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首页> 外文期刊>International Journal of Food Microbiology >Labchip-based diagnosis system for on-site application: Sensitive and easy-to-implement detection of single recoverable Cronobacter in infant formula without post-enrichment treatment
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Labchip-based diagnosis system for on-site application: Sensitive and easy-to-implement detection of single recoverable Cronobacter in infant formula without post-enrichment treatment

机译:基于LabChip的现场应用诊断系统:在没有富集治疗的婴儿配方中敏感且易于实现的单次可收回克罗尼杆菌检测

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Microfluidic labchips have achieved much advancement in the molecular diagnosis of foodborne pathogens. Whereas difficulties in the flow control during the transportation of liquid fluids can occur and should be overcome. Manipulations of reaction temperature and the complex procedures from sample pre-treatment to analysis in a single chip device are major obstacles for the on-site application. Thus, the efficient temperature control of samples without any flow of reaction fluids in microfluidic channels of plastic chip and the simplest protocol omitting post-enrichment processing steps may overcome these limitations represented by the stability and the complexity, respectively. This study aims to develop a novel type of labchip and thermocycler specialized for the gene amplification in microfluidic channels and to evaluate the delectability by sensing the minimum recoverable level of Cronobacter in powdered infant formula (PIF). We developed a thermocycling device accelerating reactions through dual heating-blocks optimized to control temperatures of samples in microfluidic-channels by direct contact with labchip sequentially and repetitively. The structural design of microfluidic channels was to eliminate interference factors associated with the optical detection of fluorescent signals (without distortion due to air bubbles in the reaction chamber). To improve the applicability, a portable device and simplified operation to allow direct loading of samples in the chip without post-enrichment procedures were also adopted. Detection performance was evaluated by a sensitivity/specificity tests using 50 isolates of Cronobacter. Cross-reactivity tests for non-Cronobacter organisms and gDNA [human, raw materials of PIF (cow, soybean)] showed that there was no interference-factor causing false-positive results. In terms of the applied research conducted by using PIF, the enrichment of samples without broth medium (distilled water) displayed outstanding performance and 12 h of incubation facilitated detecting target at concentration as low as 1 CFU/300 g PIF (as initial contamination level) without post-enrichment treatment. Validation of the operation conditions using 30 commercial PIF products was also consistent. The present study presents a novel approach of microfluidic technology with perspective to not only the performance and the practicability [easy-to-implement protocol, portable materials, cost-effectiveness (the use of a miniaturized plastic chip requires a minimum level of materials)] for on-site diagnosis.
机译:微流体Labchips在食源性病原体的分子诊断中取得了很大的进步。然而,在运输液体流体期间的流量控制中的困难可能会发生,并且应该克服。反应温度的操纵和来自样品预处理的复杂步骤在单片机装置中分析分析是现场应用的主要障碍。因此,在塑料芯片的微流体通道中没有任何反应流体的样品的有效温度控制和省略了富集后处理步骤的最简单的协议可以分别克服这些限制和复杂性的这些限制。本研究旨在开发一种新型的LabChip和热循环液,专门用于微流体通道中的基因扩增,并通过感测粉末婴儿配方(PIF)中的最小可恢复水平来评估美味性。我们开发了一种通过双加热块加速反应的热循环装置,通过顺序和重复地通过与LabChip直接接触来控制微流体通道中样品的温度。微流体通道的结构设计是消除与荧光信号的光学检测相关的干扰因子(反应室中的气泡由于气泡而没有变形)。为了提高适用性,还采用便携式设备和简化操作,以允许在没有富集过程中的芯片中的样本直接加载样品。通过使用50个分离杆菌的Cronobacter的敏感性/特异性测试评估检测性能。非克罗尼杆菌生物和GDNA的交叉反应性试验[人,PIF(母牛,大豆)的原料]表明,没有引起假阳性结果的干扰因素。就采用PIF进行的应用研究而言,无需肉汤介质(蒸馏水)的样品的富集显示出卓越的性能和12小时,促进培养型浓度低至1 CFU / 300g PIF(作为初始污染水平)没有富集后治疗。使用30个商用PIF产品的操作条件验证也一致。本研究提出了一种新的微流体技术方法,不仅具有视角,不仅是性能和实用性[易于实施的协议,便携式材料,成本效益(使用小型化塑料芯片需要最小的材料)]用于现场诊断。

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