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A Protein L -Based Immunodiagnostic Approach Utilizing Time-Resolved Förster Resonance Energy Transfer

机译:基于时间分辨的福斯特共振能量转移的基于蛋白质L的免疫诊断方法

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摘要

Chelated lanthanides such as europium (Eu) have uniquely long fluorescence emission half-lives permitting their use in time-resolved fluorescence (TRF) assays. In Förster resonance energy transfer (FRET) a donor fluorophore transfers its emission energy to an acceptor fluorophore if in sufficiently close proximity. The use of time-resolved (TR) FRET minimizes the autofluorescence of molecules present in biological samples. In this report, we describe a homogenous immunoassay prototype utilizing TR-FRET for detection of antibodies in solution. The assay is based on labeled protein L, a bacterial protein that binds to immunoglobulin (Ig) light chain, and labeled antigen, which upon association with the same Ig molecule produce a TR-FRET active complex. We show that the approach is functional and can be utilized for both mono- and polyvalent antigens. We also compare the assay performance to that of another homogenous TR-FRET immunoassay reported earlier. This novel assay may have wide utility in infectious disease point-of-care diagnostics.
机译:螯合镧系元素(例如euro(Eu))具有独特的长荧光发射半衰期,从而使其可用于时间分辨荧光(TRF)分析。在福斯特共振能量转移(FRET)中,如果足够接近,则供体荧光团会将其发射能转移至受体荧光团。时间分辨(TR)FRET的使用可最大程度地减少生物样品中存在的分子的自发荧光。在本报告中,我们描述了利用TR-FRET检测溶液中抗体的同质免疫测定原型。该测定基于标记的蛋白L(一种与免疫球蛋白(Ig)轻链结合的细菌蛋白)和标记的抗原,这些抗原与相同的Ig分子结合后会产生TR-FRET活性复合物。我们表明该方法是功能性的,可用于单价和多价抗原。我们还将检测性能与先前报道的另一种同质TR-FRET免疫检测的性能进行了比较。这种新颖的检测方法在传染病即时诊断中可能具有广泛的用途。

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