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Neuritin can normalize neural deficits of Alzheimer’s disease

机译:神经氨酸可以使阿尔茨海默氏病的神经功能正常化

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Reductions in hippocampal neurite complexity and synaptic plasticity are believed to contribute to the progressive impairment in episodic memory and the mild cognitive decline that occur particularly in the early stages of Alzheimer’s disease (AD). Despite the functional and therapeutic importance for patients with AD, intervention to rescue or normalize dendritic elaboration and synaptic plasticity is scarcely provided. Here we show that overexpression of neuritin , an activity-dependent protein, promoted neurite outgrowth and maturation of synapses in parallel with enhanced basal synaptic transmission in cultured hippocampal neurons. Importantly, exogenous application of recombinant neuritin fully restored dendritic complexity as well as spine density in hippocampal neurons prepared from Tg2576 mice, whereas it did not affect neurite branching of neurons from their wild-type littermates. We also showed that soluble recombinant neuritin, when chronically infused into the brains of Tg2576 mice, normalized synaptic plasticity in acute hippocampal slices, leading to intact long-term potentiation. By revealing the protective actions of soluble neuritin against AD-related neural defects, we provide a potential therapeutic approach for patients with AD.
机译:人们认为,海马神经突复杂性的降低和突触可塑性的降低,尤其是在阿尔茨海默氏病(AD)的早期阶段,会导致发作性记忆的逐步损害和轻度的认知能力下降。尽管对AD患者具有功能上和治疗上的重要性,但几乎没有提供挽救或使树突状细化和突触可塑性正常化的干预措施。在这里,我们显示神经氨酸,一种活性依赖蛋白的过表达促进了神经突的生长和突触的成熟,同时增强了海马神经元的基础突触传递。重要的是,重组神经氨酸的外源应用完全恢复了由Tg2576小鼠制备的海马神经元的树突状复杂性和脊柱密度,而它并不影响其野生型同窝仔神经元的神经突分支。我们还显示,当将可溶性重组神经递质长期注入Tg2576小鼠的大脑中时,急性海马切片中的突触可塑性会正常化,从而导致完整的长期增强。通过揭示可溶性神经氨酸对AD相关神经缺损的保护作用,我们为AD患者提供了一种潜在的治疗方法。

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