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具有抗菌和抗氧化性能的功能性生物聚合物薄膜在增强食品包装方面的最新进展

Recent Advances in Functional Biopolymer Films with Antimicrobial and Antioxidant Properties for Enhanced Food Packaging.

作者信息

Periyasamy Thirukumaran, Asrafali Shakila Parveen, Lee Jaewoong

机构信息

Department of Fiber System Engineering, Yeungnam University, Gyeongsan 38541, Republic of Korea.

出版信息

Polymers (Basel). 2025 May 5;17(9):1257. doi: 10.3390/polym17091257.

Abstract

Food packaging plays a crucial role in preserving freshness and prolonging shelf life worldwide. However, traditional packaging primarily acts as a passive barrier, providing limited protection against spoilage. Packaged food often deteriorates due to oxidation and microbial growth, reducing its quality over time. Moreover, the majority of commercial packaging relies on petroleum-derived polymers, which add to environmental pollution since they are not biodegradable. Growing concerns over sustainability have driven research into eco-friendly alternatives, particularly natural-based active packaging solutions. Among the various biopolymers, cellulose is the most abundant natural polysaccharide and has gained attention for its biodegradability, non-toxicity, and compatibility with biological systems. These qualities make it a strong candidate for developing sustainable packaging materials. However, pure cellulose films have limitations, as they lack antimicrobial and antioxidant properties, reducing their ability to actively preserve food. To tackle this issue, researchers have created cellulose-based active packaging films by integrating bioactive agents with antimicrobial and antioxidant properties. Recent innovations emphasize improving these films through the incorporation of natural extracts, polyphenols, nanoparticles, and microparticles. These enhancements strengthen their protective functions, leading to more effective food preservation. The films are generally classified into two types: (i) blend films, where soluble antimicrobial and antioxidant substances like plant extracts and polyphenols are incorporated into the cellulose solution, and (ii) composite films, which embed nano- or micro-sized bioactive fillers within the cellulose structure. The addition of these functional components enhances the antimicrobial and antioxidant efficiency of the films while also affecting properties like water resistance, vapor permeability, and mechanical strength. The continuous progress in cellulose-based active packaging highlights its potential as a viable alternative to conventional materials. These innovative films not only extend food shelf life but also contribute to environmental sustainability by reducing reliance on synthetic polymers. This review deals with the development of functional biopolymer films with antimicrobial and antioxidant properties towards sustainable food packaging.

摘要

食品包装在全球范围内对于保持新鲜度和延长保质期起着至关重要的作用。然而,传统包装主要起到被动屏障的作用,对防止食品变质的保护作用有限。包装食品常常因氧化和微生物生长而变质,随着时间推移质量下降。此外,大多数商业包装依赖石油衍生聚合物,由于它们不可生物降解,会加剧环境污染。对可持续性的日益关注推动了对环保替代品的研究,特别是基于天然的活性包装解决方案。在各种生物聚合物中,纤维素是最丰富的天然多糖,因其生物可降解性、无毒性以及与生物系统的兼容性而受到关注。这些特性使其成为开发可持续包装材料的有力候选者。然而,纯纤维素薄膜存在局限性,因为它们缺乏抗菌和抗氧化性能,降低了其主动保护食品的能力。为了解决这个问题,研究人员通过将具有抗菌和抗氧化性能的生物活性剂与纤维素结合,制备了基于纤维素的活性包装薄膜。最近的创新强调通过加入天然提取物、多酚、纳米颗粒和微粒来改进这些薄膜。这些改进增强了它们的保护功能,从而实现更有效的食品保鲜。这些薄膜通常分为两类:(i)共混薄膜,即将植物提取物和多酚等可溶性抗菌和抗氧化物质加入纤维素溶液中;(ii)复合薄膜,即将纳米或微米级生物活性填料嵌入纤维素结构中。这些功能成分的添加提高了薄膜的抗菌和抗氧化效率,同时也影响了诸如耐水性、透湿性和机械强度等性能。基于纤维素的活性包装的不断进步凸显了其作为传统材料可行替代品的潜力。这些创新薄膜不仅延长了食品保质期,还通过减少对合成聚合物的依赖,为环境可持续性做出了贡献。本综述探讨了具有抗菌和抗氧化性能的功能性生物聚合物薄膜在可持续食品包装方面的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ef3/12073401/ce995f9fff02/polymers-17-01257-g001.jpg

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