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锌配合物作为核酸的荧光化学传感器:一种“乏味”元素的新视角

Zinc complexes as fluorescent chemosensors for nucleic acids: new perspectives for a "boring" element.

作者信息

Terenzi Alessio, Lauria Antonino, Almerico Anna Maria, Barone Giampaolo

机构信息

Dipartimento di Scienze e Tecnologie Biologiche, Chimiche e Farmaceutiche, Viale delle Scienze, Edificio 17, 90128 Palermo, Italy.

出版信息

Dalton Trans. 2015 Feb 28;44(8):3527-35. doi: 10.1039/c4dt02881c.

Abstract

Zinc(II) complexes are effective and selective nucleic acid-binders and strongly fluorescent molecules in the low energy range, from the visible to the near infrared. These two properties have often been exploited to quantitatively detect nucleic acids in biological samples, in both in vitro and in vivo models. In particular, the fluorescent emission of several zinc(II) complexes is drastically enhanced or quenched by the binding to nucleic acids and/or upon visible light exposure, in a different fashion in bulk solution and when bound to DNA. The twofold objective of this perspective is (1) to review recent utilisations of zinc(II) complexes as selective fluorescent probes for nucleic acids and (2) to highlight their novel potential applications as diagnostic tools based on their photophysical properties.

摘要

锌(II)配合物是有效的选择性核酸结合剂,并且在从可见光到近红外的低能量范围内是强荧光分子。这两种特性常被用于在体外和体内模型中定量检测生物样品中的核酸。特别是,几种锌(II)配合物的荧光发射在与核酸结合时和/或在可见光照射下会显著增强或猝灭,在本体溶液中和与DNA结合时的方式不同。这篇综述的双重目的是:(1)回顾锌(II)配合物作为核酸选择性荧光探针的最新应用;(2)基于其光物理性质突出它们作为诊断工具的新潜在应用。

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