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氮杂二氧杂三角烯鎓:在荧光各向异性测量中探索20纳秒荧光寿命的影响。

Azadioxatriangulenium: exploring the effect of a 20 ns fluorescence lifetime in fluorescence anisotropy measurements.

作者信息

Bogh Sidsel A, Bora Ilkay, Rosenberg Martin, Thyrhaug Erling, Laursen Bo W, Sørensen Thomas Just

机构信息

Nano-Science Center & Department of Chemistry, University of Copenhagen, Universitetsparken 5, 2100 København Ø, Denmark.

出版信息

Methods Appl Fluoresc. 2015 Oct 14;3(4):045001. doi: 10.1088/2050-6120/3/4/045001.

DOI:10.1088/2050-6120/3/4/045001
PMID:29148501
Abstract

Azaoxatriangulenium (ADOTA) has been shown to be highly emissive despite a moderate molar absorption coefficient of the primary electronic transition. As a result, the fluorescence lifetime is ~20 ns, longer than all commonly used red fluorescent organic probes. The electronic transitions in ADOTA are highly polarised (r   =  0.38), which in combination with the long fluorescence lifetime extents the size-range of biomolecular weights that can be detected in fluorescence polarisation-based experiments. Here, the rotational dynamics of bovine serum albumin (BSA) are monitored with three different ADOTA derivatives, differing only in constitution of the reactive linker. A detailed study of the degree of labelling, the steady-state anisotropy, and the time-resolved anisotropy of the three different ADOTA-BSA conjugates are reported. The fluorescence quantum yields (ϕ ) of the free dyes in PBS solution are determined to be ~55%, which is reduced to ~20% in the ADOTA-BSA conjugates. Despite the reduction in ϕ , a ~20 ns intensity averaged lifetime is maintained, allowing for the rotational dynamics of BSA to be monitored for up to 100 ns. Thus, ADOTA can be used in fluorescence polarisation assays to fill the gap between commonly used organic dyes and the long luminescence lifetime transition metal complexes. This allows for efficient steady-state fluorescence polarisation assays for detecting binding of analytes with molecular weights of up to 100 kDa.

摘要

氮杂氧杂三角烯鎓(ADOTA)已被证明具有高发射性,尽管其主要电子跃迁的摩尔吸收系数适中。因此,其荧光寿命约为20纳秒,比所有常用的红色荧光有机探针都要长。ADOTA中的电子跃迁具有高度极化性(r = 0.38),这与长荧光寿命相结合,扩展了基于荧光极化的实验中可检测的生物分子量范围。在此,用三种仅在反应性连接基组成上不同的ADOTA衍生物监测牛血清白蛋白(BSA)的旋转动力学。报告了对三种不同的ADOTA-BSA缀合物的标记程度、稳态各向异性和时间分辨各向异性的详细研究。在PBS溶液中,游离染料的荧光量子产率(ϕ)测定为约55%,在ADOTA-BSA缀合物中降至约20%。尽管ϕ有所降低,但强度平均寿命仍维持在约20纳秒,从而能够监测BSA长达100纳秒的旋转动力学。因此,ADOTA可用于荧光极化分析,以填补常用有机染料与长发光寿命过渡金属配合物之间的空白。这使得能够进行高效的稳态荧光极化分析,以检测分子量高达100 kDa的分析物的结合。

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