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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Development of a SPR aptasensor containing oriented aptamer for direct capture and detection of tetracycline in multiple honey samples
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Development of a SPR aptasensor containing oriented aptamer for direct capture and detection of tetracycline in multiple honey samples

机译:开发含有定向适体的SPR Aptamensor,用于直接捕获和检测多个蜂蜜样品中的四环素

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摘要

Although surface plasmon resonance (SPR) technique and aptamer technology shows great potential in analytical and biological chemistry, direct capture and analysis of small molecules using SPR remains tough. Detection sensitivity of aptasensor and recognition ability of aptamer is limited, because direct immobilization of aptamer causes large steric hindrance and strand entanglement Herein, we chose a typical small molecule-tetracycline (Mw. 444.4 g/mol) as a model, and combined aptamer technology, DNA nanostructure, and commercial Biacore T200 SPR instrument to develop a straightforward format SPR aptasensor. Anti-tetracycline aptamer (Apt76) was fabricated on the top of a tetrahedron nanostructure to provide a better accessibility to tetracycline than the single-stranded Apt76 (ss-Apt76), and thus to improve sensitivity of the SPR aptasensor. The aptasensor was then validated in real world application for tetracycline screening in multiple honey samples, achieving good recovery rates of 80.20-114.3%, intuitive sensorgrams indicating the binding kinetic properties, and high specificity towards tetracycline. LOD of the tetrahedron-based SPR aptasensor was obtained using the real honey sample and calculated to be 0.0069 mu g/kg, which was 10-fold range lower than that of the ss-Apt76-based aptasensor. The proof-of-concept demonstrated that aptamers of small molecules can be oriented immobilized on the SPR surface in a uniform nanoscale distance in both lateral and vertical direction, so as to achieve better conformational folding and better accessibility to small molecules. The concept is promising to be a universal and powerful tool for other ligand immobilization and SPR studies for both real world detection and molecular interaction.
机译:虽然表面等离子体共振(SPR)技术和适体技术在分析和生物化学方面表现出极大的潜力,但使用SPR的小分子直接捕获和分析仍然坚韧。 Aptamer的Aptasensor的检测灵敏度和适体的识别能力有限,因为适体的直接固定导致本文的大空间障碍和链缠结,我们选择了典型的小分子 - 四环素(MW.44.4g / mol)作为模型,组合适体技术,DNA纳米结构和商业Biacore T200 SPR仪器开发直接的格式SPR Aptasensor。在四面体纳米结构的顶部上制造抗四环素适体(APT76),以提供比单链APT76(SS-APT76)对四环素的更好可达性,从而提高SPR Aptasensor的灵敏度。然后,在多个蜂蜜样品中的Tetracycline筛选的现实世界应用中验证了Aptasensor,从而实现了80.20-114.3%的良好回收率,直观的传感图,表明结合动力学性质以及对四环素的高特异性。使用真正的蜂蜜样品获得基于四面体的SPR Aptasensor的床位,并计算为0.0069μg/ kg,其比SS-APT76的Aptasensor低10倍。概念证明表明,小分子的适体可以在横向和垂直方向上均匀纳米级距离在SPR表面上固定在SPR表面上,以达到更好的构象折叠和对小分子的更好可访问性。该概念很有希望是对现实世界检测和分子相互作用的其他配体固定和SPR研究成为一种普遍而有力的工具。

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