫的基本行为,我们的数据表明排便周期减少。我们的结果表明,JM-20作用于线虫的GABA能系统,因为GABA神经传递与线虫肠道相关。我们还观察到JM-20处理后运动活性增加和产卵减少。当在GABA水平降低的突变体(unc-25)中评估这两种行为时,未观察到这种效应,表明存在GABA能调节。此外,JM-20在观察到的基本行为中发挥与地西泮相似的作用。为了加强神经调节作用,进行了计算分析,结果显示JM-20与线虫GABA受体的变构位点结合。总体而言,这项工作更好地理解了JM-20在线虫中的作用,同时也展示了这种新分子在该动物模型中对GABA能系统的影响。