Department of Food Chemistry and Technology, Teagasc Food Research Centre, Cork, Ireland.
Department of Engineering, INSTM RU, University of Rome "Niccolò Cusano", Roma, Italy.
Crit Rev Food Sci Nutr. 2022;62(5):1383-1416. doi: 10.1080/10408398.2020.1843133. Epub 2020 Nov 5.
Chitosan is mainly derived from seafood by-products and the thereof chitosan nanoparticles (CNPs) are known as nontoxic, biocompatible, biodegradable and functionalized nanostructures. CNPs, as green fillers, showed an appropriate potential in reinforcement of various biodegradable composites for food packaging and biomedical applications. After evaluation of different fabrication approaches and characterization techniques of CNPs, the changes in physical, mechanical, thermal, structural, morphological, and antimicrobial attributes of nanobiocomposites as a result of CNPs addition are discussed. The influence of bioactive loaded-CNPs and hybrid CNPs with metal nanoparticles, graphene, and montmorillonite in nanocomposites is also presented. Finally, the safety aspects of CNPs-loaded structures are highlighted to evaluate their implementation in food packaging and biomedical systems. It can be concluded that regardless of a few drawbacks, CNPs are promising nanomaterials to improve various operational, structural and antimicrobial properties of biocomposites for various applications in food packaging, delivery systems and biomedical uses.
壳聚糖主要来源于海产品副产物,其壳聚糖纳米粒子(CNPs)被认为是无毒、生物相容、可生物降解和功能化的纳米结构。作为绿色填充剂,CNPs 在增强各种用于食品包装和生物医学应用的可生物降解复合材料方面显示出了适当的潜力。在评估了不同的制备方法和 CNPs 的表征技术后,讨论了由于添加 CNPs 而导致纳米生物复合材料的物理、机械、热学、结构、形态和抗菌性能的变化。还介绍了负载生物活性物质的-CNPs 和与金属纳米粒子、石墨烯和蒙脱石混合的-CNPs 在纳米复合材料中的影响。最后,强调了负载-CNPs 结构的安全性,以评估其在食品包装和生物医学系统中的应用。可以得出结论,尽管存在一些缺点,但 CNPs 是一种很有前途的纳米材料,可以改善生物复合材料的各种操作、结构和抗菌性能,从而在食品包装、输送系统和生物医学用途等各种应用中得到广泛应用。