Kamarudin Siti Hasnah, Rayung Marwah, Abu Falah, Ahmad So'bah, Fadil Fatirah, Karim Azrena Abdul, Norizan Mohd Nurazzi, Sarifuddin Norshahida, Mat Desa Mohd Shaiful Zaidi, Mohd Basri Mohd Salahuddin, Samsudin Hayati, Abdullah Luqman Chuah
School of Industrial Technology, Faculty of Applied Sciences, Uitm Shah Alam, Shah Alam 40450, Malaysia.
Department of Chemistry, Faculty of Science and Technology, Universiti Putra Malaysia, Serdang 43400, Malaysia.
Polymers (Basel). 2022 Jan 2;14(1):174. doi: 10.3390/polym14010174.
The development of antimicrobial packaging has been growing rapidly due to an increase in awareness and demands for sustainable active packaging that could preserve the quality and prolong the shelf life of foods and products. The addition of highly efficient antibacterial nanoparticles, antifungals, and antioxidants to biodegradable and environmentally friendly green polymers has become a significant advancement trend for the packaging evolution. Impregnation of antimicrobial agents into the packaging film is essential for impeding or destroying the pathogenic microorganisms causing food illness and deterioration. Higher safety and quality as well as an extended shelf life of sustainable active packaging desired by the industry are further enhanced by applying the different types of antimicrobial packaging systems. Antimicrobial packaging not only can offer a wide range of advantages, but also preserves the environment through usage of renewable and biodegradable polymers instead of common synthetic polymers, thus reducing plastic pollution generated by humankind. This review intended to provide a summary of current trends and applications of antimicrobial, biodegradable films in the packaging industry as well as the innovation of nanotechnology to increase efficiency of novel, bio-based packaging systems.
由于人们对可持续活性包装的认识和需求不断增加,抗菌包装的发展迅速,这种包装可以保持食品和产品的质量并延长其保质期。将高效抗菌纳米颗粒、抗真菌剂和抗氧化剂添加到可生物降解且环保的绿色聚合物中,已成为包装发展的一个重要进步趋势。将抗菌剂浸渍到包装薄膜中对于阻止或破坏导致食品疾病和变质的致病微生物至关重要。通过应用不同类型的抗菌包装系统,行业所期望的可持续活性包装的更高安全性和质量以及更长保质期得到了进一步提高。抗菌包装不仅可以提供广泛的优势,还通过使用可再生和可生物降解的聚合物而非普通合成聚合物来保护环境,从而减少人类产生的塑料污染。本综述旨在总结抗菌可生物降解薄膜在包装行业的当前趋势和应用,以及纳米技术的创新,以提高新型生物基包装系统的效率。