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水溶性、环取代方酸菁染料的合成及其作为荧光探针和标记物的评价。

Synthesis of water-soluble, ring-substituted squaraine dyes and their evaluation as fluorescent probes and labels.

作者信息

Tatarets Anatoliy L, Fedyunyayeva Irina A, Dyubko Tatyana S, Povrozin Yevgeniy A, Doroshenko Andrey O, Terpetschnig Ewald A, Patsenker Leonid D

机构信息

SSI Institute for Single Crystals of the National Academy of Sciences of Ukraine, 60 Lenin Ave., Kharkov 61001, Ukraine.

出版信息

Anal Chim Acta. 2006 Jun 16;570(2):214-23. doi: 10.1016/j.aca.2006.04.019. Epub 2006 Apr 25.

DOI:10.1016/j.aca.2006.04.019
PMID:17723402
Abstract

A series of ring-substituted squaraines absorbing and emitting in the red and NIR spectral region was synthesized and their spectral and photophysical properties (quantum yields, fluorescence lifetimes) and photostabilities were measured and compared to Cy5, a commonly used fluorescent label. The absorption maxima in aqueous media were found to be between 628 and 667 nm and the emission maxima are between 642 and 685 nm. Squaraine dyes exhibit high extinction coefficients (163,000-265,000 M(-1) cm(-1)) and lower quantum yields (2-7%) in aqueous buffer but high quantum yields (up to 45%) and long fluorescence lifetimes (up to 3.3 ns) in presence of BSA. Dicyanomethylene- and thio-substituted squaraines exhibit an additional absorption around 400 nm with extinction coefficients between 21,500 and 44,500 M(-1) cm(-1). These dyes are excitable not only with red but also with blue diode lasers or light emitting diodes. Due to the favourable spectral and photophysical properties these dyes can be used as fluorescent probes and labels for intensity- and fluorescence lifetime-based biomedical applications.

摘要

合成了一系列在红色和近红外光谱区域吸收和发射的环取代方酸菁,并测量了它们的光谱和光物理性质(量子产率、荧光寿命)以及光稳定性,并与常用荧光标记物Cy5进行了比较。发现在水性介质中的吸收最大值在628至667nm之间,发射最大值在642至685nm之间。方酸菁染料在水性缓冲液中表现出高消光系数(163,000 - 265,000 M(-1) cm(-1))和较低的量子产率(2 - 7%),但在存在牛血清白蛋白(BSA)的情况下具有高量子产率(高达45%)和长荧光寿命(高达3.3 ns)。二氰基亚甲基和硫取代的方酸菁在400nm左右表现出额外的吸收,消光系数在21,500至44,500 M(-1) cm(-1)之间。这些染料不仅可以用红色二极管激光器激发,也可以用蓝色二极管激光器或发光二极管激发。由于其良好的光谱和光物理性质,这些染料可作为基于强度和荧光寿命的生物医学应用的荧光探针和标记物。

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