Resilient sustainable current and emerging technologies for foodborne pathogen detection.

Sustainable Food Technology Pub Date : 2024-09-05 eCollection Date: 2025-01-23 DOI:10.1039/d4fb00192c
Debarati Bhowmik, Jonathan James Stanely Rickard, Raz Jelinek, Pola Goldberg Oppenheimer
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Abstract

Foodborne pathogens such as Salmonella, Escherichia coli and Listeria pose significant risks to human health. The World Health Organization estimates that 2.2 million deaths per year are directly caused by foodborne and waterborne bacterial diseases worldwide. Accordingly, detecting pathogens in food is essential to ensure that our food is safe. This review explores the critical role of novel technologies in enhancing food safety practices whilst delving into adopting and integrating innovative, resilient and sustainable approaches in the food supply chain. Further, applying novel, emerging advanced analytical techniques such as Raman spectroscopy and nanotechnology based biosensors in food contamination detection is discussed. These advanced technologies show the promise of real-time monitoring, traceability, and predictive analytics to identify and mitigate potential hazards before they reach consumers. They can provide rapid and accurate results and ensure the integrity of food products. Furthermore, the herein-highlighted synergistic integration of these technologies offers a promising path toward a safer and more transparent food system, thereby addressing the challenges of today's globalised food market and laying the platform for developing multimodal technologies for affordable, sensitive and rapid pathogen detection along the different stages of the food chain, from "farm to fork".

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用于食源性病原体检测的具有弹性的可持续现有技术和新兴技术。
沙门氏菌、大肠杆菌和李斯特菌等食源性病原体对人类健康构成重大威胁。据世界卫生组织估计,全世界每年有 220 万人直接死于食源性和水源性细菌疾病。因此,检测食品中的病原体对于确保食品安全至关重要。本综述探讨了新技术在加强食品安全实践中的关键作用,同时深入研究了在食品供应链中采用和整合创新、弹性和可持续方法的问题。此外,还讨论了将拉曼光谱和基于纳米技术的生物传感器等新兴先进分析技术应用于食品污染检测的问题。这些先进技术展示了实时监测、可追溯性和预测分析的前景,可在潜在危害到达消费者手中之前将其识别出来并加以缓解。它们可以提供快速准确的结果,确保食品的完整性。此外,本文强调的这些技术的协同整合为实现更安全、更透明的食品系统提供了一条大有可为的道路,从而应对当今全球化食品市场的挑战,并为开发多模式技术奠定了平台,以便在从 "农场到餐桌 "的食物链的不同阶段进行经济、灵敏和快速的病原体检测。
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