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Functionalized Inorganic Nanoparticles for the Detection of Food and Waterborne Bacterial Pathogens

机译:官能化无机纳米粒子用于检测食品和水性细菌病原体

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Infections acquired from ingesting contaminated food and water poses an adverse effect on public health and safety, thus affecting nations’ economy. Technical approaches developed over years have contributed adequately to microbial detection in food and water, yet, unveiling spaces for more improvement on early and rapid detection of pathogens. This review highlights different strategy assessing bio-functionalized inorganic nanoparticles towards the detection of pathogens in food and water samples. Conjugates of several bio-receptors and inorganic nanoparticles showed rapid, real-time, repeatability, and appreciable limit of detection in targeted pathogens. A patent referenced in this study established the biocompatibility of bio-functionalized inorganic nanoparticles mechanism. Unique attributes exhibited by bio-functionalized inorganic nanoparticles showed potential and improvement of the existing bio-sensing pathogen detection methods. Each of the identified strategies described showed a promising pathway accommodating the development of simple, and even the fabrication of low-cost materials for easy detection of bacterial pathogens in food and water products.
机译:从摄取污染的食物和水中获得的感染对公共卫生和安全产生不利影响,从而影响国家经济。多年来发展的技术方法在食品和水中充分促进了微生物检测,但揭幕空间,以便于早期和快速检测病原体的快速检测。该综述突出了评估生物官能化无机纳米粒子朝向食物和水样中病原体的不同策略。几种生物受体和无机纳米颗粒的缀合物显示出靶向病原体中的快速,实时,可重复性和可明显的检测限。本研究中引用的专利建立了生物官能化无机纳米粒子机制的生物相容性。生物官能化无机纳米粒子表现出的独特属性显示出现有的生物传感病原体检测方法的潜力和改善。所描述的每种识别的策略都显示出一种有前途的途径,其容纳简单的发展,甚至是易于制造的低成本材料,以便于食品和水产品中易于检测细菌病原体。

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