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生物传感器的发展现状及其在食源性病原体检测中的应用。

Current State of Development of Biosensors and Their Application in Foodborne Pathogen Detection.

机构信息

Molecular Food Microbiology Laboratory, Department of Food Science, Purdue University, West Lafayette, Indiana 47907, USA.

Department of Comparative Pathobiology, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

J Food Prot. 2021 Jul 1;84(7):1213-1227. doi: 10.4315/JFP-20-464.

Abstract

ABSTRACT

Foodborne disease outbreaks continue to be a major public health and food safety concern. Testing products promptly can protect consumers from foodborne diseases by ensuring the safety of food before retail distribution. Fast, sensitive, and accurate detection tools are in great demand. Therefore, various approaches have been explored recently to find a more effective way to incorporate antibodies, oligonucleotides, phages, and mammalian cells as signal transducers and analyte recognition probes on biosensor platforms. The ultimate goal is to achieve high specificity and low detection limits (1 to 100 bacterial cells or piconanogram concentrations of toxins). Advancements in mammalian cell-based and bacteriophage-based sensors have produced sensors that detect low levels of pathogens and differentiate live from dead cells. Combinations of biotechnology platforms have increased the practical utility and application of biosensors for detection of foodborne pathogens. However, further rigorous testing of biosensors with complex food matrices is needed to ensure the utility of these sensors for point-of-care needs and outbreak investigations.

摘要

摘要

食源性疾病暴发仍然是一个主要的公共卫生和食品安全问题。通过在零售前确保食品的安全性,及时对产品进行检测可以保护消费者免受食源性疾病的侵害。快速、敏感和准确的检测工具非常需要。因此,最近已经探索了各种方法,以寻找一种更有效的方法,将抗体、寡核苷酸、噬菌体和哺乳动物细胞作为信号转导子和分析物识别探针整合到生物传感器平台上。最终目标是实现高特异性和低检测限(1 到 100 个细菌细胞或皮克纳克浓度的毒素)。基于哺乳动物细胞和噬菌体的传感器的进步已经产生了可以检测低水平病原体并区分活细胞和死细胞的传感器。生物技术平台的组合增加了生物传感器用于检测食源性病原体的实际效用和应用。然而,需要对具有复杂食品基质的生物传感器进行进一步严格的测试,以确保这些传感器用于即时检测和暴发调查的实用性。

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