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Detection of food-borne pathogens by nanoparticle technology coupled to a low cost Cell Reader

机译:纳米技术结合低成本细胞读取器检测食源性病原体

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The detection, identification and quantification of pathogenic microorganisms at low cost are of great interest to the agro-food industry. We have developed a simple, rapid, sensitive, and specific method for detection of food-borne pathogens based on use of nanoparticles alongside a low cost fluorescence cell reader for the bioassay. The nanoparticles are coupled with antibodies that allow specific recognition of the targeted Listeria in either a liquid or food matrix. The bioconjugated nanoparticles (FNP) contain thousands of dye molecules enabling significant amplification of the fluorescent signal emitted from each bacterium. The developed fluorescence Cell Reader is an LED-based reader coupled with suitable optics and a camera that acquires high resolution images. The dedicated algorithm allowed the counting of each individual nanoparticles-fluorescent bacterial cells thus enabling highly sensitive reading. The system allows, within 1 hour, the recovery and counting of 104 to 108 cfu/mL of Listeria in pure culture. However, neither the Cell Reader nor the algorithm can differentiate between the FNPs specifically-bound to the target and the residual unbound FNPs limiting sensitivity of the system. Since FNPs are too small to be washed in the bioassay, a dual tagging approach was implemented to allow online optical separation of the fluorescent background caused by free FNPs.
机译:低成本检测,鉴定和定量病原微生物对农业食品行业非常重要。我们已经开发出一种简单,快速,灵敏且特异的方法,可基于纳米颗粒以及低成本的荧光细胞读取器进行生物测定,从而检测食源性病原体。纳米颗粒与抗体结合,可以特异性识别液体或食物基质中的目标李斯特菌。生物共轭纳米颗粒(FNP)包含成千上万个染料分子,可显着放大每种细菌发出的荧光信号。研发的荧光细胞读取器是基于LED的读取器,结合了合适的光学元件和可获取高分辨率图像的照相机。专用算法允许对每个纳米粒子荧光细菌细胞进行计数,从而实现高度灵敏的读数。该系统可在1小时内回收和计数纯培养中李斯特菌的104至108 cfu / mL。但是,Cell Reader和算法都无法区分与目标特异性结合的FNP和限制系统灵敏度的残留未结合FNP。由于FNP太小,无法在生物测定法中清洗,因此采用了双重标记方法,可以在线光学分离由游离FNP引起的荧光背景。

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