Angelopoulou Paraskevi, Giaouris Efstathios, Gardikis Konstantinos
IPSP Nanomedicine, Medical & Pharmacy Department, School of Health Sciences, National and Kapodistrian University of Athens, 15772 Athens, Greece.
Laboratory of Food Microbiology and Hygiene, Department of Food Science and Nutrition, School of the Environment, University of the Aegean, 81400 Myrina, Greece.
Nanomaterials (Basel). 2022 Apr 3;12(7):1196. doi: 10.3390/nano12071196.
Cosmetic and food products containing water are prone to contamination during the production, storage, and transit process, leading to product spoilage and degraded organoleptic characteristics. The efficient preservation of food and cosmetics is one of the most important issues the industry is facing today. The use of nanotechnology in food and cosmetics for preservation purposes offers the possibility to boost the activity of antimicrobial agents and/or promote their safer distribution into the end product upon incorporation into packaging or film constructions. In this review, current preservation strategies are discussed and the most recent studies in nanostructures used for preservation purposes are categorized and analyzed in a way that hopefully provides the most promising strategies for both the improvement of product safety and shelf-life extension. Packaging materials are also included since the container plays a major role in the preservation of such products. It is conclusively revealed that most of the applications refer to the nanocomposites as part of the packaging, mainly due to the various possibilities that nanoscience offers to this field. Apart from that, the route of exposure being either skin or the gastrointestinal system involves safety concerns, and since migration of nanoparticles (NPs) from their container can be measured, concerns can be minimized. Conclusion: Nanomaterial science has already made a significant contribution to food and cosmetics preservation, and rapid developments in the last years reinforce the belief that in the future much of the preservation strategies to be pursued by the two industries will be based on NPs and their nanocomposites.
含水的化妆品和食品在生产、储存及运输过程中容易受到污染,从而导致产品变质和感官特性下降。食品和化妆品的有效保存是该行业目前面临的最重要问题之一。在食品和化妆品中使用纳米技术进行保存,有可能提高抗菌剂的活性,和/或在将其加入包装或薄膜结构后,促进其更安全地分布到最终产品中。在这篇综述中,我们讨论了当前的保存策略,并对用于保存目的的纳米结构的最新研究进行了分类和分析,希望能为提高产品安全性和延长保质期提供最有前景的策略。包装材料也被纳入讨论范围,因为容器在这类产品的保存中起着重要作用。最终结果表明,大多数应用都将纳米复合材料作为包装的一部分,这主要是因为纳米科学为该领域提供了各种可能性。除此之外,通过皮肤或胃肠道系统的接触途径涉及安全问题,并且由于可以测量纳米颗粒从其容器中的迁移情况,因此可以将这些担忧降至最低。结论:纳米材料科学已经对食品和化妆品的保存做出了重大贡献,并且近年来的快速发展强化了一种信念,即未来这两个行业所采用的许多保存策略将基于纳米颗粒及其纳米复合材料。