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Evaluation of the NanoCHIP® Gastrointestinal Panel (GIP) Test for Simultaneous Detection of Parasitic and Bacterial Enteric Pathogens in Fecal Specimens

机译:用于粪便标本中寄生虫和细菌肠道病原体同时检测的NanoCHIP®胃肠道面板(GIP)测试的评估

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摘要

Infectious gastroenteritis is a global health problem associated with high morbidity and mortality rates. Rapid and accurate diagnosis is crucial to allow appropriate and timely treatment. Current laboratory stool testing has a long turnaround time (TAT) and demands highly qualified personnel and multiple techniques. The need for high throughput and the number of possible enteric pathogens compels the implementation of a molecular approach which uses multiplex technology, without compromising performance requirements. In this work we evaluated the feasibility of the NanoCHIP® Gastrointestinal Panel (GIP) (Savyon Diagnostics, Ashdod, IL), a molecular microarray-based screening test, to be used in the routine workflow of our laboratory, a big outpatient microbiology laboratory. The NanoCHIP® GIP test provides simultaneous detection of nine major enteric bacteria and parasites: Campylobacter spp., Salmonella spp., Shigella spp., Giardia sp., Cryptosporidium spp., Entamoeba histolytica, Entamoeba dispar, Dientamoeba fragilis, and Blastocystis spp. The required high-throughput was obtained by the NanoCHIP® detection system together with the MagNA Pure 96 DNA purification system (Roche Diagnostics Ltd., Switzerland). This combined system has demonstrated a higher sensitivity and detection yield compared to the conventional methods in both, retrospective and prospective samples. The identification of multiple parasites and bacteria in a single test also enabled increased efficiency of detecting mixed infections, as well as reduced hands-on time and work load. In conclusion, the combination of these two automated systems is a proper response to the laboratory needs in terms of improving laboratory workflow, turn-around-time, minimizing human errors and can be efficiently integrated in the routine work of the laboratory.
机译:感染性肠胃炎是与高发病率和高死亡率相关的全球性健康问题。快速准确的诊断对于进行适当及时的治疗至关重要。当前的实验室粪便测试具有很长的周转时间(TAT),并且需要高素质的人员和多种技术。对高通量的需求和可能的肠道病原体的数量,迫使在不影响性能要求的情况下实施使用多元技术的分子方法。在这项工作中,我们评估了NanoCHIP ®胃肠道面板(GIP)(Savyon Diagnostics,阿什杜德,伊利诺伊州)的可行性,这是一种基于分子微阵列的筛选测试,可用于我们实验室的常规工作流程,一家大型的门诊微生物学实验室。 NanoCHIP ® GIP测试可同时检测九种主要的肠细菌和寄生虫:弯曲杆菌属,沙门氏菌,志贺氏菌,贾第虫,隐孢子虫,溶组织内变形杆菌,分散肠内变形杆菌,Dientamoeba脆弱类和囊藻属通过NanoCHIP ®检测系统以及MagNA Pure 96 DNA纯化系统(瑞士罗氏诊断有限公司)可获得所需的高通量。与常规方法相比,该组合系统在回顾性和前瞻性样品中均显示出更高的灵敏度和检测效率。在一次测试中鉴定出多种寄生虫和细菌还可以提高检测混合感染的效率,并减少动手时间和工作量。总之,在改善实验室工作流程,周转时间,最大程度减少人为错误方面,这两种自动化系统的结合是对实验室需求的正确响应,并且可以有效地集成到实验室的日常工作中。

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