Embrapa Agroindústria Tropical, Fortaleza, Ceará, Brazil.
Laboratório Nacional de Nanotecnologia para o Agronegócio (LNNA), Embrapa Instrumentação, São Carlos, São Paulo, Brazil.
Biotechnol J. 2019 Dec;14(12):e1900068. doi: 10.1002/biot.201900068. Epub 2019 Sep 17.
Active food packaging systems promote better food quality and/or stability, such as by releasing antimicrobial agents into food. Advantages of adding antimicrobials to the packaging material instead of into the bulk food include controlled diffusion, reduced antimicrobial contents, and improved cost effectiveness. Nanostructured antimicrobials are especially effective due to their high specific surface area. The present review is focused on recent advances and findings on the main nanostructured antimicrobial packaging systems for food packaging purposes. Several kinds of nanostructures, including both inorganic particles and organic structures, have been proven effective antimicrobials by different mechanisms of action and with different application scopes. Moreover, there are systems containing nanocarriers to protect antimicrobials and deliver them in a controlled fashion. On the other hand, scientific data about migration of nanostructures onto food and their toxicity are still limited, requiring special attention from researchers and regulation sectors.
活性食品包装系统可促进更好的食品质量和/或稳定性,例如通过向食品中释放抗菌剂。将抗菌剂添加到包装材料中而不是添加到散装食品中的优点包括控制扩散、减少抗菌剂含量和提高成本效益。由于具有高比表面积,纳米结构的抗菌剂特别有效。本综述重点介绍了用于食品包装目的的主要纳米结构抗菌包装系统的最新进展和发现。已经证明,包括无机颗粒和有机结构在内的几种纳米结构通过不同的作用机制和不同的应用范围具有有效的抗菌作用。此外,还有包含纳米载体的系统,可保护抗菌剂并以受控的方式将其递送至食品中。另一方面,关于纳米结构迁移到食品上及其毒性的科学数据仍然有限,需要研究人员和监管部门的特别关注。