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Development of a lab-on-a-chip device for diagnosis of plant pathogens

机译:开发用于诊断植物病原体的芯片实验室设备

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摘要

A lab-on-a-chip system for rapid nucleic acid-based analysis was developed that can be applied for diagnosis of selected Phytophthora species as a first example for use in plant pathology. All necessary polymerase chain reaction process (PCR) and hybridization steps can be performed consecutively within a single chip consisting of two components, an inflexible and a flexible one, with integrated microchannels and microchambers. Data from the microarray is collected from a simple electrical measurement that is based on elementary silver deposition by enzymatical catalyzation. Temperatures in the PCR and in the hybridization zone are managed by two independent Peltier elements. The chip will be integrated in a compact portable system with a pump and power supply for use on site. The specificity of the lab-on-a-chip system could be demonstrated for the tested five Phytophthora species. The two Pythium species gave signals below the threshold. The results of the electrical detection of the microarray correspond to the values obtained with the control method (optical grey scale analysis).
机译:开发了用于基于核酸的快速分析的芯片实验室系统,该系统可用于诊断所选疫霉菌种,作为在植物病理学中使用的第一个实例。所有必要的聚合酶链反应过程(PCR)和杂交步骤都可以在单个芯片中连续执行,该芯片由两个组件组成,一个是刚性组件,另一个是柔性组件,具有集成的微通道和微腔。来自微阵列的数据是从简单的电测量中收集的,该电测量基于通过酶催化的基本银沉积。 PCR和杂交区的温度由两个独立的Peltier元件控制。该芯片将集成在一个紧凑的便携式系统中,该系统带有泵和电源,可以在现场使用。芯片实验室系统的特异性可以证明被测疫霉属的五个物种。两种腐霉菌属发出的信号低于阈值。芯片的电检测结果与控制方法(光学灰度分析)获得的值相对应。

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