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Ultrahigh-Sensitivity Sandwiched Plasmon Ruler for Label-Free Clinical Diagnosis

机译:超高灵敏度夹心式等离子直尺用于无标签临床诊断

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Optical biosensors, especially those based on plasmonic structures, have emerged recently as a potential tool for disease diagnostics. Plasmonic biosensors have demonstrated impressive benefits for the label-free detection of trace biomarkers in human serum. However, widespread applications of these technologies are hindered because of their insufficient sensitivity, their relatively complex chemical immobilization processes, and the use of prism couplers. Accordingly, a sandwiched plasmon ruler (SW-PR) based on a Au nanohole array with ultrahigh sensitivity arising from the plasmonic coupling effect is developed. Highly confined surface charges caused by Bloch wave surface plasmon polarizations substantially increase the coupling efficiency. This platform exhibits thickness sensitivity as high as 61 nm nm(-1) and can detect at least 200 000-fold lower analyte concentrations than a nanowell sensing platform with the same wavelength shift. Additionally, the sandwiched plasmonic biosensor allows precise and label-free testing of clinical biomarkers, namely C-reactive protein and procalcitonin, in patient serum samples without requiring a sophisticated prism coupler, extra antibodies, or a chemical immobilization technique. This study yields new insight into the structural design of plasmon rulers and will open exciting avenues for disease diagnosis and therapy follow-up at the point-of-care.
机译:光学生物传感器,尤其是基于等离子体结构的光学生物传感器,最近已成为疾病诊断的潜在工具。等离子体生物传感器在无标记检测人血清中的痕量生物标志物方面已显示出令人印象深刻的优势。然而,由于这些技术的灵敏度不足,其相对复杂的化学固定过程以及棱镜耦合器的使用,阻碍了这些技术的广泛应用。因此,开发了基于Au纳米孔阵列的夹层等离子体标尺(SW-PR),其具有由等离子体耦合效应引起的超高灵敏度。由布洛赫波表面等离子体激元极化引起的高度受限的表面电荷大大提高了耦合效率。该平台具有高达61 nm nm(-1)的厚度灵敏度,并且与具有相同波长偏移的纳米孔传感平台相比,可以检测到的分析物浓度至少低20万倍。此外,夹层等离子体生物传感器可以对患者血清样品中的临床生物标记物(即C反应蛋白和降钙素)进行精确且无标签的测试,而无需复杂的棱镜耦合器,额外的抗体或化学固定技术。这项研究为等离激元标尺的结构设计提供了新的见识,并将为现场诊断疾病和进行治疗跟踪开辟令人振奋的途径。

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