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基于 BODIPY-氮杂吲哚平台的氟离子和醋酸根离子的比率传感及其在活细胞成像中的应用。

Ratiometric sensing of fluoride and acetate anions based on a BODIPY-azaindole platform and its application to living cell imaging.

机构信息

Department of Chemistry, Bengal Engineering and Science University, Shibpur, Howrah 711103, India.

出版信息

Analyst. 2014 Jan 7;139(1):309-17. doi: 10.1039/c3an01663c. Epub 2013 Nov 19.

Abstract

A new BODIPY-azaindole based fluorescent sensor 1 was designed and synthesized as a new colorimetric and ratiometric fluorescent chemosensor for fluoride. The binding and sensing abilities of sensor 1 towards various anions were studied by absorption, emission and (1)H NMR titration spectroscopies. The spectral responses of 1 to fluoride in acetonitrile-water were studied: an approximately 69 nm red shift in absorption and ratiometric fluorescent response was observed. The striking light yellow to deep brown color change in ambient light and green to blue emission color change are thought to be due to the deprotonation of the indole moiety of the azaindole fluorophore. From the changes in the absorption, fluorescence, and (1)H NMR titration spectra, proton-transfer mechanisms were deduced. Density function theory and time-dependent density function theory calculations were conducted to rationalize the optical response of the sensor. Results were supported by confocal fluorescence imaging and MTT assay of live cells.

摘要

一种基于 BODIPY-氮杂吲哚的新型荧光传感器 1 被设计和合成,作为一种用于氟化物的新的比色和比率荧光化学传感器。通过吸收、发射和 (1)H NMR 滴定光谱研究了传感器 1 对各种阴离子的结合和传感能力。研究了 1 在乙腈-水中对氟化物的光谱响应:观察到吸收和比率荧光响应约 69nm 的红移。环境光下浅黄色到深棕色的明显颜色变化和绿色到蓝色发射颜色变化被认为是由于氮杂吲哚荧光团吲哚部分的去质子化。从吸收、荧光和 (1)H NMR 滴定光谱的变化中,推断出质子转移机制。进行了密度泛函理论和含时密度泛函理论计算,以合理化传感器的光学响应。结果得到了共聚焦荧光成像和活细胞 MTT 测定的支持。

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