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首页> 外文期刊>Nanoscale >Simultaneous direct detection of Shiga-toxin producing Escherichia coli (STEC) strains by optical biosensing with oligonucleotide-functionalized gold nanoparticles
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Simultaneous direct detection of Shiga-toxin producing Escherichia coli (STEC) strains by optical biosensing with oligonucleotide-functionalized gold nanoparticles

机译:同时志贺毒素的直接检测大肠杆菌(STEC)生产菌株光若与oligonucleotide-functionalized金纳米粒子

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摘要

A simultaneous direct detection of Shiga-toxin producing strains of E. coli (STEC; "Big Six"-O26, O45, O103, O111, O121, and O145) as well as O157 strains by optical biosensing with oligonucleotide-functionalized gold nanoparticles (AuNPs) was developed. Initially, conserved regions of stx genes were amplified by asymmetric polymerase chain reaction (asPCR). Pairs of single stranded thiol-modified oligonucleotides (30-mer) were immobilized onto AuNPs and used as probes to capture regions of stx1 (119-bp) and/or stx2 (104-bp) genes from STEC strains. DNA samples from pure cultures and food samples were sandwich hybridized with AuNP-oligo probes at optimal conditions (50 degrees C, 30 min). A complex was formed from the hybridization of AuNP-probes and target DNA fragments that retained the initial red color of the reaction solutions. For non-target DNA, a color change from red to purplish-blue was observed following an increase in salt concentration, thus providing the basis of simultaneous direct colorimetric detection of target DNA in the samples. Enrichment and pooling systems were incorporated to efficiently process a large number of food samples (ground beef and blueberries) and detection of live targets. The detection limit was <1 log CFU g(-1), requiring less than 1 h to complete after DNA sample preparation with 100% specificity. Gel electrophoresis verified AuNP-DNA hybridization while spectrophotometric data and transmission electron microscope (TEM) images supported color discrimination based on the occurrence of molecular aggregation. In conclusion, the significant features of this approach took advantage of the unique colorimetric properties of AuNPs as a low-cost and simple approach yet with high specificity for simultaneous detection of STEC strains.
机译:同时志贺毒素的直接检测大肠杆菌生产菌株(STEC;六个“-O26、O45 O103、O111 O121,和O145)O157菌株通过光学若oligonucleotide-functionalized金纳米粒子(AuNPs)开发。stx基因的区域被不对称放大聚合酶链反应(asPCR)。单链thiol-modified寡核苷酸(30-mer)被固定到AuNPs和作为探测器捕获区域stx1 (119 - bp)和/或stx2 (104 - bp) STEC菌株的基因。样品从纯粹的文化和食物样本三明治与AuNP-oligo探针杂交最优条件(50摄氏度,30分钟)。复杂的杂化的形成AuNP-probes和目标DNA片段保留最初的红色反应解决方案。从红到紫蓝之后盐浓度的增加,从而提供同时直接比色的基础检测的目标DNA样本。浓缩和池系统整合有效地处理大量的食物(牛肉和蓝莓)和样品生活目标的检测。< 1日志CFU g(1),要求小于1 h完整的DNA样品制备后100%特异性。AuNP-DNA杂交而光谱光度测量的数据和透射电子显微镜(TEM)支持图像颜色的歧视分子聚合的发生。结论的重要特征方法利用独特的比色AuNPs作为一个低成本的性质然而高特异性和简单的方法同时检测STEC菌株。

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