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Development of a Visible-Light-Sensitized Europium Complex for Time-Resolved Fluorometric Application

机译:可见光敏化Complex络合物的开发,用于时间分辨荧光法

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The time-resolved luminescence bioassay technique using luminescent lanthanide complexes as labels is a highly sensitive and widely used bioassay method for clinical diagnostics and biotechnology. A major drawback of the current technique is that the luminescent lanthanide labels require UV excitation (typically less than 360 nm), which can damage living biological systems and is holding back further development of time-resolved luminescence instruments. Herein we describe two approaches for preparing a visible-light-sensitized Eu~(3+) complex in aqueous media for time-resolved fluorometric applications: a dissociation enhancement aqueous solution that can be excited by visible light for ethylenediaminetetraacetate (EDTA)-Eu~(3+) detection and a visible-light-sensitized water-soluble Eu~(3+) complex conjugated bovine serum albumin (BSA) for biolabeling and time-resolved luminescence bioimaging. In the first approach, a weakly acidic aqueous solution consisting of 4,4'-bis(1",1",1",2",2",3",3"-heptafluoro-4",6"-hexanedion-6"-yl)-o-terphenyl (BHHT), 2-(N,N-diethylanilin-4-yl)-4,6-bis(3,5-dimethylpyrazol-1-yl)-1,3,5-triazine (DPBT), and Triton X-100 was prepared. This solution shows a strong luminescence enhancement effect for EDTA-Eu~(3+) with a wide excitation wavelength range from UV to visible light (a maximum at 387 nm) and a long luminescence lifetime (520 (mu)s), to provide a novel dissociation enhancement solution for time-resolved luminescence detection of EDTA-Eu~(3+). In the second approach, a ternary Eu~(3+) complex, 4,4'-bis(1",1",1",2",-2",3",3"-heptafluoro-4",6"-hexanedion-6"-yl)-chlorosulfo-o-terphenyl (BHHCT)-Eu~(3+)-DPBT, was covalently bound to BSA to form a water-soluble BSA-BHHCT-Eu~(3+)-DPBT conjugate. This biocompatible conjugate is of the visible-light excitable feature in aqueous media with a wide excitation wavelength range from UV to visible light (a maximum at 387 nm), a long luminescence lifetime (460 (mu)s), and a higher quantum yield (27percent). The conjugate was successfully used for streptavidin (SA) labeling and time-resolved luminescence imaging detection of three environmental pathogens, Giardia lamblia, Cryptosporidium muris, and Cryptosporidium parvum, in water samples. Our strategy gives a general idea for designing a visible-light-sensitized Eu~(3+) complex for time-resolved luminescence bioassay applications.
机译:使用发光镧系配合物作为标记的时间分辨发光生物测定技术是一种高度灵敏且广泛用于临床诊断和生物技术的生物测定方法。当前技术的主要缺点是发光镧系元素标记需要紫外线激发(通常小于360 nm),这会损害生物系统,并阻碍了时间分辨发光仪器的进一步发展。本文中,我们描述了两种在水性介质中制备可见光敏化Eu〜(3+)配合物的方法,以用于时间分辨荧光分析应用:解离增强水溶液,可被可见光激发以生成乙二胺四乙酸(EDTA)-Eu〜。 (3+)检测和可见光敏化的水溶性Eu〜(3+)复合物缀合的牛血清白蛋白(BSA)用于生物标记和时间分辨发光生物成像。在第一种方法中,弱酸性水溶液由4,4'-双(1“,1”,1“,2”,2“,3”,3“-七氟-4”,6“-己二酮- 6“-基)-邻-联苯(BHHT),2-(N,N-二乙基苯胺-4-基)-4,6-双(3,5-二甲基吡唑-1-基)-1,3,5-制备三嗪(DPBT)和Triton X-100。该解决方案对EDTA-Eu〜(3+)具有很强的发光增强作用,其激发波长范围从UV到可见光(在387 nm处最大)和较长的发光寿命(520μs),可以提供用于时间分辨发光检测EDTA-Eu〜(3+)的新型解离增强解决方案。在第二种方法中,三元Eu〜(3+)络合物4,4'-bis(1“,1”,1“,2”,-2“,-3”,3“-七氟-4”,6将“-己二酮-6”-基)-氯磺基邻叔丁基(BHHCT)-Eu〜(3 +)-DPBT共价结合到BSA上,形成水溶性BSA-BHHCT-Eu〜(3 +)- DPBT共轭物。这种生物相容性偶联物在水性介质中具有可见光可激发的特征,其激发波长范围从UV到可见光(在387 nm处最大),较长的发光寿命(460μs)和更高的量子产率(27%)。该缀合物已成功用于链霉亲和素(SA)标记和时间分辨发光成像检测水中样品中的三种环境病原体,贾第鞭毛虫,隐孢子虫和小隐孢子虫。我们的策略给出了为可见光敏化的Eu〜(3+)络合物设计时间分辨荧光生物测定应用的总体思路。

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