Mesgari Mohammad, Aalami Amir Hossein, Sathyapalan Thozhukat, Sahebkar Amirhossein
Department of Food Science and Technology, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran.
Department of Biology, Mashhad Branch, Islamic Azad University, Mashhad, Iran.
Bioinorg Chem Appl. 2022 Mar 5;2022:7557825. doi: 10.1155/2022/7557825. eCollection 2022.
. Food nanopackaging helps maintain food quality against physical, chemical, and storage instability factors. Copper oxide nanoparticles (CuONPs) can improve biopolymers' mechanical features and barrier properties. This will lead to antimicrobial and antioxidant activities in food packaging to extend the shelf life. . Edible coatings based on carbohydrate biopolymers have improved the quality of packaging. Several studies have addressed the role of carbohydrate biopolymers and incorporated nanoparticles to enhance food packets' quality as active nanopackaging. Combined with nanoparticles, these biopolymers create film coatings with an excellent barrier property against transmissions of gases such as O and CO. . This review describes the CuO-biopolymer composites, including chitosan, agar, cellulose, carboxymethylcellulose, cellulose nanowhiskers, carrageenan, alginate, starch, and polylactic acid, as food packaging films. Here, we reviewed different fabrication techniques of CuO biocomposites and the impact of CuONPs on the physical, mechanical, barrier, thermal stability, antioxidant, and antimicrobial properties of carbohydrate-based films.
食品纳米包装有助于保持食品质量,抵御物理、化学和储存不稳定因素。氧化铜纳米颗粒(CuONPs)可以改善生物聚合物的机械性能和阻隔性能。这将使食品包装具有抗菌和抗氧化活性,从而延长保质期。基于碳水化合物生物聚合物的可食用涂层提高了包装质量。多项研究探讨了碳水化合物生物聚合物的作用,并引入纳米颗粒以提高食品包装作为活性纳米包装的质量。这些生物聚合物与纳米颗粒相结合,形成了对氧气和二氧化碳等气体传输具有优异阻隔性能的薄膜涂层。本综述描述了氧化铜-生物聚合物复合材料,包括壳聚糖、琼脂、纤维素、羧甲基纤维素、纤维素纳米晶须、卡拉胶、海藻酸盐、淀粉和聚乳酸,作为食品包装薄膜。在此,我们综述了氧化铜生物复合材料的不同制备技术以及氧化铜纳米颗粒对碳水化合物基薄膜的物理、机械、阻隔、热稳定性、抗氧化和抗菌性能的影响。