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阿尔茨海默病突触中长时程增强的药理学挽救

Pharmacological Rescue of Long-Term Potentiation in Alzheimer Diseased Synapses.

作者信息

Prieto G Aleph, Trieu Brian H, Dang Cindy T, Bilousova Tina, Gylys Karen H, Berchtold Nicole C, Lynch Gary, Cotman Carl W

机构信息

Institute for Memory Impairments and Neurological Disorders and

Department of Psychiatry and Human Behavior, University of California-Irvine, Irvine, California 92697, and.

出版信息

J Neurosci. 2017 Feb 1;37(5):1197-1212. doi: 10.1523/JNEUROSCI.2774-16.2016. Epub 2016 Dec 16.

Abstract

UNLABELLED

Long-term potentiation (LTP) is an activity-dependent and persistent increase in synaptic transmission. Currently available techniques to measure LTP are time-intensive and require highly specialized expertise and equipment, and thus are not well suited for screening of multiple candidate treatments, even in animal models. To expand and facilitate the analysis of LTP, here we use a flow cytometry-based method to track chemically induced LTP by detecting surface AMPA receptors in isolated synaptosomes: fluorescence analysis of single-synapse long-term potentiation (FASS-LTP). First, we demonstrate that FASS-LTP is simple, sensitive, and models electrically induced LTP recorded in intact circuitries. Second, we conducted FASS-LTP analysis in two well-characterized Alzheimer's disease (AD) mouse models (3xTg and Tg2576) and, importantly, in cryopreserved human AD brain samples. By profiling hundreds of synaptosomes, our data provide the first direct evidence to support the idea that synapses from AD brain are intrinsically defective in LTP. Third, we used FASS-LTP for drug evaluation in human synaptosomes. Testing a panel of modulators of cAMP and cGMP signaling pathways, FASS-LTP identified vardenafil and Bay-73-6691 (phosphodiesterase-5 and -9 inhibitors, respectively) as potent enhancers of LTP in synaptosomes from AD cases. These results indicate that our approach could provide the basis for protocols to study LTP in both healthy and diseased human brains, a previously unattainable goal.

SIGNIFICANCE STATEMENT

Learning and memory depend on the ability of synapses to strengthen in response to activity. Long-term potentiation (LTP) is a rapid and persistent increase in synaptic transmission that is thought to be affected in Alzheimer's disease (AD). However, direct evidence of LTP deficits in human AD brain has been elusive, primarily due to methodological limitations. Here, we analyze LTP in isolated synapses from AD brain using a novel approach that allows testing LTP in cryopreserved brain. Our analysis of hundreds of synapses supports the idea that AD-diseased synapses are intrinsically defective in LTP. Further, we identified pharmacological agents that rescue LTP in AD, thus opening up a new avenue for drug screening and evaluation of strategies for alleviating memory impairments.

摘要

未标记

长时程增强(LTP)是一种依赖于活动且持续的突触传递增强。目前用于测量LTP的技术耗时且需要高度专业化的专业知识和设备,因此即使在动物模型中也不太适合用于筛选多种候选治疗方法。为了扩展并促进对LTP的分析,我们在此使用一种基于流式细胞术的方法,通过检测分离突触体中的表面AMPA受体来追踪化学诱导的LTP:单突触长时程增强的荧光分析(FASS-LTP)。首先,我们证明FASS-LTP简单、灵敏,并且能够模拟在完整神经回路中记录的电诱导LTP。其次,我们在两种特征明确的阿尔茨海默病(AD)小鼠模型(3xTg和Tg2576)中进行了FASS-LTP分析,重要的是,还在冷冻保存的人类AD脑样本中进行了分析。通过对数百个突触体进行分析,我们的数据提供了首个直接证据,支持AD脑突触在LTP方面存在内在缺陷这一观点。第三,我们使用FASS-LTP对人类突触体进行药物评估。在测试一组环磷酸腺苷(cAMP)和环磷酸鸟苷(cGMP)信号通路调节剂时,FASS-LTP确定伐地那非和Bay-73-6691(分别为磷酸二酯酶-5和-9抑制剂)是AD病例突触体中LTP的有效增强剂。这些结果表明,我们的方法可为研究健康和患病人类大脑中LTP的方案提供基础,这是一个此前无法实现的目标。

意义声明

学习和记忆取决于突触对活动做出增强反应的能力。长时程增强(LTP)是突触传递的快速且持续增强,被认为在阿尔茨海默病(AD)中受到影响。然而,人类AD脑LTP缺陷的直接证据一直难以获得,主要是由于方法学上的限制。在此,我们使用一种新方法分析AD脑分离突触中的LTP,该方法允许在冷冻保存的脑中测试LTP。我们对数百个突触的分析支持了AD患病突触在LTP方面存在内在缺陷这一观点。此外,我们鉴定出了能挽救AD中LTP的药物制剂,从而为药物筛选和缓解记忆障碍策略的评估开辟了一条新途径。

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Pharmacological Rescue of Long-Term Potentiation in Alzheimer Diseased Synapses.阿尔茨海默病突触中长时程增强的药理学挽救
J Neurosci. 2017 Feb 1;37(5):1197-1212. doi: 10.1523/JNEUROSCI.2774-16.2016. Epub 2016 Dec 16.

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