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具有潜在神经元成像应用的三输入逻辑门。

Three-input logic gates with potential applications for neuronal imaging.

机构信息

Department of Chemistry, University of Missouri 601 South College Avenue, Columbia, Missouri 65211, United States.

出版信息

J Am Chem Soc. 2014 Apr 2;136(13):4877-80. doi: 10.1021/ja501211v. Epub 2014 Mar 18.

Abstract

Convenient methods for the direct visualization of neurotransmitter trafficking would bolster investigations into the development of neurodegenerative diseases. Here, tunable fluorescent molecular logic gates with applications to neuronal imaging have been developed. The three-input AND molecular logic gates are based on the coumarin-3-aldehyde scaffold and designed to give a turn-on fluorescence response upon the corelease of glutamate and zinc from secretory vesicles via exocytosis. Spectroscopic studies reveal an 11-fold fluorescence enhancement under conditions mimicking exocytosis. Methylation of the scaffold was used to optimize the spectral profile of the sensors toward desired excitation wavelengths. A binding study that elucidates the sensor-analyte interactions is presented. These sensors serve as a proof-of-concept toward the direct imaging of neurotransmitters released upon exocytosis using fluorescent molecular logic gates.

摘要

方便的神经递质运输直接可视化方法将有助于研究神经退行性疾病的发展。在这里,开发了具有神经元成像应用的可调谐荧光分子逻辑门。三输入与门分子逻辑门基于香豆素-3-醛支架,并设计为通过胞吐作用从分泌小泡中共同释放谷氨酸和锌时发出荧光响应。光谱研究表明,在模拟胞吐作用的条件下,荧光增强了 11 倍。支架的甲基化用于优化传感器的光谱特性,以获得所需的激发波长。呈现了阐明传感器-分析物相互作用的结合研究。这些传感器是使用荧光分子逻辑门直接成像胞吐作用释放的神经递质的概念验证。

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