Instituto Superior Técnico, University of Lisbon, 1049-001 Lisboa, Portugal.
INESC-MN- Microsystems and Nanotechnologies, 1000-029 Lisboa, Portugal.
Sensors (Basel). 2020 Jun 12;20(12):3351. doi: 10.3390/s20123351.
The accurate diagnosis of bacterial infections is of critical importance for effective treatment decisions. Due to the multietiologic nature of most infectious diseases, multiplex assays are essential for diagnostics. However, multiplexability in nucleic acid amplification-based methods commonly resorts to multiple primers and/or multiple reaction chambers, which increases analysis cost and complexity. Herein, a polymerase chain reaction (PCR) offer method based on a universal pair of primers and an array of specific oligonucleotide probes was developed through the analysis of the bacterial 16S ribosomal RNA gene. The detection system consisted of DNA hybridization over an array of magnetoresistive sensors in a microfabricated biochip coupled to an electronic reader. Immobilized probes interrogated single-stranded biotinylated amplicons and were obtained using asymmetric PCR. Moreover, they were magnetically labelled with streptavidin-coated superparamagnetic nanoparticles. The benchmarking of the system was demonstrated to detect five major bovine mastitis-causing pathogens: , sp., , and . All selected probes proved to specifically detect their respective amplicon without significant cross reactivity. A calibration curve was performed for which demonstrates demonstrating a limit of detection below 30 fg/µL. Thus, a sensitive and specific multiplex detection assay was established, demonstrating its potential as a bioanalytical device for point-of-care applications.
准确诊断细菌感染对于有效治疗决策至关重要。由于大多数传染病的多病因性质,多重分析对于诊断至关重要。然而,基于核酸扩增的多重分析方法通常需要使用多个引物和/或多个反应室,这增加了分析成本和复杂性。本文通过对细菌 16S 核糖体 RNA 基因的分析,开发了一种基于通用引物对和一系列特定寡核苷酸探针的聚合酶链反应 (PCR) 检测方法。该检测系统包括在微制造的生物芯片上的磁电阻传感器阵列上进行 DNA 杂交,并与电子读取器耦合。固定探针检测单链生物素化扩增子,并通过不对称 PCR 获得。此外,它们用链霉亲和素包被的超顺磁纳米粒子进行了磁性标记。该系统的基准测试用于检测五种主要的奶牛乳腺炎病原体: , sp., , 和 。所有选定的探针均被证明可以特异性地检测各自的扩增子,而没有明显的交叉反应。对 进行了校准曲线分析,证明其检测限低于 30 fg/μL。因此,建立了一种敏感且特异性的多重检测分析方法,证明了其作为即时护理应用的生物分析设备的潜力。