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Gelatin/chitosan based films loaded with nanocellulose from soybean straw and activated with “Pitanga” (Eugenia uniflora L.) leaf hydroethanolic extract in W/O/W emulsion

生物高聚物 DPPH 阿布茨 壳聚糖 明胶 乳状液 纳米纤维素 化学 材料科学 抗氧化剂 溶解度 化学工程 纤维素 复合材料 聚合物 有机化学 工程类
作者
Larissa Tessaro,Rodrigo Vinícius Lourenço,Milena Martelli‐Tosi,Paulo José do Amaral Sobral
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:186: 328-340 被引量:33
标识
DOI:10.1016/j.ijbiomac.2021.07.039
摘要

Abstract Mechanical properties of biopolymer films can be a limitation for their application as packaging. Soybean straw crystalline nanocelluloses (NC) can act as reinforcement load to improve these material properties, and W/O/W double emulsion (DE) as encapsulating bioactive agents can contribute to produce active packaging. DE droplets were loaded with pitanga leaf (Eugenia uniflora L.) hydroethanolic extract. The mechanical, physicochemical, and barrier properties, and the microstructure of gelatin and/or chitosan films incorporated with NC or NC/DE were determined by classical methods. Film antioxidant activities were determined by ABTS and DPPH methods. The incorporation of NC/DE in gelatin and/or chitosan films (NC/DE films) changed the morphology of these films, which presented more heterogeneous air-side surfaces and cross-sections. They presented rougher topographies, notably greater resistance and stiffness, higher barrier properties to UV/Vis light and higher antioxidant activity than the NC films. Moisture content, solubility in water and water vapor permeability decreased due to the presence of DE. Overall, the NC/DE films improved all properties, when compared to the properties of NC films or those of films with only DE, from a previously published study. In spite of not having antimicrobial activity against the studied bacteria, NC/DE films did display a great antioxidant activity.
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