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Computer-aided molecular design of pyrazolotriazines targeting glycogen synthase kinase 3

机译:吡唑并三嗪靶向糖原合酶激酶3的计算机辅助分子设计

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摘要

Numerous studies have highlighted the implications of the glycogen synthase kinase 3 (GSK-3) in several processes associated with Alzheimer’s disease (AD). Therefore, GSK-3 has become a crucial therapeutic target for the treatment of this neurodegenerative disorder. Hereby, we report the design and multistep synthesis of ethyl 4-oxo-pyrazolo[4,3-d][1–3]triazine-7-carboxylates and their biological evaluation as GSK-3 inhibitors. Molecular modelling studies allow us to develop this new scaffold optimising the chemical structure. Potential binding mode determination in the enzyme and the analysis of the key features in the catalytic site are also described. Furthermore, the ability of pyrazolotriazinones to cross the blood–brain barrier (BBB) was evaluated by passive diffusion and those who showed great GSK-3 inhibition and permeation to the central nervous system (CNS) showed neuroprotective properties against tau hyperphosphorylation in a cell-based model. These new brain permeable pyrazolotriazinones may be used for key in vivo studies and may be considered as new leads for further optimisation for the treatment of AD.
机译:大量研究强调了糖原合酶激酶3(GSK-3)在与阿尔茨海默氏病(AD)相关的多个过程中的意义。因此,GSK-3已成为治疗该神经退行性疾病的关键治疗靶标。因此,我们报告了4-氧代吡唑并[4,3-d] [1-3]三嗪-7-羧酸盐的设计和多步合成及其作为GSK-3抑制剂的生物学评估。分子模型研究使我们能够开发优化化学结构的新型支架。还描述了酶中潜在的结合模式测定以及催化位点中关键特征的分析。此外,吡唑并三嗪酮穿越血脑屏障(BBB)的能力通过被动扩散进行了评估,那些表现出出色的GSK-3抑制作用并渗透到中枢神经系统(CNS)的人表现出对tau蛋白过度磷酸化的神经保护特性。基于模型。这些新的脑可渗透的吡唑并三嗪酮可用于关键的体内研究,并可被视为进一步优化AD治疗的新线索。

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