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首页> 外文期刊>Science Advances >Imaging striatal dopamine release using a nongenetically encoded near infrared fluorescent catecholamine nanosensor
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Imaging striatal dopamine release using a nongenetically encoded near infrared fluorescent catecholamine nanosensor

机译:使用非遗传编码的近红外荧光儿茶酚胺纳米传感器对纹状体多巴胺释放进行成像

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Neuromodulation plays a critical role in brain function in both health and disease, and new tools that capture neuromodulation with high spatial and temporal resolution are needed. Here, we introduce a synthetic catecholamine nanosensor with fluorescent emission in the near infrared range (1000–1300 nm), near infrared catecholamine nanosensor (nIRCat). We demonstrate that nIRCats can be used to measure electrically and optogenetically evoked dopamine release in brain tissue, revealing hotspots with a median size of 2 μm. We also demonstrated that nIRCats are compatible with dopamine pharmacology and show D2 autoreceptor modulation of evoked dopamine release, which varied as a function of initial release magnitude at different hotspots. Together, our data demonstrate that nIRCats and other nanosensors of this class can serve as versatile synthetic optical tools to monitor neuromodulatory neurotransmitter release with high spatial resolution.
机译:神经调节在健康和疾病的脑功能中起着至关重要的作用,因此需要新的工具来捕获具有高时空分辨率的神经调节。在这里,我们介绍一种合成的邻苯二酚纳米传感器,其在近红外范围(1000-1300 nm)内发出荧光,近红外邻苯二酚纳米传感器(nIRCat)。我们证明,nIRCats可用于测量脑组织中的电和光遗传诱发的多巴胺释放,揭示了中值大小为2μm的热点。我们还证明了nIRCats与多巴胺药理学相容,并且显示了诱发的多巴胺释放的D2自受体调节,其随不同热点的初始释放量而变化。总之,我们的数据表明,nIRCats和此类的其他纳米传感器可以用作通用的合成光学工具,以高空间分辨率监控神经调节性神经递质的释放。

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