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用于单核细胞增生李斯特菌悬浮免疫测定的聚氧金属酸盐-芘修饰荧光微球的层层组装

Layer-by-layer assembly of polyoxometalate-pyrene-decorated fluorescent microspheres for the suspension immunoassay of Listeria monocytogenes.

作者信息

Ju Wen, Song Xiuling, Yan Gang, Xu Kun, Wang Juan, Yin Dehui, Li Li, Qu Xiaofeng, Li Yangguang, Li Juan

机构信息

College of Public Health, University of Jilin, Changchun, 130021, China.

出版信息

J Mater Chem B. 2016 Jun 28;4(24):4287-4294. doi: 10.1039/c6tb00986g. Epub 2016 Jun 8.

Abstract

A fluorescence microsphere suspension array technique has been developed as a promising tool for the molecular detection of Listeria monocytogene (LM), which is a dangerous food borne pathogen that can cause severe food intoxication in both humans and animals. In such a technique, fluorescent microspheres as the key matrix for detection are often decorated with neutral organic dyes, which usually suffer from instability, easy photobleaching and loss from the matrix. Herein, we design and synthesize a new organic-inorganic hybrid POM-pyrene compound [N(CH)][VO{(OCH)CNH-CH-CH}] (1), which is employed as a negatively-charged fluorescent material to prepare a new class of fluorescent microspheres by a layer-by-layer electrostatic self-assembly method. As a result, such POM-pyrene-decorated fluorescent microspheres possess obvious luminescence properties, superior photo-stability and long-term stability. Therefore, the POM-pyrene-decorated fluorescent microspheres are conjugated by monoclonal anti-LM antibodies, and introduced into the fluorescence microsphere-based suspension immunoassay system for the detection of LM in food, which exhibits a high sensitivity. The lowest limit of detection (LOD) of LM in artificially contaminated meat is down to 6 CFU g without cross-reactivity with other pathogens. Furthermore, the suspension immunoassay based on PS@POM-pyrene microspheres shows excellent specificity to LM, good repeatability and high efficiency in contrast to the conventional culture-based method.

摘要

一种荧光微球悬浮阵列技术已被开发出来,作为一种有前途的工具用于单核细胞增生李斯特菌(LM)的分子检测,单核细胞增生李斯特菌是一种危险的食源性病原体,可在人和动物中引起严重的食物中毒。在这种技术中,作为检测关键基质的荧光微球通常用中性有机染料修饰,而中性有机染料通常存在稳定性差、易光漂白以及从基质中流失的问题。在此,我们设计并合成了一种新型有机-无机杂化的多酸-芘化合物[N(CH)][VO{(OCH)CNH-CH-CH}] (1),将其作为带负电荷的荧光材料,通过逐层静电自组装方法制备了一类新型荧光微球。结果,这种多酸-芘修饰的荧光微球具有明显的发光性能、优异的光稳定性和长期稳定性。因此,将多酸-芘修饰的荧光微球与抗LM单克隆抗体偶联,并引入基于荧光微球的悬浮免疫分析系统用于食品中LM的检测,该系统表现出高灵敏度。人工污染肉中LM的最低检测限(LOD)低至6 CFU/g,且与其他病原体无交叉反应。此外,与传统的基于培养的方法相比,基于PS@多酸-芘微球的悬浮免疫分析对LM表现出优异的特异性、良好的重复性和高效率。

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