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Highly selective turn-on detection of (strept)avidin based on self-assembled near-infrared fluorescent probes

机译:基于自组装近红外荧光探针的(链)亲和素的高选择性开启检测

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Selective detection and visualization of specific proteins are important in clinical diagnostics and biological research. For protein sensing, small-molecule-based fluorescent turn-on probes are preferable because of their high sensitivity, simplicity and detection with high-throughput. Herein we demonstrated a small molecular fluorescent dye (SQ-Biotin) which can self-assemble into a non-fluorescent probe in aqueous solution for near infrared turn-on detection of avidin protein. This probe consisting of a hydrophobic squaraine (SQ) as a fluorophore and a specific and strong protein ligand (biotin) formed self-assembled aggregates in aqueous solution (fluorescence off), and the aggregates of the probe disassembled in response to the target protein (avidin) through the specific protein-ligand interaction (fluorescence on). The conversion of the aggregation of SQ-Biotin was confirmed by field emission scanning electron microscopy (FESEM) and atomic force microscopy (AFM). The fluorescence intensities at 665 nm were linearly proportional to the concentration of avidin over the range of 0.76-1.46 mu M. The detection limit was calculated to be about 70 nM. SQ-Biotin showed good selectivity to avidin over other proteins, enabling turn-on fluorescent detection of avidin in the near infrared region. The strategy demonstrated the great potential applicability of the self-assembled small-molecule-based fluorophores for protein sensing in clinical diagnosis.
机译:特定蛋白质的选择性检测和可视化在临床诊断和生物学研究中很重要。对于蛋白质感测,基于小分子的荧光开启探针是优选的,因为它们具有高灵敏度,简便性和高通量检测能力。在本文中,我们展示了一种小分子荧光染料(SQ-Biotin),该染料可以在水溶液中自组装成非荧光探针,用于近红外开启抗生物素蛋白的检测。该探针由疏水性方酸(SQ)作为荧光团和特异性强蛋白配体(生物素)组成,在水溶液中形成自组装聚集体(荧光消失),并且探针的聚集体响应于目标蛋白质而分解(亲和素)通过特定的蛋白质-配体相互作用(发荧光)。通过场发射扫描电子显微镜(FESEM)和原子力显微镜(AFM)证实了SQ-生物素聚集的转化。 665 nm处的荧光强度与亲和素的浓度在0.76-1.46μM的范围内成线性比例。计算的检出限约为70 nM。 SQ-生物素对亲和素显示出比其他蛋白质更好的选择性,从而可以在近红外区域开启亲和素的荧光检测。该策略证明了自组装的基于小分子的荧光团在临床诊断中对蛋白质传感的巨大潜在适用性。

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