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Evodiamine derivatives improve cognitive abilities in APP~(swe)/PS1~(ΔE9) transgenic mouse models of Alzheimer''''s disease

机译:Evodiamine衍生物改善Alzheimer疾病的APP〜(SWE)/ PS1〜(ΔE9)转基因小鼠模型中的认知能力

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摘要

Background: Alzheimer''s disease(AD) is a complex neurodegenerative disease. Due to the complexity of its molecular pathogenesis and the interaction of the numerous factors involved, the etiology and pathogenesis of AD have not been fully elucidated. Therefore, effective treatment for AD remains to be developed. Evodiamine, a quinolone alkaloid, has been found to improve learning and memory ability to in the APP~(swe)/PS1~(ΔE9) mouse model of dementia. However, the cytotoxicity and physicochemical properties of evodiamine have limited its use in the treatment of AD.Methods: Evodiamine and its derivatives were effectively synthesized by EDCImediated condensation at room temperature. These target compounds contained 1 thio-and 21 oxo-evodiamine derivatives with different substituted groups. The cytotoxicity of evodiamine and its derivatives and the neuroprotective effects of the evodiamine derivatives against H_2O_2-induced cell loss in SH-SY5 Y cells were investigated using the WST-8 assay. The Morris water-maze test was used to detect the effect of evodiamine and its derivatives on improving learning and memory in APP~(swe)/PS1~(ΔE9) mice.Results: In this study, a series of oxo-and thio-evodiamine derivatives was synthesized. Several derivatives showed lower cytotoxicity and stronger neuroprotective effects than evodiamine and elicited enhanced cognitive improvement, especially in the test of spatial memory in APP~(swe)/PS1~(ΔE9) mice.Conclusion: Our study provides insights for developing novel evodiamine derivatives for chemical intervention and treatment of AD.
机译:背景:阿尔茨海默氏病(AD)是一种复杂的神经变性疾病。由于其分子发病机制的复杂性和涉及许多因素的相互作用,AD的病因和发病机制尚未完全阐明。因此,有效处理广告仍有待发展。已经发现喹硫氨酸,一种喹诺酮生物碱,用于改善痴呆症(SWE)/ PS1〜(ΔE9)小鼠模型中的学习和记忆能力。然而,Evodiamine的细胞毒性和物理化学特性限制了其在Ad.Chods的治疗中的用途:Evodiamine及其衍生物通过在室温下通过EDCIMEDED凝聚的缩合有效地合成。这些靶化合物含有1个具有不同取代基的硫代和21个氧代氧二胺衍生物。使用WST-8测定研究了eVOdiamine及其衍生物对EVODIAMININ衍生物对H_2O_2诱导的细胞损失的细胞毒性和神经保护作用。莫里斯水迷宫试验用于检测Evodiamine及其衍生物在改善APP〜(SWE)/ PS1〜(ΔE9)小鼠中改善学习和记忆的影响。结果:在本研究中,一系列的oxo和硫猿evodiamine衍生物被合成。几种衍生物表现出细胞毒性和强神经保护作用的较低,并且引发增强的认知改善,特别是在APP〜(SWE)/ PS1〜(ΔE9)小鼠中的空间记忆试验中。结论:我们的研究为开发新型viodiamine衍生物提供了洞察力广告的化学干预和治疗。

著录项

  • 来源
    《动物模型与实验医学(英文)》 |2020年第002期|P.193-199|共7页
  • 作者单位

    Key Laboratory of Human Disease Comparative Medicine National Health Commission of China(NHC) Institute of Laboratory Animal Science Peking Union Medical College Chinese Academy of Medical Sciences Beijing ChinaBeijing Engineering Research Center for Experimental Animal Models of Human Diseases Institute of Laboratory Animal Science Peking Union Medical College Chinese Academy of Medical Sciences Beijing China;

    Key Laboratory of Human Disease Comparative Medicine National Health Commission of China(NHC) Institute of Laboratory Animal Science Peking Union Medical College Chinese Academy of Medical Sciences Beijing ChinaBeijing Engineering Research Center for Experimental Animal Models of Human Diseases Institute of Laboratory Animal Science Peking Union Medical College Chinese Academy of Medical Sciences Beijing China;

    Key Laboratory of Human Disease Comparative Medicine National Health Commission of China(NHC) Institute of Laboratory Animal Science Peking Union Medical College Chinese Academy of Medical Sciences Beijing ChinaBeijing Engineering Research Center for Experimental Animal Models of Human Diseases Institute of Laboratory Animal Science Peking Union Medical College Chinese Academy of Medical Sciences Beijing China;

    Beijing Key Laboratory of Active Substance Discovery and Drug ability Evaluation Institute of Material Medical Chinese Academy of Medical Sciences and Peking Union Medical College Beijing China;

    Beijing Key Laboratory of Active Substance Discovery and Drug ability Evaluation Institute of Material Medical Chinese Academy of Medical Sciences and Peking Union Medical College Beijing China;

    Key Laboratory of Human Disease Comparative Medicine National Health Commission of China(NHC) Institute of Laboratory Animal Science Peking Union Medical College Chinese Academy of Medical Sciences Beijing ChinaBeijing Engineering Research Center for Experimental Animal Models of Human Diseases Institute of Laboratory Animal Science Peking Union Medical College Chinese Academy of Medical Sciences Beijing ChinaNeuroscience Center Chinese Academy of Medical Sciences Beijing China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 有机化学;
  • 关键词

    evodiamine derivatives; mouse model; neuroprotective; spatial memory;

    机译:Evodiamine衍生物;小鼠模型;神经保护;空间记忆;
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