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Hyperspectral imaging to monitor simultaneously multiple protein subtypes and live track their spatial dynamics: a new platform to screen drugs for CNS diseases

机译:高光谱成像可同时监视多种蛋白质亚型并实时跟踪其空间动态:筛选中枢神经系统疾病药物的新平台

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In the past decade, the efficacy of existing therapies and the discovery of innovative treatments for Central Nervous System (CNS) diseases have been limited by the lack of appropriate methods to investigate complex molecular processes at the synaptic level. In order to better understand the fundamental mechanisms that regulate diseases of the CNS, a fast fluorescence hyperspectral imaging platform was designed to track simultaneously various neurotransmitter receptors trafficking in and out of synapses. With this hyperspectral imaging platform, it was possible to image simultaneously five different synaptic proteins, including subtypes of glutamate receptors (mGluR, NMDAR, AMPAR), postsynaptic density proteins, and signaling proteins. This new imaging platform allows fast simultaneous acquisitions of at least five fluorescent markers in living neurons with a high spatial resolution. This technique provides an effective method to observe several synaptic proteins at the same time, thus study how drugs for CNS impact the spatial dynamics of these proteins.
机译:在过去的十年中,由于缺乏在突触水平上研究复杂分子过程的适当方法,限制了现有疗法的有效性和中枢神经系统(CNS)疾病创新疗法的发现。为了更好地理解调节中枢神经系统疾病的基本机制,设计了一种快速荧光高光谱成像平台来同时跟踪突触进出突触的各种神经递质受体。使用此高光谱成像平台,可以同时对五个不同的突触蛋白成像,包括谷氨酸受体的亚型(mGluR,NMDAR,AMPAR),突触后密度蛋白和信号蛋白。这种新的成像平台可以快速同时以高空间分辨率采集活神经元中的至少五个荧光标记。该技术提供了一种有效的方法,可以同时观察几种突触蛋白,从而研究中枢神经系统药物如何影响这些蛋白的空间动力学。

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