Application of biosensors against food-borne pathogens

Lochan Singh, Vijay Singh Sharanagat
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Abstract

Purpose Nature and occurrence of food-borne pathogens in raw and processed food products evolved greatly in the past few years due to new modes of transmission and resistance build-up against sundry micro-/macro-environmental conditions. Assurance of food health and safety thus gained immense importance, for which bio-sensing technology proved very promising in the detection and quantification of food-borne pathogens. Considering the importance, different studies have been performed, and different biosensors have been developed. This study aims to summarize the different biosensors used for the deduction of food-borne pathogens. Design/methodology/approach The present review highlights different biosensors developed apropos to food matrices, factors governing their selection, their potential and applicability. The paper discusses some related key challenges and constraints and also focuses on the needs and future research prospects in this field. Findings The shift in consumers’ and industries’ perceptions directed the further approach to achieve portable, user and environmental friendly biosensing techniques. Despite of these developments, it was still observed that the comparison among the different biosensors and their categories proved tedious on a single platform; since the food matrices tested, pathogen detected or diagnosed, time of detection, etc., varied greatly and very few products have been commercially launched. Conclusively, a challenge lies in front of food scientists and researchers to maintain pace and develop techniques for efficiently catering to the needs of the food industry. Research limitations/implications Biosensors deduction limit varied with the food matrix, type of organism, material of biosensors’ surface, etc. The food matrix itself consists of complex substances, and various types of food are available in nature. Considering the diversity of food there is a need to develop a universal biosensor that can be used for all the food matrices for a pathogen. Further research is needed to develop a pathogen-specific biosensor that can be used for all the food products that may have accuracy to eliminate the traditional method of deduction. Originality/value The present paper summarized and categorized the different types of biosensors developed for food-borne pathogens. Graphical abstract
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应用生物传感器检测食源性病原体
目的 在过去几年中,由于新的传播方式和对各种微观/宏观环境条件的抗药性增强,生鲜食品和加工食品中食源性病原体的性质和发生率发生了很大变化。因此,确保食品健康和安全变得极为重要,而生物传感技术在检测和量化食源性病原体方面被证明是非常有前途的。考虑到这一重要性,人们开展了不同的研究,开发了不同的生物传感器。本研究旨在总结用于推断食源性病原体的不同生物传感器。 设计/方法/途径 本综述重点介绍了针对食品基质开发的不同生物传感器、选择这些传感器的因素、其潜力和适用性。本文讨论了一些相关的主要挑战和制约因素,还重点关注了该领域的需求和未来研究前景。 研究结果 消费者和行业观念的转变引导人们进一步采用便携式、用户友好型和环保型生物传感技术。尽管取得了这些进展,但人们仍然发现,在单一平台上对不同生物传感器及其类别进行比较是非常乏味的;因为测试的食品基质、检测或诊断的病原体、检测时间等差异很大,而且只有极少数产品已投入商业应用。总之,食品科学家和研究人员面临着一项挑战,即如何与时俱进,开发有效满足食品工业需求的技术。 研究局限性/影响 生物传感器的推导局限性因食品基质、生物类型、生物传感器表面材料等因素而异。食品基质本身由复杂的物质组成,自然界中存在各种类型的食品。考虑到食品的多样性,有必要开发一种通用的生物传感器,用于检测所有食品基质中的病原体。需要进一步研究开发一种可用于所有食品的病原体特异性生物传感器,这种传感器可能具有消除传统推断方法的准确性。 原创性/价值 本文对针对食源性病原体开发的不同类型的生物传感器进行了总结和分类。 图表摘要
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