Department of Food Science, College of Agriculture and Veterinary Medicine, United Arab Emirates University, Al Ain, 15551, United Arab Emirates; Department of Food Science and Agricultural Chemistry, McGill University, Ste Anne de Bellevue, Quebec H9X 3V9, Canada.
Department of Food Science, College of Agriculture and Veterinary Medicine, United Arab Emirates University, Al Ain, 15551, United Arab Emirates.
Int J Biol Macromol. 2024 Nov;279(Pt 1):134843. doi: 10.1016/j.ijbiomac.2024.134843. Epub 2024 Aug 17.
The current study investigated valorization of lignin nanoparticles (LNPs) and phenolic compounds loaded in chitosan (DLECNPs) extracted from date palm leaves into the soy protein isolate (SPI) biocomposite films. The mechanical, structural, barrier, physiochemical, thermal, optical, antioxidant, and antimicrobial properties of the formulated composite films were investigated. The findings showed that the incorporation of DLECNPs into the SPI films significantly improved the film's antioxidant properties by more than 3 times and showed antibacterial inhibition zone in the range of 10-15 mm against six pathogenic bacteria. Further, incorporating LNPs into SPI-DLECNPs films notably improved the mechanical properties from 4.32 MPa and 29.27 % tensile strength and elongation at break, respectively to 10.13 MPa and 54.94 %, the water vapor permeability from 7.38 g/Pa s m to 5.59 g/Pa s m, and the antibacterial inhibition zone from a range of 10.2 mm to 15.0-21.5 mm as well as making the films more heterogeneous and stronger than control SPI film. Moreover, LNPs changed the initial films' color from light yellow to dark red and reduced the films' transparency. The results indicated that LNPs reinforced SPI composite films showed significant improvements in several properties and thus can be used as a potential ingredient for formulation of biodegradable packaging films.
本研究调查了从棕榈树叶中提取的木质素纳米粒子(LNPs)和负载于壳聚糖(DLECNPs)的酚类化合物在大豆分离蛋白(SPI)生物复合膜中的增值作用。研究了所制备的复合膜的机械、结构、阻隔、物理化学、热学、光学、抗氧化和抗菌性能。研究结果表明,将 DLECNPs 掺入 SPI 薄膜中可显著提高薄膜的抗氧化性能,超过 3 倍,并对 6 种病原菌表现出 10-15mm 的抑菌抑制带。此外,将 LNPs 掺入 SPI-DLECNPs 薄膜中可显著提高机械性能,从 4.32MPa 和 29.27%的拉伸强度和断裂伸长率分别提高到 10.13MPa 和 54.94%,水蒸气透过率从 7.38g/Pa·s·m 降低至 5.59g/Pa·s·m,抑菌抑制带从 10.2mm 变为 15.0-21.5mm,使薄膜比对照 SPI 薄膜更不均匀且更强。此外,LNPs 改变了初始薄膜的颜色,由浅黄色变为深红色,并降低了薄膜的透明度。结果表明,LNPs 增强的 SPI 复合膜在多种性能方面均有显著提高,因此可作为可生物降解包装膜配方的潜在成分。