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首页> 外文期刊>Neurotoxicity research >Rational Design, Synthesis, and In Vitro Neuroprotective Evaluation of Novel Glitazones for PGC-1 alpha Activation via PPAR-gamma: a New Therapeutic Strategy for Neurodegenerative Disorders
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Rational Design, Synthesis, and In Vitro Neuroprotective Evaluation of Novel Glitazones for PGC-1 alpha Activation via PPAR-gamma: a New Therapeutic Strategy for Neurodegenerative Disorders

机译:通过PPAR-Gamma的PGC-1α激活新颖的Glitazone的合理设计,合成和体外神经保护评价:神经变性障碍的新治疗策略

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In the present study, two structurally diverse novel glitazones were designed and synthesized for activation of central PGC-1 alpha signaling through stimulation of PPAR-gamma receptor. The functional interaction between PGC-1 alpha and PPAR-gamma is a key interaction in the normal physiology of neuroprotective mechanism. Therefore, activation of PPAR-gamma-dependent PGC-1 alpha co-activator signaling could be an effective strategy to exhibit neuroprotection in several neurodegenerative disorders like Alzheimer's disease, Parkinson's disease, and cerebral ischemia. As part of rational design, analogs were designed manually based on principles of bioisosterism, followed by virtually screened using docking to predict the mode of interaction of compound towards the binding site and molecular dynamic simulation to observe the structural changes that occur during compound interaction with active site. The designed two glitazones (G1, G2) were synthesized and structurally analyzed. As part of evaluation, synthesized glitazones were subjected for preliminary neuroprotective evaluation in Lipopolysaccharide (LPS) intoxicated SH-SY5Y neuroblastoma cells. The results indicate that pre-treatment with synthesized glitazones have increased the percentage cell viability, protected the cell morphology, and decreased the release of pro-inflammatory cytokines (IL-1 beta, TNF-alpha), lipid peroxide (LPO), and nitric oxide (NO) level in LPS intoxicated SH-SY5Y cells. Interestingly, among the two glitazones, G2 has shown significant neuroprotection in comparison to G1 and neuroprotective effect exerted by G2 was similar and comparable with the standard pioglitazone. Altogether, neuroprotection exhibited by this non-thiazolidione-based glitazones during neuroinflammatory conditions may be attributed to the activation of central PGC-1 alpha signaling via PPAR-gamma receptor.
机译:在本研究中,设计了两种结构各种新的凝胶藻酮,并通过刺激PPAR-Gamma受体来激活中央PGC-1α信号传导。 PGC-1α和PPAR-Gamma之间的功能相互作用是神经保护机制正常生理中的关键相互作用。因此,激活PPAR-Gamma依赖性PGC-1α共激活物信号传导可能是在阿尔茨海默病,帕金森病和脑缺血等几种神经变性障碍中表现出神经保护的有效策略。作为理性设计的一部分,基于生物睾丸原理手动设计类似物,然后使用对接预测化合物对结合位点的相互作用和分子动态模拟以观察在与活性的化合物相互作用期间发生的结构变化的相互作用模式。地点。合成设计的两个Glitazones(G1,G2)并在结构上分析。作为评价的一部分,对脂多糖(LPS)陶醉的SH-SY5Y神经母细胞瘤细胞进行初步神经保护评估。结果表明,用合成的峡谷酮预处理增加了细胞活力,保护细胞形态,并降低了促炎细胞因子(IL-1β,TNF-α),脂质过氧化物(LPO)和硝酸释放的释放LPS陶醉的SH-SY5Y细胞中的氧化物(NO)水平。有趣的是,在两个Gliitazones中,G2显示出与G1的比较显着的神经保护作用,并且G2施加的神经保护作用类似且与标准吡酰肾上腺素相似。在神经炎症条件下,基于非噻唑烷基唑酮表现出的神经保护术可以归因于通过PPAR-γ受体激活中央PGC-1α信号传导。

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