Zaghbib Imen, Abdullah Johar Amin Ahmed, Romero Alberto
Research Laboratory "Technological Innovation and Food Security-LR22 AGR01", Higher Institute of Food Industries of Tunisia (ESIAT), University of Carthage, Tunis 1002, Tunisia.
Department of Chemical Engineering, Faculty of Chemistry, Universidad de Sevilla, 41012 Seville, Spain.
Foods. 2024 Dec 27;14(1):53. doi: 10.3390/foods14010053.
Eco-friendly, bioactive and edible films from renewable resources are increasingly regarded as viable replacements for petroleum-based packaging. This study investigates the application of macroalgae powder (ULP) as an active additive in crab () chitosan-based films for natural food packaging. Films with ULP concentrations of 0.5, 1.5, and 2.5% were prepared using a solvent-casting method with glycerol as a plasticizer. Their physicochemical, mechanical, functional, and biological properties were evaluated comprehensively. Fourier-transform infrared spectroscopy revealed intermolecular interactions between ULP's polyphenolic compounds and the chitosan matrix, enhancing the films' structural integrities. ULP's incorporation reduced the moisture content, water solubility, lightness (L*), redness (a*), and whiteness index values while significantly ( < 0.05) increasing the yellowness (b*), total color difference (ΔE), yellowness index (YI), tensile strength (TS), and elongation at break (EB). The antioxidant activity improved in a concentration-dependent manner, as evidenced by the high free-radical scavenging capacity. Moreover, antimicrobial tests showed significant inhibitory effects against pathogenic strains. Biodegradability tests confirmed that the films decomposed entirely within 12 days under soil burial conditions, reinforcing their environmental compatibility. These results highlight the multifunctional potential of chitosan-ULP composite films, combining enhanced mechanical properties, bioactivity, and sustainability. By utilizing renewable and biodegradable materials, this work contributes to reducing waste and promoting resource efficiency, aligning with the principles of a circular economy and environmental preservation.
由可再生资源制成的环保、生物活性和可食用薄膜越来越被视为石油基包装的可行替代品。本研究调查了大型海藻粉(ULP)作为活性添加剂在用于天然食品包装的蟹()壳聚糖基薄膜中的应用。使用甘油作为增塑剂,通过溶液浇铸法制备了ULP浓度为0.5%、1.5%和2.5%的薄膜。对其物理化学、机械、功能和生物学性能进行了全面评估。傅里叶变换红外光谱揭示了ULP的多酚化合物与壳聚糖基质之间的分子间相互作用,增强了薄膜的结构完整性。加入ULP降低了水分含量、水溶性、亮度(L*)、红度(a*)和白度指数值,同时显著(<0.05)提高了黄度(b*)、总色差(ΔE)、黄度指数(YI)、拉伸强度(TS)和断裂伸长率(EB)。抗氧化活性呈浓度依赖性提高,自由基清除能力高证明了这一点。此外,抗菌测试显示对病原菌有显著抑制作用。生物降解性测试证实,在土壤掩埋条件下,薄膜在12天内完全分解,增强了它们的环境相容性。这些结果突出了壳聚糖-ULP复合薄膜的多功能潜力,结合了增强的机械性能、生物活性和可持续性。通过利用可再生和可生物降解材料,这项工作有助于减少浪费和提高资源效率,符合循环经济和环境保护原则。