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首页> 外文期刊>Nanotechnology >Localized surface plasmon resonance detection of layered biointeractions on metallic subwavelength nanogratings
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Localized surface plasmon resonance detection of layered biointeractions on metallic subwavelength nanogratings

机译:金属亚波长纳米光栅上分层生物相互作用的局部表面等离子体共振检测。

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摘要

Enhanced detection of multiple targets such as self-assembled monolayer (SAM) formation, DNA hybridization, and ethanol ambient changes was explored using localized surface plasmon resonance (LSPR) excited by metallic surface nanogratings. The sensitivity enhancement depends on the target as well as the nanostructure with a maximum at 242% over a conventional structure when detecting an 11-mercaptoundecanoic acid SAM with an LSPR structure of 200 nm period. The measured enhancement shows smaller target-dependent variance when detecting various layered biointeractions, while structure-dependent variance was much larger. The result suggests the feasibility of the efficient detection of multiple biointeractions at enhanced sensitivity and extends the applicability of a nanostructured LSPR biosensor for diverse biomolecular events.
机译:使用由金属表面纳米光栅激发的局部表面等离子体共振(LSPR),探索了对多个目标的增强检测,例如自组装单层(SAM)形成,DNA杂交和乙醇环境变化。当检测具有200 nm周期LSPR结构的11-巯基十一烷酸SAM时,灵敏度的提高取决于靶标以及相对于常规结构最大为242%的纳米结构。当检测到各种分层的生物相互作用时,测得的增强结果显示较小的目标相关方差,而结构相关的方差则大得多。结果表明以提高的灵敏度有效检测多种生物相互作用的可行性,并扩展了纳米结构的LSPR生物传感器对各种生物分子事件的适用性。

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