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Plasmonic enhancement in lateral flow sensors for improved sensing of E-coli O157:H7

机译:横向流动传感器中的等离子体增强,用于改善E-Coli O157的感测:H7

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摘要

We propose a plasmonic enhanced lateral flow sensor (pLFS) concept with an enhanced colorimetric signal by utilizing liposome encapsulating reagent to trigger the aggregation of gold nanoparticles (GNPs). Our signal enhancement strategy incorporates the simplicity of lateral flow immunoassays (LFIA) utilizing plasmonic enhancement. The conceptualized hybrid pLFS for onsite rapid detection of pathogens in low numbers in a user friendly format requiring simple steps is the first step in the translation of plasmonic enhancement sensing to a practical regime. The pLFS was carried out with a biotinylated liposome label ruptured to release branched polyethylenimine (BPEI) to trigger the aggregation of GNPs for colorimetric signal generation. BPEI has multiple amino groups and more positive charges in PBS buffer, therefore few of the BPEI groups could induce the aggregation of GNPs, resulting in an enhanced colorimetric signal to detect E. coli O157:H7. Compared with the reported conventional LFIA, the proposed pLFS demonstrated more than 1000-fold improvement in sensitivity. The pLFS could detect as low as 100 CFU/ml of E. coli O157:H7 in buffer and 600 CFU/ml E. coli O157:H7 in liquid food systems.
机译:通过利用脂质体包封试剂来引发金纳米颗粒(GNP)的聚集,提出一种等离子体增强的横向流动传感器(PLFS)概念,具有增强的比色信号。我们的信号增强策略包括利用等离子体增强的横向流免疫测定(LFIA)的简单性。现场概念化的混合PLF,以简单的步骤的用户友好格式在低位数中的病原体的快速检测是对实际制度进行等离子体增强感应的第一步。将PLF与生物素化脂质体标记进行破裂以释放支链聚乙烯亚胺(BPEI)以触发GNP的聚集以进行比色信号产生。 BPEI在PBS缓冲液中具有多个氨基和更积极的电荷,因此BPEI基团的少量可以诱导GNP的聚集,导致增强的比色信号检测大肠杆菌O157:H7。与报道的常规LFIA相比,所提出的PLF在敏感性方面的提高超过1000倍。 PLF可以在液体食品系统中检测缓冲液中的100℃/ ml大肠杆菌O157:H7和600 cfu / ml大肠杆菌O157:H7。

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