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Bright or dark immune complexes of anti-TAMRA antibodies for adapted fluorescence-based bioanalysis

机译:抗TAMRA抗体的亮或暗免疫复合物,适用于基于荧光的生物分析

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Fluorescence labels, for example fluorescein or rhodamin derivatives, are widely used in bioanalysis applications including lateral-flow assays, PCR, and fluorescence microscopy. Depending on the layout of the particular application, fluorescence quenching or enhancement may be desired as the detection principle. Especially for multiplexed applications or high-brightness requirements, a tunable fluorescence probe can be beneficial. The alterations in the photophysics of rhodamine derivatives upon binding to two different anti-TAMRA antibodies were investigated by absorption and fluorescence-spectroscopy techniques, especially determining the fluorescence decay time and steady-state and time-resolved fluorescence anisotropy. Two monoclonal anti-TAMRA antibodies were generated by the hybridoma technique. Although surface-plasmon-resonance measurements clearly proved the high affinity of both antibodies towards 5-TAMRA, the observed effects on the fluorescence of rhodamine derivatives were very different. Depending on the anti-TAMRA antibody either a strong fluorescence quenching (G71-DC7) or a distinct fluorescence enhancement (G71-BE11) upon formation of the immune complex was observed. Additional rhodamine derivatives were used to gain further information on the binding interaction. The data reveal that such haptens as 5-TAMRA could generate different paratopes with equal binding affinities but different binding interactions, which provide the opportunity to adapt bioanalysis methods including immunoassays for optimized detection principles for the same hapten depending on the specific requirements.
机译:荧光标记,例如荧光素或若丹明衍生物,已广泛用于生物分析应用,包括侧流分析,PCR和荧​​光显微镜检查。根据特定应用的布局,可能需要荧光猝灭或增强作为检测原理。特别是对于多重应用或高亮度要求,可调荧光探针可能会有所帮助。通过吸收和荧光光谱技术研究了若丹明衍生物与两种不同的抗TAMRA抗体结合后光物理的变化,特别是确定了荧光衰减时间以及稳态和时间分辨的荧光各向异性。通过杂交瘤技术产生了两种单克隆抗TAMRA抗体。尽管表面等离子体共振测量清楚地证明了两种抗体对5-TAMRA的高亲和力,但观察到的对罗丹明衍生物荧光的影响却大不相同。取决于抗TAMRA抗体,在形成免疫复合物时观察到强荧光猝灭(G71-DC7)或明显的荧光增强(G71-BE11)。其他罗丹明衍生物用于获得结合相互作用的进一步信息。数据显示,诸如5-TAMRA之类的半抗原可以产生具有相同结合亲和力但具有不同结合相互作用的不同互补位,这为根据具体要求为适应同一半抗原的最佳检测原理而调整生物分析方法(包括免疫测定)提供了机会。

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