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基于三联吡啶烷的新型 Eu(III) 配合物的设计作为用于生物分析应用的高效发光标记物。

Design of novel tripyridinophane-based Eu(III) complexes as efficient luminescent labels for bioassay applications.

机构信息

SPCMIB, UMR5068 CNRS-Université Paul Sabatier-Toulouse III, 118 Route de Narbonne, F-31062 Toulouse, France.

Cisbio Bioassays, BP 84175, 30200 Codolet, France.

出版信息

Org Biomol Chem. 2021 Dec 22;20(1):182-195. doi: 10.1039/d1ob02092g.

DOI:10.1039/d1ob02092g
PMID:34878481
Abstract

In this work, the development of highly luminescent europium(III) complexes in water solution is reported, including their syntheses, analyses of their photophysical properties and applications in bioassays. Three Eu(III) complexes are derived from new ligands based on a tripyridinophane platform. There are four distinct sections in the structure of these ligands: an 18-membered polyaminocarboxylic macrocycle to bind efficiently lanthanide ions in aqueous solutions, three chromophoric subunits (4-(phenylethynyl)pyridine moieties) to effectively sensitize the emission of the metal, two peripheral moieties to solubilise the complex in aqueous media (sulfonate, sulfobetaine or glucose groups) and a free NH group available for grafting or bioconjugation. In our synthetic procedure, a pivotal macrocyclic platform is obtained with a high yield in the crucial macrocyclization step due to a metal template ion effect (74% yield). In Tris aqueous buffer (pH 7.4), the Eu(III) complexes show a maximum excitation wavelength at 320 nm, a suitable overall quantum yield (14%), a relatively long lifetime (0.80 ms) and a one-photon brightness in the range of 10 000 M cm. Importantly, these photophysical properties are retained at dilute concentrations, even in the presence of a very large excess of potentially competing species, such as EDTA or Mg ions. Furthermore, we report the bioconjugation of a Eu(III) complex labelled by an -hydroxysuccinimide ester reactive group with an antibody (anti-glutathione--transferase) and the successful application of the corresponding antibody conjugate in the detection of GST-biotin in a fluoroimmunoassay. These new complexes provide a solution for high sensitivity in Homogeneous Time-Resolved Fluorescence (HTRF®) bioassays.

摘要

在这项工作中,报告了在水溶液中开发高发光的铕(III)配合物,包括它们的合成、光物理性质分析以及在生物测定中的应用。三种 Eu(III)配合物是基于三吡啶烷平台的新配体衍生而来的。这些配体的结构中有四个不同的部分:一个 18 元多氨基羧酸大环,可在水溶液中有效地结合镧系元素离子;三个发色团(4-(苯乙炔基)吡啶部分),可有效地敏化金属的发射;两个外围基团,可使配合物在水介质中溶解(磺酸酯、磺酸甜菜碱或葡萄糖基团);以及一个可用于接枝或生物偶联的游离 NH 基团。在我们的合成过程中,由于金属模板离子效应,在关键的大环化步骤中以高产率得到了一个关键的大环平台(74%的产率)。在 Tris 水溶液缓冲液(pH 7.4)中,Eu(III)配合物在 320nm 处显示最大激发波长,合适的总量子产率(14%)、相对较长的寿命(0.80ms)和在 10000M cm 范围内的单光子亮度。重要的是,即使存在大量潜在竞争物种(如 EDTA 或 Mg 离子),这些光物理性质在稀浓度下仍然保留。此外,我们报告了通过 - 羟基琥珀酰亚胺酯反应性基团标记的 Eu(III)配合物与抗体(抗谷胱甘肽-S-转移酶)的生物偶联,并成功地将相应的抗体偶联物应用于荧光免疫测定中 GST-生物素的检测。这些新的配合物为均相时间分辨荧光(HTRF®)生物测定中的高灵敏度提供了一种解决方案。

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