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首页> 外文期刊>Theranostics >Ultrasound with microbubbles improves memory, ameliorates pathology and modulates hippocampal proteomic changes in a triple transgenic mouse model of Alzheimer's disease
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Ultrasound with microbubbles improves memory, ameliorates pathology and modulates hippocampal proteomic changes in a triple transgenic mouse model of Alzheimer's disease

机译:微泡的超声改善记忆,改善病理学,并调节阿尔茨海默病的三重转基因小鼠模型中的海马蛋白质组学变化

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摘要

Alzheimer's disease (AD) is a progressive neurodegenerative disease manifested by cognitive impairment. As a unique approach to open the blood-brain barrier (BBB) noninvasively and temporarily, a growing number of studies showed that low-intensity focused ultrasound in combination with microbubbles (FUS/MB), in the absence of therapeutic agents, is capable of ameliorating amyloid or tau pathology, concurrent with improving memory deficits of AD animal models. However, the effects of FUS/MB on both the two pathologies simultaneously, as well as the memory behaviors, have not been reported so far. Methods: In this study, female triple transgenic AD (3×Tg-AD) mice at eight months of age with both amyloid-β (Aβ) deposits and tau phosphorylation were treated by repeated FUS/MB in the unilateral hippocampus twice per week for six weeks. The memory behaviors were investigated by the Y maze, the Morris water maze and the step-down passive avoidance test following repeated FUS/MB treatments. Afterwards, the involvement of Aβ and tau pathology were assessed by immunohistochemical analysis. Neuronal health and phagocytosis of Aβ deposits by microglia in the hippocampus were examined by confocal microscopy. Further, hippocampal proteomic alterations were analyzed by employing two-dimensional fluorescence difference gel electrophoresis (2D-DIGE) combined with mass spectrometry. Results: The three independent memory tasks were indicative of evident learning and memory impairments in eight-month-old 3×Tg-AD mice, which developed intraneuronal Aβ, extracellular diffuse Aβ deposits and phosphorylated tau in the hippocampus and amygdala. Following repeated FUS/MB treatments, significant improvement in learning and memory ability of the 3×Tg-AD mice was achieved. Amelioration in both Aβ deposits and phosphorylated tau in the sonicated hemisphere was induced in FUS/MB-treated 3×Tg-AD mice. Albeit without increase in neuron density, enhancement in axonal neurofilaments emerged from the FUS/MB treatment. Confocal microscopy revealed activated microglia engulfing Aβ deposits in the FUS/MB-treated hippocampus. Further, proteomic analysis revealed 20 differentially expressed proteins, associated with glycolysis, neuron projection, mitochondrial pathways, metabolic process and ubiquitin binding etc., in the hippocampus between FUS/MB-treated and sham-treated 3×Tg-AD mice. Conclusions: Our findings reinforce the positive therapeutic effects on AD models with both Aβ and tau pathology induced by FUS/MB-mediated BBB opening, further supporting the potential of this treatment regime for clinical applications.? The author(s).
机译:阿尔茨海默病(AD)是一种通过认知障碍表现出的渐进神经退行性疾病。作为开放血脑屏障(BBB)的独特方法,越来越多的研究表明,低强度聚焦超声与微泡(FUS / MB)在没有治疗剂的情况下,能够改善淀粉样蛋白或TAU病理学,并发,提高广告动物模型的记忆缺陷。然而,到目前为止,尚未报告FUS / MB对两种病理学以及存储行为的影响。方法:在本研究中,通过淀粉样蛋白-β(Aβ)沉积物和Tau磷酸化的八个月八个月的雌性三重转基因Ad(3×Tg-Ad)小鼠每周两次重复的Fus / MB对单侧海马两次重复的Fus / MB进行处理六个星期。由Y迷宫,莫里斯水迷宫和降压被动避免试验研究了内存行为,并在重复的FUS / MB治疗后进行降压被动避免试验。之后,通过免疫组织化学分析评估Aβ和TAU病理的参与。通过共聚焦显微镜检查了海马中微胶质细胞的β沉积物的神经元健康和吞噬作用。此外,通过使用二维荧光差异凝胶电泳(2D-Dige)与质谱法相结合来分析海马蛋白质组学改变。结果:三个独立的记忆任务表明,在八个月左右的3×TG-AD小鼠中表明明显的学习和记忆障碍,其在海马和Amygdala中开发了introneuronalAβ,细胞外弥漫性Aβ沉积物和磷酸化Tau。在重复的Fus / MB治疗之后,实现了3×TG-AD小鼠的学习和记忆能力的显着改善。在Songated Hemisphere中的Aβ沉积物和磷酸化Tau的改善在Fus / MB处理的3×Tg-Ad小鼠中诱导。尽管没有神经元密度的增加,从Fus / MB处理中出现了轴突神经细胞的增强。共聚焦显微镜显示激活的微胶质细胞吞没Aβ沉积物在FUS / MB处理的海马中。此外,蛋白质组学分析揭示了与糖酵解,神经元投影,线粒体途径,代谢过程和泛素结合等相关的20个差异表达蛋白质,在Fus / MB处理和假处理的3×Tg-Ad-Ad小鼠之间的海马中。结论:我们的研究结果强化了Fus / MB介导的BBB开放诱导的Aβ和Tau病理学对广告模型的阳性治疗效果,进一步支持该治疗制度的临床应用的潜力。作者。

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