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Stable and Sensitive Silver Surface Plasmon Resonance Imaging Sensor Using Trilayered Metallic Structures

机译:使用三层金属结构的稳定且灵敏的银表面等离子体共振成像传感器

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The silver surface plasmon resonance (SPR) sensor has long been explored due to its intrinsic sensitivity enhancement over the conventional single-layered gold SPR sensor. However, the silver SPR sensor has not been exploited for practical applications because of pronounced instability problems. We propose a novel gold-silver-gold trilayered SPR sensor chip, in which an extra buffer layer of gold is added between the silver and substrate adhesion layer (i.e., chromium) compared to the previously reported silver-gold bilayered SPR sensors. Subjected to prolonged agitation in phosphate-buffered saline (PBS) solution, the new chip exhibited high integrity according to both optical and atomic force microscopy (AFM) analysis. Having undergone repeated cycles of calibration, binding, and regeneration in various chemical solutions, 25 regions of interest (ROIs) over a 14 mm × 14 mm area were chosen and monitored by large detection area SPR microscopy; the new sensor chip exhibited stability comparable to the single gold layered SPR chip. In terms of sensing performances, over 50% increases in sensitivity and signal-to-noise ratio (S/N) than those of the single gold layered SPR chip were determined by SPR microscopy at 660 nm. Protein arrays of protein A and bovine serum albumin (BSA) on both the new chip and single-layered gold SPR chip were fabricated and underwent biomolecular interactions with human IgG, for the purpose of consistency, comparison on kinetics parameters, values from the microarray trilayered chip showed reasonable consistency with those from the single gold layered SPR chip. This study suggests that the new chip is a viable alternative to the conventional single gold layered SPR chip with improved sensing performances.
机译:银表面等离子体激元共振(SPR)传感器由于其固有的灵敏度提高而超过了传统的单层金SPR传感器,因此已经进行了长期的探索。但是,由于存在明显的不稳定性问题,因此尚未将银SPR传感器用于实际应用。我们提出了一种新颖的金银金三层SPR传感器芯片,其中与先前报道的银金双层SPR传感器相比,在银和基板粘附层之间添加了额外的金缓冲层(即铬)。经过在磷酸盐缓冲盐水(PBS)溶液中长时间搅拌,根据光学和原子力显微镜(AFM)分析,新芯片显示出很高的完整性。在各种化学溶液中经过反复的校准,结合和再生循环后,选择了14 mm×14 mm区域内的25个感兴趣区域(ROI),并通过大检测面积SPR显微镜进行了监测;新的传感器芯片表现出的稳定性可媲美单层金SPR芯片。就感测性能而言,在660 nm处通过SPR显微镜确定,与单层金SPR芯片相比,灵敏度和信噪比(S / N)提高了50%以上。制备了新芯片和单层金SPR芯片上的蛋白A和牛血清白蛋白(BSA)的蛋白阵列,并与人IgG进行了生物分子相互作用,目的是保持一致性,比较动力学参数,三层微阵列的值该芯片与单层金SPR芯片显示出合理的一致性。这项研究表明,这种新芯片可以替代传统的单层金镀膜SPR芯片,并具有改善的传感性能。

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