López de Dicastillo Carol, Garrido Luan, Velásquez Eliezer, Rojas Adrián, Gavara Rafael
Packaging Innovation Center (LABEN-Chile), University of Santiago of Chile (USACH), Obispo Umaña 050, Santiago 9170201, Chile.
Center for the Development of Nanoscience and Nanotechnology (CEDENNA), University of Santiago of Chile (USACH), Obispo Umaña 050, Santiago 9170201, Chile.
Polymers (Basel). 2021 Apr 15;13(8):1288. doi: 10.3390/polym13081288.
The design of multilayer systems is an innovative strategy to improve physical properties of biodegradable polymers and introduce functionality to the materials through the incorporation of an active compound into some of these layers. In this work, a trilayer film based on a sandwich of electrospun polycaprolactone (PCL) fibers (PCLé) containing quercetin (Q) and cellulose nanocrystals (CNC) between extruded polylactic acid (PLA) films was designed with the purpose of improving thermal and barrier properties and affording antioxidant activity to packaged foods. PCLé was successfully electrospun onto 70 µm-thick extruded PLA film followed by the assembling of a third 25 µm-thick commercial PLA film through hot pressing. Optical, morphological, thermal, and barrier properties were evaluated in order to study the effect of PCL layer and the addition of Q and CNC. Bilayer systems obtained after the electrospinning process of PCL onto PLA film were also evaluated. The release of quercetin from bi- and trilayer films to food simulants was also analyzed. Results evidenced that thermal treatment during thermo-compression melted PCL polymer and resulted in trilayer systems with barrier properties similar to single PLA film. Quercetin release from bi- and trilayer films followed a similar profile, but achieved highest value through the addition of CNC.
多层体系的设计是一种创新策略,旨在改善可生物降解聚合物的物理性能,并通过将活性化合物掺入其中一些层来赋予材料功能性。在这项工作中,设计了一种基于三层膜的体系,该三层膜由静电纺丝聚己内酯(PCL)纤维(PCLé)夹在挤出的聚乳酸(PLA)薄膜之间构成,PCLé中含有槲皮素(Q)和纤维素纳米晶体(CNC),目的是改善热性能和阻隔性能,并为包装食品提供抗氧化活性。PCLé成功地静电纺丝到70μm厚的挤出PLA薄膜上,然后通过热压组装第三层25μm厚的商用PLA薄膜。对光学、形态、热和阻隔性能进行了评估,以研究PCL层以及添加Q和CNC的效果。还对PCL静电纺丝到PLA薄膜上后得到的双层体系进行了评估。还分析了槲皮素从双层和三层膜向食品模拟物中的释放情况。结果表明,热压过程中的热处理使PCL聚合物熔化,得到的三层体系具有与单层PLA薄膜相似的阻隔性能。槲皮素从双层和三层膜中的释放情况相似,但通过添加CNC达到了最高值。