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Advances to Bordetella pertussis diagnosis: Adapting a real time PCR to a lab-on-chip platform

机译:百日咳博德特氏菌诊断的新进展:将实时PCR应用于芯片实验室平台

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Whooping cough is caused by the bacteria Bordetella pertussis and, despite massive global vaccination campaigns, still poses a threat to infants, to elders well as to immunocompromised patients. In this work, we used a silicon lab-on-chip and a portable, lightweight thermocycler to develop a molecular-based detection reaction for two B. pertussis genes (IS48I and ptxS1). Each bacterial target is detected concomitantly to the detection of the human gene 18S. Thus, these duplex reactions have an internal control, which evaluates the performance of the whole system (chip temperature cycling and biological reaction). We found no significant difference between the results obtained in the portable equipment and in the standard benchtop instrument, the ABI7500. The results presented here are a first step towards a point of care test for B. pertussis diagnosis, adapted to primary health centers with low infrastructure as well as small hospitals and private health clinics.
机译:百日咳是由百日咳博德特氏菌引起的,尽管开展了大规模的全球疫苗接种运动,但仍对婴儿,老年人以及免疫功能低下的患者构成威胁。在这项工作中,我们使用了一个芯片实验室硅片和一个轻便的便携式热循环仪,为两个百日咳博德特氏菌基因(IS48I和ptxS1)开发了基于分子的检测反应。每个细菌靶标与人类基因18S的检测同时进行。因此,这些双重反应具有内部控制,该内部控制评估整个系统的性能(芯片温度循环和生物反应)。我们发现,在便携式设备和标准台式仪器ABI7500中获得的结果之间没有显着差异。此处介绍的结果是迈向百日咳博德特氏菌诊断的护理点测试的第一步,适用于基础设施薄弱的初级保健中心以及小型医院和私人保健诊所。

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