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Micro-Nano-Bio Diagnostic System for Food Pathogen Detection Revolutionizes Food Safety Management Protects Consumers Health

机译:用于食品病原体检测的微纳米生物诊断系统彻底改变了食品安全管理,保护消费者健康

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The development of integrated, fast and affordable platforms for pathogen detection is an emerging area where a multidisciplinary approach is necessary for designing microsystems employing miniaturized devices; these new technologies promise a significant advancement of the current state of analytical testing leading to improved healthcare. In this work, the development of a lab-on-chip microsystem platform for the genetic analysis of Salmonella in milk samples is presented. The heart of the platform is an acoustic detection biochip, integrated with a microfluidic module. This detection platform is combined with a micro-processor, which, alongside with magnetic beads technology and a DNA micro-amplification module, are responsible for performing sample pre-treatment, bacteria lysis, nucleic acid purification and amplification. Automated, multiscale manipulation of fluids in complex microchannel networks is combined with novel sensing principles developed by some of the partners. This system is expected to have a significant impact in food-pathogen detection by providing for the first time an integrated detection test for Salmonella screening in a very short time. Finally, thanks to the low cost and compact technologies involved, the proposed set-up is expected to provide a competitive analytical platform for direct application in field settings.
机译:用于病原体检测的集成,快速和实惠的平台的开发是一个新兴区域,其中多学科方法是设计采用小型化器件的微系统的必要地区;这些新技术承诺对当前分析测试状态的重大进步,导致改善医疗保健。在这项工作中,提出了一种关于牛奶样品中沙门氏菌遗传分析的片上微系统平台的开发。平台的心脏是声学检测生物芯片,与微流体模块集成。该检测平台与微处理器组合,与磁珠技术和DNA微放大模块一起,负责进行样品预处理,细菌裂解,核酸纯化和扩增。自动化,复杂微通道网络中的流体的多尺度操纵与一些合作伙伴开发的新型传感原则相结合。该系统预计通过在很短的时间内提供对Salmonella筛选的第一次集成检测试验,对食品病原体检测产生重大影响。最后,由于所涉及的低成本和紧凑技术,预计建议的设置将提供竞争性分析平台,用于在现场设置中直接应用。

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