Department of Food Science and Technology, Faculty of Agricultural Sciences, University of Guilan, Rasht, Iran.
Food Industry Research Co., Gorgan, Iran.
Crit Rev Food Sci Nutr. 2024;64(29):10789-10811. doi: 10.1080/10408398.2023.2228413. Epub 2023 Jul 4.
Antimicrobial or antioxidant active packaging (AP) is an emerging technology in which a bioactive antimicrobial or antioxidant agent is incorporated into the packaging material to protect the contained product during its shelf life from deterioration. The important issue in AP is making a balance between the deterioration rate of the food product and the controlled release of the bioactive agent. So, the AP fabrication should be designed in such a way that fulfills this goal. Modeling the controlled release is an effective way to avoid trial and error and time-consuming experimental runs and predict the release behavior of bioactive agents in different polymeric matrices and food/food simulants. To review the release of bioactive compounds from AP, in the first part of this review we present an introductory explanation regarding the release controlling approaches in AP. Then the release mechanisms are explained which are very important in defining the appropriate modeling approach and also the interpretation of the modeling results. Different release profiles that might be observed in different packaging systems are also introduced. Finally, different modeling approaches including empirical and mechanistic techniques are covered and the recent literature regarding the utilization of such approaches to help design new AP is thoroughly studied.
抗菌或抗氧化活性包装(AP)是一种新兴技术,即将生物活性抗菌或抗氧化剂掺入包装材料中,以在产品的保质期内防止所含产品变质。AP 的重要问题是在食品产品的变质速度和生物活性物质的控制释放之间取得平衡。因此,AP 的制造应该设计成能够实现这一目标的方式。对控制释放进行建模是一种避免反复试验和耗时的实验运行并预测生物活性物质在不同聚合物基质和食品/食品模拟物中的释放行为的有效方法。为了综述从 AP 中释放生物活性化合物,在这篇综述的第一部分,我们首先对 AP 中的释放控制方法进行了介绍性解释。然后解释了释放机制,这对于定义适当的建模方法以及对建模结果的解释非常重要。还介绍了在不同包装系统中可能观察到的不同释放曲线。最后,涵盖了不同的建模方法,包括经验和机械技术,并对利用这些方法帮助设计新型 AP 的最新文献进行了深入研究。