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Zn(II)-coordination modulated ligand photophysical processes – the development of fluorescent indicators for imaging biological Zn(II) ions

机译:Zn(II)配位调控的配体光物理过程–成像生物Zn(II)离子的荧光指示剂的开发

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摘要

Molecular photophysics and metal coordination chemistry are the two fundamental pillars that support the development of fluorescent cation indicators. In this article, we describe how Zn(II)-coordination alters various ligand-centered photophysical processes that are pertinent to developing Zn(II) indicators. The main aim is to show how small organic Zn(II) indicators work under the constraints of specific requirements, including Zn(II) detection range, photophysical requirements such as excitation energy and emission color, temporal and spatial resolutions in a heterogeneous intracellular environment, and fluorescence response selectivity between similar cations such as Zn(II) and Cd(II). In the last section, the biological questions that fluorescent Zn(II) indicators help to answer are described, which have been motivating and challenging this field of research.
机译:分子光物理和金属配位化学是支持荧光阳离子指示剂发展的两个基本支柱。在本文中,我们描述了Zn(II)配位如何改变与开发Zn(II)指示剂有关的各种以配体为中心的光物理过程。主要目的是展示小型有机Zn(II)指标如何在特定要求的约束下工作,这些要求包括Zn(II)的检测范围,光物理要求(例如激发能和发射色),异质细胞内环境中的时间和空间分辨率,以及类似阳离子(例如Zn(II)和Cd(II))之间的荧光响应选择性。在上一部分中,描述了荧光Zn(II)指标有助于回答的生物学问题,这些问题一直在激励和挑战这一研究领域。

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