MEtRICs, Departamento de Ciências e Tecnologia da Biomassa, NOVA School of Science and Technology|FCT NOVA, Universidade NOVA de Lisboa, Campus de Caparica, 2829-516 Caparica, Portugal.
INL, International Iberian Nanotechnology Laboratory, Av. Mestre José Veiga s/n, 4715-330 Braga, Portugal.
Sensors (Basel). 2021 Mar 18;21(6):2148. doi: 10.3390/s21062148.
Intelligent food packaging is emerging as a novel technology, capable of monitoring the quality and safety of food during its shelf-life time. This technology makes use of indicators and sensors that are applied in the packaging and that detect changes in physiological variations of the foodstuffs (due to microbial and chemical degradation). These indicators usually provide information, e.g., on the degree of freshness of the product packed, through a color change, which is easily identified, either by the food distributor and the consumer. However, most of the indicators that are currently used are non-renewable and non-biodegradable synthetic materials. Because there is an imperative need to improve food packaging sustainability, choice of sensors should also reflect this requirement. Therefore, this work aims to revise the latest information on bio-based sensors, based on compounds obtained from natural extracts, that can, in association with biopolymers, act as intelligent or smart food packaging. Its application into several perishable foods is summarized. It is clear that bioactive extracts, e.g., anthocyanins, obtained from a variety of sources, including by-products of the food industry, present a substantial potential to act as bio-sensors. Yet, there are still some limitations that need to be surpassed before this technology reaches a mature commercial stage.
智能食品包装作为一种新兴技术,能够在食品保质期内监测其质量和安全。这项技术利用包装内的指示剂和传感器来检测食品生理变化(由于微生物和化学降解)。这些指示剂通常通过颜色变化来提供信息,例如所包装产品的新鲜度程度,这种颜色变化很容易被食品分销商和消费者识别。然而,目前使用的大多数指示剂都是不可再生和不可生物降解的合成材料。由于迫切需要提高食品包装的可持续性,因此传感器的选择也应反映这一要求。因此,这项工作旨在根据从天然提取物中获得的化合物,修订基于生物的传感器的最新信息,这些化合物可以与生物聚合物一起作为智能食品包装。本文还总结了它们在几种易腐食品中的应用。显然,从各种来源(包括食品工业的副产品)获得的生物活性提取物,如花色苷,具有作为生物传感器的巨大潜力。然而,在这项技术达到成熟的商业阶段之前,仍需要克服一些限制。