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Use of Electrochemical DNA Biosensors for Rapid Molecular Identification of Uropathogens in Clinical Urine Specimens

机译:电化学DNA生物传感器在临床尿液标本中快速鉴定致病菌的分子应用

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摘要

We describe the first species-specific detection of bacterial pathogens in human clinical fluid samples using a microfabricated electrochemical sensor array. Each of the 16 sensors in the array consisted of three single-layer gold electrodes—working, reference, and auxiliary. Each of the working electrodes contained one representative from a library of capture probes, each specific for a clinically relevant bacterial urinary pathogen. The library included probes for Escherichia coli, Proteus mirabilis, Pseudomonas aeruginosa, Enterocococcus spp., and the Klebsiella-Enterobacter group. A bacterial 16S rRNA target derived from single-step bacterial lysis was hybridized both to the biotin-modified capture probe on the sensor surface and to a second, fluorescein-modified detector probe. Detection of the target-probe hybrids was achieved through binding of a horseradish peroxidase (HRP)-conjugated anti-fluorescein antibody to the detector probe. Amperometric measurement of the catalyzed HRP reaction was obtained at a fixed potential of −200 mV between the working and reference electrodes. Species-specific detection of as few as 2,600 uropathogenic bacteria in culture, inoculated urine, and clinical urine samples was achieved within 45 min from the beginning of sample processing. In a feasibility study of this amperometric detection system using blinded clinical urine specimens, the sensor array had 100% sensitivity for direct detection of gram-negative bacteria without nucleic acid purification or amplification. Identification was demonstrated for 98% of gram-negative bacteria for which species-specific probes were available. When combined with a microfluidics-based sample preparation module, the integrated system could serve as a point-of-care device for rapid diagnosis of urinary tract infections.
机译:我们描述了使用微细化的电化学传感器阵列在人类临床体液样本中细菌病原体的首次物种特异性检测。阵列中的16个传感器中的每一个都由三个单层金电极组成-工作电极,参考电极和辅助电极。每个工作电极都包含一个捕获探针库中的代表,每个捕获探针都特定于临床相关的细菌性泌尿病原体。该文库包括大肠杆菌,奇异变形杆菌,铜绿假单胞菌,肠球菌属和克雷伯菌-肠杆菌属的探针。将源自一步细菌裂解的细菌16S rRNA靶标与传感器表面的生物素修饰的捕获探针和第二个荧光素修饰的检测器探针杂交。通过结合辣根过氧化物酶(HRP)的抗荧光素抗体与检测器探针的结合,可以实现对目标探针杂交体的检测。在工作电极和参比电极之间的固定电势为-200 mV的情况下,获得了催化HRP反应的安培测量。从开始处理样品开始的45分钟内,即可在培养物中,接种的尿液和临床尿液样品中检测到多达2,600个尿路致病菌。在使用盲式临床尿液样本的安培检测系统的可行性研究中,传感器阵列具有100%的灵敏度,可直接检测革兰氏阴性细菌而无需核酸纯化或扩增。可以鉴定出98%的革兰氏阴性细菌,这些细菌可以使用种特异性探针。当与基于微流体的样品制备模块结合使用时,该集成系统可以用作快速诊断尿路感染的即时护理设备。

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