镧系螯合物发光探针在生物成像中的智能应用。

IF 3.3 3区 医学 Q2 CHEMISTRY, MEDICINAL
Maria Chiara Santangelo, Leonardo Lucchesi, Leonardo Papa, Annachiara Rossi, Gaia Egizzo, Giusy Laura Fratello, Lucilla Favero, Mauro Pineschi, Valeria Di Bussolo, Sebastiano Di Pietro
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引用次数: 0

摘要

发光镧系(III) (Ln(III))生物探针(llb)在过去二十年中作为细胞内分子探针广泛用于生物成像,用于有效揭示分析物,指示细胞内事件(酶/蛋白质活性,抗原-抗体相互作用),靶向特定细胞器,并确定特定生物物理感兴趣的参数,以获得病理或疾病的重要见解。选择使用发光的Ln(III)配位化合物与常见的有机荧光团密切相关,这与它们的光物理敏化(天线效应)如何被精细调节,特别是如何被触发以响应(甚至定量地)特定的生物物理事件、条件或分析物密切相关。虽然有其他的评论集中在如何设计对Ln(III)离子有效敏化的显色配体上,无论是在可见光区还是近红外区,这篇综述是应用驱动的:它是一个特别有趣的例子的小集合,其中LLB的发射信息是通过成像发射强度和/或荧光寿命(荧光寿命成像显微镜,FLIM)获得的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart Applications of Lanthanide Chelates-based Luminescent Probes in Bio-imaging.

Luminescent Lanthanide (III) (Ln (III)) bioprobes (LLBs) have been extensively used in the last two decades as intracellular molecular probes in bio-imaging for the efficient revelation of analytes, to signal intracellular events (enzymes/protein activity, antigen-antibody interaction), target specific organelles, and determine parameters of particular biophysical interest, to gain important insights on pathologies or diseases. The choice of using a luminescent Ln (III) coordination compound with respect to a common organic fluorophore is intimately connected to how their photophysical sensitization (antenna effect) can be finely tuned and especially triggered to respond (even quantitatively) to a certain biophysical event, condition or analyte. While there are other reviews focused on how to design chromophoric ligands for an efficient sensitization of Ln (III) ions, both in the visible and NIR region, this mini-review is application-driven: it is a small collection of particularly interesting examples where the LLB's emissive information is acquired by imaging the emission intensity and/or the fluorescence lifetime (fluorescence lifetime imaging microscopy, FLIM).

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来源期刊
CiteScore
7.80
自引率
0.00%
发文量
231
审稿时长
6 months
期刊介绍: The aim of Mini-Reviews in Medicinal Chemistry is to publish short reviews on the important recent developments in medicinal chemistry and allied disciplines. Mini-Reviews in Medicinal Chemistry covers all areas of medicinal chemistry including developments in rational drug design, synthetic chemistry, bioorganic chemistry, high-throughput screening, combinatorial chemistry, drug targets, and natural product research and structure-activity relationship studies. Mini-Reviews in Medicinal Chemistry is an essential journal for every medicinal and pharmaceutical chemist who wishes to be kept informed and up-to-date with the latest and most important developments.
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