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新型氟代γ-咔啉衍生物 DF302 具有多靶点作用机制,具有促神经生成、增强记忆和抗应激作用。

Pro-neurogenic, Memory-Enhancing and Anti-stress Effects of DF302, a Novel Fluorine Gamma-Carboline Derivative with Multi-target Mechanism of Action.

机构信息

Division of Molecular Psychiatry, Center of Mental Health, University of Würzburg, 97080, Margarete-Höppel-Platz 1, Würzburg, Germany.

Department of Translational Neuroscience, School for Mental Health and Neuroscience, Maastricht University, Universiteitssingel 40, 6229 ER, Maastricht, The Netherlands.

出版信息

Mol Neurobiol. 2018 Jan;55(1):335-349. doi: 10.1007/s12035-017-0745-6.

Abstract

A comparative study performed in mice investigating the action of DF302, a novel fluoride-containing gamma-carboline derivative, in comparison to the structurally similar neuroprotective drug dimebon. Drug effects on learning and memory, emotionality, hippocampal neurogenesis and mitochondrial functions, as well as AMPA-mediated currents and the 5-HT6 receptor are reported. In the step-down avoidance and fear-conditioning paradigms, bolus administration of drugs at doses of 10 or 40 mg/kg showed that only the higher dose of DF302 improved long-term memory while dimebon was ineffective at either dosage. Short-term memory and fear extinction remained unaltered across treatment groups. During the 5-day predation stress paradigm, oral drug treatment over a period of 2 weeks at the higher dosage regimen decreased anxiety-like behaviour. Both compounds supressed inter-male aggression in CD1 mice, the most eminent being the effects of DF302 in its highest dose. DF302 at the higher dose decreased floating behaviour in a 2-day swim test and after 21-day ultrasound stress. The density of Ki67-positive cells, a marker of adult neurogenesis, was reduced in the dentate gyrus of stressed dimebon-treated and non-treated mice, but not in DF302-treated mice. Non-stressed mice that received DF302 had a higher density of Ki67-positive cells than controls unlike dimebon-treated mice. Similar to dimebon, DF302 effectively potentiated AMPA receptor-mediated currents, bound to the 5-HT6 receptor, inhibited mitochondrial permeability transition and displayed cytoprotective properties in cellular models of neurodegeneration. Thus, DF302 exerts multi-target effects on the key mechanisms of neurodegenerative pathologies and can be considered as an optimized novel analogue of the neuroprotective agent dimebon.

摘要

一项在小鼠中进行的对比研究,旨在研究新型含氟γ-咔啉衍生物 DF302 与结构相似的神经保护药物 dimebon 的作用。报告了药物对学习和记忆、情感、海马神经发生和线粒体功能以及 AMPA 介导的电流和 5-HT6 受体的影响。在跳下回避和恐惧条件反射范式中,药物在 10 或 40mg/kg 的剂量下进行单次给药,结果表明只有较高剂量的 DF302 改善了长期记忆,而 dimebon 在任何剂量下均无效。治疗组的短期记忆和恐惧消退均未改变。在为期 5 天的捕食压力范式中,在较高剂量方案下口服药物治疗 2 周可降低焦虑样行为。两种化合物均抑制 CD1 小鼠的雄性间攻击行为,DF302 的作用最为明显。DF302 在较高剂量下可减少 2 天游泳试验中的漂浮行为和 21 天超声应激后的漂浮行为。Ki67 阳性细胞(成年神经发生的标志物)的密度在应激 dimebon 处理和未处理的小鼠的齿状回中减少,但在 DF302 处理的小鼠中没有减少。与 dimebon 相似,DF302 有效地增强了 AMPA 受体介导的电流,与 5-HT6 受体结合,抑制线粒体通透性转换,并在神经退行性疾病的细胞模型中表现出细胞保护特性。因此,DF302 对神经退行性病变的关键机制产生多靶点作用,可被视为神经保护剂 dimebon 的优化新型类似物。

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