Department of Food Technology, Hindustan Institute of Technology and Science, Chennai, Tamil Nadu, India.
Department of Food Science and Technology, School of Agricultural Sciences, Malla Reddy University, Hyderabad, India.
J Food Sci. 2024 Jul;89(7):3950-3972. doi: 10.1111/1750-3841.17149. Epub 2024 Jun 7.
Nanosensors have become an indispensable tool in the food sector due to their specificity and sensitivity. The biosensor consists of a transducer coupled with a biorecognition component to transform biological signal into digital signal. Nanobiosensors have been widely used for sensing toxic chemicals such as pesticide residues and pathogenic microbes owing to their accurate sensitivity in an affordable manner, which gives more hope to the food industry on their applications. It employs nanocarriers to bind to impurities and pollutants, as well as food-borne microorganisms and their resulting toxins, such as mycotoxins. This modern technology ensures food safety in food processing industries. Nowadays, nanoparticle-immobilized sensors act as spot indicators to improve smart food packing technology. Certain types of nanobiosensors are deployed to monitor food product manufacture till packaging and to check the freshness of the product till spoilage identification. They are mainly using enzyme catalysts, which are highly sensitive to extreme environmental conditions. As a result, there is a greater evaluation requirement in nanosensor technology to adopt any temperature, pH, or other difficult parameters. Its stability, while in contact with food substrates, is another criterion that needs to be regularized. Within this framework, this review delves into the latest developments in nanobiosensors and the obstacles encountered during their use across different food industries.
由于纳米传感器具有特异性和敏感性,因此已成为食品领域不可或缺的工具。生物传感器由与生物识别组件耦合的换能器组成,用于将生物信号转换为数字信号。纳米生物传感器由于能够以经济实惠的方式实现准确的灵敏度,因此已被广泛用于检测有毒化学物质,如农药残留和致病微生物,这为食品工业的应用带来了更多的希望。它采用纳米载体来结合杂质和污染物,以及食源性微生物及其产生的毒素,如霉菌毒素。这项现代技术确保了食品加工行业的食品安全。如今,纳米粒子固定传感器作为现场指示剂,提高了智能食品包装技术。某些类型的纳米生物传感器被用于监测食品生产直至包装,并检查产品的新鲜度直至变质识别。它们主要使用酶催化剂,这些催化剂对极端环境条件非常敏感。因此,纳米传感器技术需要采用任何温度、pH 值或其他困难参数进行更大的评估。在与食品基质接触时的稳定性是另一个需要规范化的标准。在这个框架内,本综述深入探讨了纳米生物传感器的最新发展以及在不同食品工业中使用时遇到的障碍。