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Lab-on-a-chip modules for detection of highly pathogenic bacteria: from sample preparation to detection

机译:用于检测高致病菌的芯片实验室模块:从样品制备到检测

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Lab-on-a-chip systems are innovative tools for the detection and identification of microbial pathogens in human and veterinary medicine. The major advantages are small sample volume and a compact design. Several fluidic modules have been developed to transform analytical procedures into miniaturized scale including sampling, sample preparation, target enrichment, and detection procedures. We present evaluation data for single modules that will be integrated in a chip system for the detection of pathogens. A microfluidic chip for purification of nucleic acids was established for cell lysis using magnetic beads. This assay was evaluated with spiked environmental aerosol and swab samples. Bacillus thuringiensis was used as simulant for Bacillus anthracis, which is closely related but non-pathogenic for humans. Stationary PCR and a flow-through PCR chip module were investigated for specific detection of six highly pathogenic bacteria. The conventional PCR assays could be transferred into miniaturized scale using the same temperature/time profile. We could demonstrate that the microfluidic chip modules are suitable for the respective purposes and are promising tools for the detection of bacterial pathogens. Future developments will focus on the integration of these separate modules to an entire lab-on-a-chip system.
机译:芯片实验室系统是用于检测和识别人类和兽医学中微生物病原体的创新工具。主要优点是样品量小和设计紧凑。已经开发了几种流体模块,以将分析程序转变为小型化的规模,包括采样,样品制备,目标富集和检测程序。我们将提供单个模块的评估数据,这些模块将集成在芯片系统中以检测病原体。建立了用于核酸纯化的微流控芯片,用于使用磁珠进行细胞裂解。用加标的环境气溶胶和拭子样品评估该测定。苏云金芽孢杆菌被用作炭疽芽孢杆菌的模拟物,这与人类密切相关但无致病性。研究了固定式PCR和流通式PCR芯片模块对六种高致病菌的特异性检测。可以使用相同的温度/时间曲线将常规PCR测定法转化为微型样品。我们可以证明微流体芯片模块适合于各自的目的,并且是检测细菌病原体的有前途的工具。未来的发展将集中在将这些单独的模块集成到整个芯片实验室系统中。

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