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Polydopamine Thin Films as Protein Linker Layer for Sensitive Detection of Interleukin-6 by Surface Plasmon Enhanced Fluorescence Spectroscopy

机译:聚多巴胺薄膜作为蛋白连接层,用于通过表面等离激元增强荧光光谱法灵敏地检测白介素-6

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Polydopamine (PDA) thin films are introduced to the surface modification of biosensor surfaces utilizing surface plasmon enhanced fluorescence spectroscopy (SPFS) as the linker layer of capture antibody on to the sensor surfaces. The capture antibody can be directly attached to the sensor surface without using any coupling agent by functionalizing the gold sensor surface with PDA thin films. The PDA coating is performed by a single-step preparation process by applying the dopamine solution on the sensor surface, which requires an extremely short incubation time (10 min). The real-time in situ measurement of the adsorption kinetics of the capture antibody onto the PDA-coated sensor surface is studied by surface plasmon resonance (SPR) spectroscopy. It reveals that the immobilization of capture antibody immediately occurs after introduction of a solution containing capture antibody, and the sensor surface is fully covered with the capture antibody. The sensitive detection of the cytokine marker interleukin-6 (IL-6) is performed by SPFS using a sandwich assay format with fluorescently labeled detection antibody. The sensor chips functionalized by PDA chemistry exhibited sensitive sensor responses with low nonspecific adsorption of the detection antibody onto the sensor surface. The detection limit of IL-6 with the developed SPFS biosensor is determined to be 2 pg/mL (100 fM), which is within the range of the diagnostic criteria. Our observation elucidates the remarkable utility of PDA coatings for chemical modification of the metallic sensor surfaces by a simple, brief, and inexpensive manner.
机译:使用表面等离激元增强荧光光谱(SPFS)作为捕获抗体在传感器表面上的连接层,将聚多巴胺(PDA)薄膜引入生物传感器表面的表面修饰。通过使用PDA薄膜对金传感器表面进行功能化,可将捕获抗体直接连接至传感器表面,而无需使用任何偶联剂。通过在传感器表面上涂抹多巴胺溶液,通过一步制备过程即可完成PDA涂层,这需要非常短的孵育时间(10分钟)。通过表面等离振子共振(SPR)光谱研究了捕获抗体在涂有PDA的传感器表面上的吸附动力学的实时原位测量。它表明捕获抗体的固定在引入包含捕获抗体的溶液后立即发生,并且传感器表面完全被捕获抗体覆盖。通过SPFS使用夹心测定形式和荧光标记的检测抗体,通过SPFS进行细胞因子标记白介素6(IL-6)的灵敏检测。通过PDA化学作用功能化的传感器芯片表现出敏感的传感器响应,并且检测抗体在传感器表面上的非特异性吸附较低。使用开发的SPFS生物传感器检测到的IL-6的检出限为2 pg / mL(100 fM),在诊断标准范围内。我们的观察结果阐明了PDA涂层通过简单,简短和廉价的方式对金属传感器表面进行化学修饰的卓越实用性。

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