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Design, synthesis and molecular modelling of new bulky Fananserin derivatives with altered pharmacological profile as potential antidepressants

机译:具有改变药理学型材作为潜在抗抑郁药的新庞大凡人素衍生物的设计,合成与分子建模

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It is now known that many neurotransmitter systems are responsible for diseases of the central nervous system (CNS). One of the most common CNS disease is depression. Considering that in the treatment and the genesis of depression, the most important are the serotonin receptors from 5-HT1A, 5-HT2A, 5-HT6 and 5-HT7 groups, and dopamine D2R this article describes searching for group of new ligands for mentioned receptors. In the searching for potentially useful compound, we decided to start from the structure of well-known Fananserin. We tried to developed new derivatives, with changed profile of activity compared to Fananserin. Literature analysis and virtual screening emerged group of halogenated long-chain arylpiperazines derivatives of 1,8 naphthosultam/lactam with hexyl carbon chain to synthesis. The compounds obtaining method was developed with a microwave assisted synthesis. Reactions were carried out in acetonitrile, water or in solvent-free conditions. The obtained compounds were tested for their affinity for the serotonin receptors mentioned above. The work managed to obtain compounds acting on selected serotonin receptors, including multifunctional 5-HT1A/5-HT7/D-2 ligand 5k, dual 5-HT1A/D-2 ligand 5j and selective 5-HT1A ligands 5r and 5c. The SAR analysis showed a visible dependence of affinity for the 5-HT6 receptors from structure of ligands. This relationship was discussed using molecular docking methods. A conformal analysis was also performed for selected ligands and the Fukui indexes were calculated using the DFT (B3LYP/6-311+G (d, p) level of theory) methods. The conducted research and analysis using molecular docking methods allows for selecting further pathways of structural modifications in the design of new ligands for serotonin receptors belonging to the group mentioned. What is more, conducted research show the potential using of Fukui indices to predict the biological activity of new molecules.
机译:现在已知许多神经递质系统负责中枢神经系统(CNS)的疾病。其中一个最常见的CNS病是抑郁症。考虑到在治疗和抑郁症的起源中,最重要的是来自5-HT1A,5-HT2A,5-HT6和5-HT7组的血清素受体,并且多巴胺D2R本文描述了用于提到的新配体组的研究受体。在寻找潜在的有用的化合物中,我们决定从众所周知的凡凡人的结构开始。我们试图开发出新的衍生品,与Fananserin相比,活动更改了活动简介。文献分析与虚拟筛选出现的1,8萘磺酸/内酰胺的卤代长链芳基哌嗪衍生物与合成己酰碳链的衍生物。化合物获得方法是用微波辅助合成产生的。反应在乙腈,水或无溶剂条件下进行。测试所得化合物对上述血清素受体的亲和力。管理的作品可获得作用于所选血清素受体的化合物,包括多功能5-HT1A / 5-HT7 / D-2配体5K,双5-HT1A / D-2配体5J和选择性5-HT1A配体5R和5C。 SAR分析表明,来自配体的结构的5-HT6受体的亲和力的可见依赖性。使用分子对接方法讨论这种关系。还对所选配体进行共形分析,使用DFT(B3LYP / 6-311 + G(D,P)理论水平)计算福禄指标。使用分子对接方法进行的研究和分析允许在属于所述组的血清素受体的新配体的设计中选择进一步的结构修饰途径。更重要的是,进行的研究表明,福禄指数的潜在使用来预测新分子的生物学活性。

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