首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Assembly of bioconjugated rod-nanotags and multilayer plasmonic nanorod-array for ultrasensitive SERS detection of S-aureus bacteria
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Assembly of bioconjugated rod-nanotags and multilayer plasmonic nanorod-array for ultrasensitive SERS detection of S-aureus bacteria

机译:生物缀合杆纳米杆和多层等离子体纳米杆阵列的组装用于S-Aureus细菌的超敏SERs

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摘要

A highly-efficient bioconjugation protocol of bimetallic rod-nanotags interacted with bacterial anti-S. aureus-IgG has been firstly demonstrated. Controllable fabrication of multilayer plasmonic nanorod-array (MPNRA) can be successfully obtained by facet functionalization of nanorods stacked on an activated Si/SiO2 chip. Vancomycin coating of MPNRA is favorable to immobilize S. aureus bacteria via multiple hydrogen bonding interactions, i.e., peptidoglycan of the bacterial cell and carbonyl/amine groups of the vancomycin. Moreover, the bimetallic rod-nanotags can be assembled around MPNRA via a bacterial biointerface. Ultrasensitive SERS detection of S. aureus bacteria with limit-of-detection (LOD) can be achieved up to 17.8 cfu/mL via combination of rod-nanotag and multilayer plasmonic nanorod-array perpendicular a chip (MPNRA-perpendicular substrate), which could be ascribed to dual plasmonic enhancement from bioconjugated rod-nanotags aggregates and large-scaled plasmonic nanorod-array.
机译:一种高效的双金属杆 - 纳米柱的生物凝固方案与细菌反液相互作用。首先证明了金黄色葡萄球菌-IgG。通过在活化的Si / SiO2芯片上堆叠在活化的Si / SiO2芯片上的纳米棒的剖面功能,可以成功地获得多层等离子体纳米棒阵列(MPNRA)的可控制造。 MPNA的万古霉素涂层有利于通过多种氢键相互作用,即肽细胞和万古霉素的羰基/胺基团的肽聚糖来固定S.UUREUS细菌。此外,双金属杆纳米块可以通过细菌生物接口围绕MPNRA组装。通过杆 - 纳米架和多层等离子体纳米峰阵列垂直芯片(MPNRA垂直衬底),可以通过组合达17.8cfu / ml来实现具有限制性限制(LOD)的金黄色葡萄球菌的检测。从生物缀合的杆纳米杆块和大尺寸等离子体纳米棒阵列归因于双重等离子体增强。

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