家禽加工厂致病菌快速免疫纳米传感器的研制

Saleh Alamer , Raja Chinnappan , Mohammed Zourob
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引用次数: 11

摘要

食源性疾病是一个主要的公共卫生问题,每年造成数十亿美元的损失。例如,在欧洲、美国、南美和亚洲报告了9380万例肠胃炎病例。根据不同的科学原理,使用不同的方法来检测与食源性疾病有关的致病菌,传统的方法包括依赖培养的方法、显微镜、PCR、血清学和生化方法仍在使用,但大多数方法存在分析时间长、成本高、灵敏度有限和实验室基础等缺点。因此,迫切需要开发具有高灵敏度的现场应用快速筛选方法。在本研究中,我们开发并评价了比色免疫传感器作为一种新型的快速检测平台,用于检测鼠伤寒沙门菌、肠炎沙门菌、金黄色葡萄球菌和空肠弯曲杆菌等食源性病原体。由棉签和纳米颗粒组成的传感平台。棉花交换用一般或特定的识别受体功能化,用于从表面收集和预浓缩细菌。然后将棉签浸入显影液中以显示特定细菌的存在。显影溶液是由不同颜色的纳米球组成的鸡尾酒,这些纳米球结合了不同的识别受体,用于不同的细菌分析,从而产生不同的颜色。该纳米传感器被用于测试不同表面上的细菌,这些表面模拟了家禽加工单元,如玻片、不锈钢和鸡肉。
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Development of Rapid Immuno-based Nanosensors for the Detection of Pathogenic Bacteria in Poultry Processing Plants

Foodborne diseases is a major public health concern and costs billions of dollars losses every year. For example, 93.8 million cases of gastroenteritis reported in Europe, United States, South America and Asia. Different methods depending on various scientific principles are used for detection of pathogenic bacteria relating foodborne diseases, conventional methods including culture-depending methods, microscopic, PCR, serological and biochemical methods are still used but majority of this methods suffers from a number of disadvantages includes long time-analysis, high cost, limited sensitivity and lab-based. Therefore, there is an urgent need for development of rapid screening assays for field applications with high sensitivity. In this study, we developed colorimetric immuno-sensor was developed and evaluated as a novel rapid detection nanosensing platform for the detection of foodborne pathogens such as Salmonella Typhimurium, Salmonella Enteritidis, Staphylococcus Aureus and Campylobacter Jejuni. The sensing platform composed of cotton swab and nanoparticles. Cotton swaps were functionalized with general or specific recognition receptors for collecting and pre-concentration of bacteria from the surfaces. Then the cotton swab was dipped in a developing solution to indicate the presence of specific bacteria. The developing solution has a cocktail of different coloured nanospheres conjugated with different recognition receptors for the various bacteria analytes was used to generate the different colours. The nanosensor was used for testing the bacteria on different surfaces mimicking the poultry processing units such as glass slides, stainless steel and chicken meat.

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