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Photoactivatable genetically encoded calcium indicators for targeted neuronal imaging

机译:可光活化的基因编码钙指示剂,用于靶向神经元成像

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摘要

Circuit mapping requires knowledge of both structural and functional connectivity between cells. Although optical tools have been made to assess either the morphology and projections of neurons or their activity and functional connections, few probes integrate this information. We have generated a family of photoactivatable genetically encoded Ca2+ indicators that combines attributes of high-contrast photolabeling with high-sensitivity Ca2+ detection in a single-color protein sensor. We demonstrated in cultured neurons and in fruit fly and zebrafish larvae how single cells could be selected out of dense populations for visualization of morphology and high signal-to-noise measurements of activity, synaptic transmission and connectivity. Our design strategy is transferrable to other sensors based on circularly permutated GFP (cpGFP).
机译:电路映射需要了解单元之间的结构和功能连接。尽管已经开发出光学工具来评估神经元的形态和投射或它们的活动和功能连接,但很少有探针能够整合此信息。我们已经生成了一系列可光活化的遗传编码的Ca2 +指示剂,该指示剂将单色造影剂中的高对比度光标记属性与高灵敏度Ca2 +检测相结合。我们在培养的神经元以及果蝇和斑马鱼的幼虫中演示了如何从密集的种群中选择单个细胞以进行形态学可视化以及活动,突触传递和连通性的高信噪比测量。我们的设计策略可转移到基于圆形置换GFP(cpGFP)的其他传感器。

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