Food and Nutrition Program, Environment & Life Sciences Research Center, Kuwait Inst. for Scientific Research, Safat, Kuwait.
The School of Packaging, Michigan State Univ., East Lansing, Mich., U.S.A.
J Food Sci. 2018 May;83(5):1299-1310. doi: 10.1111/1750-3841.14121. Epub 2018 Apr 16.
Plasticized polylactide (PLA) composite films with multifunctional properties were created by loading bimetallic silver-copper (Ag-Cu) nanoparticles (NPs) and cinnamon essential oil (CEO) into polymer matrix via compression molding technique. Rheological, structural, thermal, barrier, and antimicrobial properties of the produced films, and its utilization in the packaging of chicken meat were investigated. PLA/PEG/Ag-Cu/CEO composites showed a very complex rheological system where both plasticizing and antiplasticizing effects were evident. Thermal properties of plasticized PLA film with polyethylene glycol (PEG) enhanced considerably with the reinforcement of NPs whereas loading of CEO decreased glass transition, melting, and crystallization temperature. The barrier properties of the composite films were reduced with the increase of CEO loading (P < 0.05). Their optical properties were also modified by the addition of both CEO and Ag-Cu NPs. The changes in the molecular organization of PLA composite films were visualized by FTIR spectra. Rough and porous surfaces of the films were evident by scanning electron microscopy. The effectiveness of composite films was tested against Salmonella Typhimurium, Campylobacter jejuni and Listeria monocytogenes inoculated in chicken samples, and it was found that the films loaded with Ag-Cu NPs and 50% CEO showed maximum antibacterial action during 21 days at the refrigerated condition. The produced PLA/Ag-Cu/CEO composite films can be applied to active food packaging.
The nanoparticles and essential oil loaded PLA composite films are capable of exhibiting antimicrobial effects against Gram (+) and (-) bacteria, and extend the shelf-life of chicken meat. The bionanocomposite films showed the potential to be manufactured commercially because of the thermal stability of the active components during the hot-press compression molding process. The developed bionanocomposites could have practical importance and open a new direction for the active food packaging to control the spoilage and the pathogenic bacteria associated with the fresh chicken meat.
通过压缩成型技术,将双金属银-铜(Ag-Cu)纳米粒子(NPs)和肉桂精油(CEO)载入聚合物基质,制得具有多功能特性的增塑聚乳酸(PLA)复合薄膜。研究了所制备薄膜的流变、结构、热学、阻隔和抗菌性能,及其在鸡肉包装中的应用。PLA/PEG/Ag-Cu/CEO 复合材料表现出非常复杂的流变体系,其中明显存在塑化和抗塑化效应。PLA 薄膜的热性能随着聚乙二醇(PEG)的增强而显著提高,而 NPs 的加入降低了玻璃化转变、熔融和结晶温度。CEO 负载量的增加降低了复合薄膜的阻隔性能(P<0.05)。添加 CEO 和 Ag-Cu NPs 还改变了复合薄膜的光学性能。FTIR 光谱显示了 PLA 复合薄膜的分子组织变化。扫描电子显微镜显示,薄膜表面粗糙多孔。将复合薄膜对接种于鸡肉样品中的肠炎沙门氏菌、空肠弯曲菌和单核细胞增生李斯特菌的有效性进行了测试,结果发现,在冷藏条件下,负载 Ag-Cu NPs 和 50%CEO 的薄膜在 21 天内表现出最大的抗菌作用。所制备的 PLA/Ag-Cu/CEO 复合薄膜可应用于活性食品包装。
负载纳米粒子和精油的 PLA 复合薄膜能够对革兰氏阳性菌和革兰氏阴性菌表现出抗菌作用,并延长鸡肉的保质期。由于在热压压缩成型过程中活性成分的热稳定性,该生物纳米复合材料具有商业制造的潜力。所开发的生物纳米复合材料具有实际意义,并为控制与新鲜鸡肉相关的变质和病原菌提供了一个新的方向,可用于活性食品包装。