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等离子体耦合增强拉曼散射纳米信标用于霍乱毒素的单步超灵敏检测。

Plasmon Coupling Enhanced Raman Scattering Nanobeacon for Single-Step, Ultrasensitive Detection of Cholera Toxin.

机构信息

State Key Laboratory of Chemo/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University , Changsha, Hunan 410082, P. R. China.

出版信息

Anal Chem. 2016 Aug 2;88(15):7447-52. doi: 10.1021/acs.analchem.6b00944. Epub 2016 Jul 20.

Abstract

We report the development of a novel plasmon coupling enhanced Raman scattering (PCERS) method, PCERS nanobeacon, for ultrasensitive, single-step, homogeneous detection of cholera toxin (CT). This method relies on our design of the plasmonic nanoparticles, which have a bilayer phospholipid coating with embedded Raman indicators and CT-binding ligands of monosialoganglioside (GM1). This design allows a facile synthesis of the plasmonic nanoparticle via two-step self-assembly without any specific modification or chemical immobilization. The realization of tethering GM1 on the surface imparts the plasmonic nanoparticles with high affinity, excellent specificity, and multivalence for interaction with CT. The unique lipid-based bilayer coated structure also affords excellent biocompatibility and stability for the plasmonic nanoparticles. The plasmonic nanoparticles are able to show substantial enhancement of the surface-enhanced Raman scattering (SERS) signals in a single-step interaction with CT, because of their assembly into aggregates in response to the CT-sandwiched interactions. The results reveal that the developed nanobeacon provides a simple but ultrasensitive sensor for rapid detection of CT with a large signal-to-background ratio and excellent reproducibility in a wide dynamic range, implying its potential for point-of-care applications in preventive and diagnostic monitoring of cholera.

摘要

我们报告了一种新型的等离子体耦合增强拉曼散射(PCERS)方法,即 PCERS 纳米信标,用于超灵敏、单步、均相检测霍乱毒素(CT)。该方法依赖于我们设计的等离子体纳米粒子,其具有双层磷脂涂层,嵌入了拉曼指示剂和单唾液酸神经节苷脂(GM1)的 CT 结合配体。这种设计允许通过两步自组装轻松合成等离子体纳米粒子,而无需任何特定的修饰或化学固定化。GM1 键合在表面上的实现赋予了等离子体纳米粒子与 CT 相互作用的高亲和力、优异的特异性和多价性。独特的基于脂质的双层涂层结构还为等离子体纳米粒子提供了优异的生物相容性和稳定性。由于等离子体纳米粒子在响应 CT 夹杂物相互作用时组装成聚集体,因此它们能够在与 CT 的单步相互作用中显示出显著增强的表面增强拉曼散射(SERS)信号。结果表明,所开发的纳米信标提供了一种简单但超灵敏的传感器,可用于快速检测 CT,具有大的信号背景比和在宽动态范围内的优异重现性,这意味着它有可能用于霍乱的预防性和诊断性监测中的即时护理应用。

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