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用于细胞成像的基于镧系元素的响应性发光探针原理。

Principles of responsive lanthanide-based luminescent probes for cellular imaging.

作者信息

Thibon Aurore, Pierre Valérie C

机构信息

Department of Chemistry, University of Minnesota, 207 Pleasant Street SE, Minneapolis, MN 55455, USA.

出版信息

Anal Bioanal Chem. 2009 May;394(1):107-20. doi: 10.1007/s00216-009-2683-2. Epub 2009 Mar 13.

Abstract

The advent of chemical tools for cellular imaging--from organic dyes to green fluorescent proteins--has revolutionized the fields of molecular biology and biochemistry. Lanthanide-based probes are a new player in this area, as the last decade has seen the emergence of the first responsive luminescent lanthanide probes specifically intended for imaging cellular processes. The potential of these probes is still undervalued by the scientific community. Indeed, this class of probes offers several advantages over organic dyes and fluorescent proteins. Their very long luminescence lifetimes enable quantitative spatial determination of the intracellular concentration of an analyte through time-gating measurements. Their emission bands are very narrow and do not overlap, enabling the simultaneous use of multiple lanthanide probes to quantitatively detect several analytes without cross-interference. Herein we describe the principles behind the development of this class of probes. Sensors for a desired analyte can be designed by rationally manipulating the parameters that influence the luminescence of lanthanide complexes. We will discuss sensors based on varying the number of inner-sphere water molecules, the distance separating the antenna from the lanthanide ion, the energies of excited states of the antenna, and PeT switches.

摘要

用于细胞成像的化学工具的出现——从有机染料到绿色荧光蛋白——彻底改变了分子生物学和生物化学领域。基于镧系元素的探针是该领域的新成员,因为在过去十年中,首次出现了专门用于成像细胞过程的响应性发光镧系元素探针。科学界对这类探针的潜力仍未给予充分重视。事实上,这类探针相对于有机染料和荧光蛋白具有若干优势。它们极长的发光寿命使得能够通过时间门控测量对细胞内分析物浓度进行定量空间测定。它们的发射带非常窄且不重叠,这使得能够同时使用多种镧系元素探针来定量检测多种分析物而不会产生交叉干扰。在此我们描述这类探针开发背后的原理。通过合理操纵影响镧系元素配合物发光的参数,可以设计出针对所需分析物的传感器。我们将讨论基于改变内球水分子数量、天线与镧系离子之间的距离、天线激发态的能量以及光致电子转移开关的传感器。

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