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长寿命铼(I)配合物在高分子量分析物荧光偏振免疫分析中的应用。

Use of a long-lifetime Re(I) complex in fluorescence polarization immunoassays of high-molecular-weight analytes.

作者信息

Guo X Q, Castellano F N, Li L, Lakowicz J R

机构信息

Department of Biochemistry & Molecular Biology, University of Maryland School of Medicine, Baltimore 21201, USA.

出版信息

Anal Chem. 1998 Feb 1;70(3):632-7. doi: 10.1021/ac970827k.

Abstract

We describe a new class of fluorescence polarization immunoassays based on the luminescence from a Re(I) metal-ligand complex. Re(I) complexes are extremely photostable and possess useful photophysical properties including long lifetimes, high quantum yields, and high emission polarization in the absence of rotational diffusion. In the present study, a conjugatable, highly luminescent Re(I) metal-ligand complex, Re(bcp)(CO)3(4-COOHPy), where bcp is 2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline and 4-COOHPy is isonicotinic acid, has been evaluated for use in fluorescence polarization immunoassays (FPIs) with high-molecular-weight antigens. This Re(I) complex (Re) displays highly polarized emission (with a maximum anisotropy near 0.3) in the absence of rotational diffusion and a long average lifetime (2.7 microseconds) when bound to human serum albumin (HSA) in oxygenated aqueous solution. The emission polarization of the Re-HSA conjugate is sensitive to the binding of anti-HSA, resulting in a significant increase in anisotropy. The labeled HSA was also used in a competition immunoassay where unlabeled HSA was also used as an antigen. These experimental results, combined with theoretical predictions, demonstrate the potential of this Re(I) metal-ligand complex as a luminescence probe in FPIs of high-molecular-weight analytes (10(5)-10(8) Da).

摘要

我们描述了一类基于铼(I)金属-配体配合物发光的新型荧光偏振免疫分析方法。铼(I)配合物具有极高的光稳定性,并具备有用的光物理性质,包括长寿命、高量子产率以及在不存在旋转扩散时具有高发射偏振度。在本研究中,一种可共轭的、高发光性的铼(I)金属-配体配合物Re(bcp)(CO)3(4-COOHPy)(其中bcp为2,9-二甲基-4,7-二苯基-1,10-菲咯啉,4-COOHPy为异烟酸)已被评估用于高分子量抗原的荧光偏振免疫分析(FPI)。这种铼(I)配合物(Re)在不存在旋转扩散时显示出高偏振发射(最大各向异性接近0.3),并且在含氧水溶液中与人血清白蛋白(HSA)结合时具有较长的平均寿命(2.7微秒)。Re-HSA共轭物的发射偏振度对抗-HSA的结合敏感,导致各向异性显著增加。标记的HSA也用于竞争免疫分析,其中未标记的HSA也用作抗原。这些实验结果与理论预测相结合表明,这种铼(I)金属-配体配合物作为高分子量分析物(10^5 - 10^8 Da)FPI中的发光探针具有潜力。

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