首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Rapid label-free detection of intact pathogenic bacteria in situ via surface plasmon resonance imaging enabled by crossed surface relief gratings
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Rapid label-free detection of intact pathogenic bacteria in situ via surface plasmon resonance imaging enabled by crossed surface relief gratings

机译:通过交叉表面浮雕光栅使得表面等离子体共振成像出于表面等离子体共振成像的快速无标菌致病细菌检测

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摘要

The unique plasmonic energy exchange occurring within metallic crossed surface relief gratings (CSRGs) has recently motivated their use as biosensors. However, CSRG-based biosensing has been limited to spectroscopic techniques, failing to harness their potential for integration with ubiquitous portable electronics. Here, we introduce biosensing via surface plasmon resonance imaging (SPRi) enabled by CSRGs. The SPRi platform is fully integrated including optics and electronics, has bulk sensitivity of 613 Pixel Intensity Unit (PIU)/Refractive Index Unit (RIU), a resolution of 10-6 RIU and a signal-to-noise ratio of ~33 dB. Finite-Difference Time-Domain (FDTD) simulations confirm that CSRG-enabled SPRi is supported by an electric field intensity enhancement of ~30 times, due to plasmon resonance at the metal-dielectric interface. In the context of real-world biosensing applications, we demonstrate the rapid (<35 min) and label-free detection of uropathogenic E. coli (UPEC) in PBS and human urine samples for concentrations ranging from 10~3 to 10~9 CFU mL~(-1). The detection limit of the platform is ~100 CFU mL~(-1), three orders of magnitude lower than the clinical detection limit for diagnosis of urinary tract infection. This work presents a new avenue for CSRGs as SPRi-based biosensing platforms and their great potential for integration with portable electronics for applications requiring in situ detection.
机译:在金属交叉表面浮雕光栅(CSRGS)中发生的独特等离子体能源交换最近促使其用作生物传感器。然而,基于CSRG的生物传感已经限于光谱技术,未能利用它们与无处不在的便携式电子集成的潜力。在这里,我们通过CSRGS的表面等离子体共振成像(SPRI)引入生物沉积。 SPRI平台完全集成在内的光学和电子器件,具有613像素强度单元(PIU)/折射率单元(RIU)的批量灵敏度,分辨率为10-6 RIU和〜33 dB的信噪比。有限差分时域(FDTD)模拟确认CSRG启用的SPRI通过金属介质界面处的等离子体共振来支持〜30倍的电场强度增强。在现实世界生物传感应用的背景下,我们证明了PBS和人类尿液中PBS和人类尿液样品的快速(<35分钟)和无标签检测,用于浓度为10〜3至10〜9 cfu ml〜(-1)。平台的检测极限是〜100 cfu ml〜(-1),比诊断尿路感染的临床检测限价三个数量级。这项工作为CSRGS的新大道为基于SPRI的生物传感平台以及与便携式电子设备集成的巨大潜力,以便在原位检测中进行应用。

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