首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Single-step detection of norovirus tuning localized surface plasmon resonance-induced optical signal between gold nanoparticles and quantum dots
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Single-step detection of norovirus tuning localized surface plasmon resonance-induced optical signal between gold nanoparticles and quantum dots

机译:诺罗维病毒调谐局部等离子体共振诱导的金纳米颗粒和量子点之间的单步检测

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摘要

A new method of label free sensing approach with superior selectivity and sensitivity towards virlabel-freeon is presented here, employing the localized surface plasmon resonance (LSPR) behavior of gold nanoparticles (AuNPs) and fluorescent CdSeTeS quantum dots (QDs). Inorganic quaternary alloyed CdSeTeS QDs were capped with (L)-cysteine via a ligand exchange reaction. Alternatively, citrate stabilized AuNPs were functionalized with 11-mercaptoundecanoic acid to generate carboxylic group on the gold surface. The carboxylic group on the AuNPs was subjected to bind covalently with the amine group of (L)-cysteine capped CdSeTeS QDs to form CdSeTeS QDs/AuNPs nanocomposites. The fluorescence of CdSeTeS QDs/AuNPs nanocomposite shows quenched spectrum of CdSeTeS QDs at 640 nm due to the close interaction with AuNPs. However, after successive addition of norovirus-like particles (NoV-LPs), steric hindrance-induced LSPR signal from the adjacent AuNPs triggered the fluorescence enhancement of QDs in proportion to the concentration of the target NoV-LPs. A linear range of 10(-14) to 10(-9) g mL(-1) NoV-LPs with a detection limit of 12.1 x 10(-15) g mL(-1) was obtained. This method was further applied on clinically isolated norovirus detection, in the range of 10(2)-10(5) copies mL(-1) with a detection limit of 95.0 copies mL(-1), which is 100-fold higher than commercial ELISA kit. The superiority of the proposed sensor over other conventional sensors is found in its ultrasensitive detectability at low virus concentration even in clinically isolated samples. This proposed detection method can pave an avenue for the development of high performance and robust sensing probes for detection of virus in biomedical applications.
机译:这里提出了一种具有卓越的选择性和敏感性的标签自由感测方法的新方法,采用金纳米颗粒(AUNP)的局部表面等离子体共振(LSPR)和荧光CDSetes量子点(QDS)的局部表面等离子体共振(LSPR)行为。无机季齐合金CDSete QD通过配体交换反应用(L) - 琥珀酸盐覆盖。或者,用11-巯基己酸官能化柠檬酸盐稳定的剖腹产物,以在金表面上产生羧基。对αUANP上的羧基与(L)-Cysteine封端的CDSeteQDS的胺基共价结合,形成CDSeteS QDS / AUNPS纳米复合材料。 CDSetes QDS / AUNPS纳米复合材料的荧光显示由于与AUNP的密切相互作用,在640nm处显示猝灭的CDSETES QDS。然而,在连续添加诺罗病毒样颗粒(1100-LPS)之后,来自相邻AUNP的空间障碍诱导的LSPR信号与靶标Nov-LP的浓度成比例地引发QD的荧光增强。获得具有12.1×10(-15 )g ml(-1)的检测限的10(-14)至10(-9)至10(-9)至10(-1)的线性范围。该方法进一步应用于临床上分离的诺病毒检测,在10(2)-10(5)份ML(-1)的范围内,检测限为95.0拷贝ml(-1),其高于100倍商业ELISA套件。即使在临床上分离的样品中,也发现所提出的传感器在其他常规传感器上的优越性在低病毒浓度下的超声检测。该提出的检测方法可以铺设高性能和鲁棒感测探针的发展,以检测生物医学应用中病毒。

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