Dept. of Food Science and Technology, Seoul Women's Univ., Seoul, 139-774, Republic of Korea.
J Food Sci. 2013 Feb;78(2):E229-37. doi: 10.1111/1750-3841.12006. Epub 2013 Jan 11.
Insect-resistant films containing a microencapsulated insect-repelling agent were developed to protect food products from the Indian meal moth (Plodia interpunctella). Cinnamon oil (CO), an insect repelling agent, was encapsulated with gum arabic, whey protein isolate (WPI)/maltodextrin (MD), or poly(vinyl alcohol) (PVA). A low-density polyethylene (LDPE) film was coated with an ink or a polypropylene (PP) solution that incorporated the microcapsules. The encapsulation efficiency values obtained with gum arabic, WPI/MD, and PVA were 90.4%, 94.6%, and 80.7%, respectively. The films containing a microcapsule emulsion of PVA and CO or incorporating a microcapsule powder of WPI/MD and CO were the most effective (P < 0.05) at repelling moth larvae. The release rate of cinnamaldehyde, an active repellent of cinnamaldehyde, in the PP was 23 times lower when cinnamaldehyde was microencapsulated. Coating with the microcapsules did not alter the tensile properties of the films. The invasion of larvae into cookies was prevented by the insect-repellent films, demonstrating potential for the films in insect-resistant packaging for food products.
The insect-repelling effect of cinnamon oil incorporated into LDPE films was more effective with microencapsulation. The system developed in this research with LDPE film may also be extended to other food-packaging films where the same coating platform can be used. This platform is interchangeable and easy to use for the delivery of insect-repelling agents. The films can protect a wide variety of food products from invasion by the Indian meal moth.
为了保护食品免受印度粉斑螟(Plodia interpunctella)的侵害,开发了含有微囊化昆虫驱避剂的防虫膜。肉桂油(CO)作为一种昆虫驱避剂,被包封在阿拉伯胶、乳清蛋白分离物(WPI)/麦芽糊精(MD)或聚乙烯醇(PVA)中。低密度聚乙烯(LDPE)膜用含有微胶囊的油墨或聚丙烯(PP)溶液进行涂层。用阿拉伯胶、WPI/MD 和 PVA 获得的包封效率值分别为 90.4%、94.6%和 80.7%。含有 PVA 和 CO 微胶囊乳液的薄膜或含有 WPI/MD 和 CO 微胶囊粉末的薄膜对驱避粉斑螟幼虫最有效(P < 0.05)。肉桂醛作为肉桂醛的活性驱避剂,在 PP 中微胶囊化时的释放率降低了 23 倍。微胶囊化不会改变薄膜的拉伸性能。防虫膜阻止了幼虫侵入饼干,表明该膜在食品防虫包装方面具有潜力。
将肉桂油掺入 LDPE 薄膜中的驱虫效果通过微胶囊化更为有效。本研究中使用 LDPE 薄膜开发的系统也可以扩展到其他食品包装薄膜,相同的涂层平台可以在这些薄膜中使用。该平台可互换且易于使用,可用于输送驱虫剂。这些薄膜可以保护各种食品免受印度粉斑螟的侵害。