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An enzymatic bionanotransduction system for multianalyte biological detection

机译:用于多分析物生物检测的酶联生物纳米转导系统

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Aims: The aim of this study was to develop and optimize a system for the detection of multiple biological targets in a single sample based on enzymatic bionanotransduction. Method and Results: We used biological recognition elements (antibodies, DNA sequences) linked to DNA templates with T7 promoter regions for detection of specific target molecules. In vitro transcription of DNA templates bound to target molecules produced RNA nanosignals specific for every target in the sample. An enzyme-linked oligonucleotide fluorescence assay (ELOFA) provided a correlation between nanosignal profiles and target concentrations. The system was capable of detecting and distinguishing three species of specific immunoglobulin G (IgG) molecules at a level of 0.2 ng, mixed protein and DNA targets and single sample detection of Escherichia coli O157 micro-organisms and Staphylococcal enterotoxin B (SEB). Conclusions: This report provided proof of concept for the use of enzymatic bionanotransduction with multianalyte biological detection based on differential nanosignal hybridization along with the application of this system to pathogen/toxin detection. Significance and Impact of the Study: This system has the potential to be used as a tool for detection of multiple foodborne and environmental pathogens, toxins and targets of interest in a single sample.
机译:目的:这项研究的目的是开发和优化一种系统,该系统可基于酶联的生物仿生转导检测单个样品中的多个生物靶标。方法和结果:我们使用与具有T7启动子区域的DNA模板连接的生物识别元件(抗体,DNA序列)来检测特定的目标分子。结合靶分子的DNA模板的体外转录产生了样品中每个靶特异的RNA纳米信号。酶联寡核苷酸荧光测定法(ELOFA)提供了纳米信号曲线与目标浓度之间的相关性。该系统能够以0.2 ng的水平检测和区分三种特异性免疫球蛋白G(IgG)分子,混合的蛋白质和DNA靶标,并能对大肠杆菌O157微生物和葡萄球菌肠毒素B(SEB)进行一次样品检测。结论:本报告提供了利用基于差异纳米信号杂交的酶联生物纳米转导结合多分析物生物检测的概念证据,以及该系统在病原体/毒素检测中的应用。研究的意义和影响:该系统有潜力用作检测单个样品中多种食源性和环境性病原体,毒素和目标靶标的工具。

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