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A Fast and Cost-Effective Detection of Melamine by Surface Enhanced Raman Spectroscopy Using a Novel Hydrogen Bonding-Assisted Supramolecular Matrix and Gold-Coated Magnetic Nanoparticles

机译:通过使用新型氢键辅助超分子基质和镀金磁性纳米粒子的表面增强拉曼光谱法快速,经济高效地检测三聚氰胺

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摘要

A fast and cost-effective melamine detection approach has been developed based on surface enhanced Raman spectroscopy (SERS) using a novel hydrogen bonding-assisted supramolecular matrix. The detection utilizes Fe 3 O 4 /Au magnetic nanoparticles coated with 5-aminoorotic acid (AOA) as a SERS active substrate (Fe 3 O 4 /Au–AOA), and Rhodamine B (RhB) conjugated AOA as a Raman reporter (AOA–RhB). Upon mixing the reagents with melamine, a supramolecular complex [Fe 3 O 4 /Au–AOA???melamine???AOA–RhB] was formed due to the strong multiple hydrogen bonding interactions between AOA and melamine. The complex was separated and concentrated to a pellet by an external magnet and used as a supramolecular matrix for the melamine detection. Laser excitation of the complex pellet produced a strong SERS signal diagnostic for RhB. The logarithmic intensity of the characteristic RhB peaks was found to be proportional to the concentration of melamine with a limit of detection of 2.5 μg/mL and a detection linearity range of 2.5~15.0 μg/mL in milk. As Fe 3 O 4 nanoparticles and AOA are thousands of times less expensive than the monoclonal antibody used in a traditional sandwich immunoassay, the current assay drastically cut down the cost of melamine detection. The current approach affords promise as a biosensor platform that cuts down sample pre-treatment steps and measurement expense.
机译:基于表面增强拉曼光谱(SERS),使用新型氢键辅助超分子基质,已经开发了一种快速且经济高效的三聚氰胺检测方法。该检测利用涂有5-氨基乳清酸(AOA)的Fe 3 O 4 / Au磁性纳米粒子作为SERS活性底物(Fe 3 O 4 / Au–AOA),并结合了若丹明B(RhB)的AOA作为拉曼报告分子(AOA) –RhB)。将试剂与三聚氰胺混合后,由于AOA和三聚氰胺之间的强氢键相互作用,形成了超分子络合物[Fe 3 O 4 / Au-AOA-三聚氰胺-AOA-RhB]。分离复合物,并通过外部磁体将其浓缩成沉淀,并将其用作三聚氰胺检测的超分子基质。复杂颗粒的激光激发产生了对RhB的强SERS信号诊断。发现RhB特征峰的对数强度与三聚氰胺浓度成正比,牛奶中的检出限为2.5μg/ mL,检测线性范围为2.5〜15.0μg/ mL。由于Fe 3 O 4纳米颗粒和AOA的价格比传统夹心免疫测定法中使用的单克隆抗体便宜数千倍,因此当前的测定法大大降低了三聚氰胺检测的成本。当前的方法有望作为一种生物传感器平台,减少样品预处理步骤和测量费用。

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