Department of Food Technology and Nutrition, Lovely Professional University, Phagwara 144411, India.
Department of Microbiology, Lovely Professional University, Phagwara 144411, India.
Int J Biol Macromol. 2023 Dec 31;253(Pt 2):126725. doi: 10.1016/j.ijbiomac.2023.126725. Epub 2023 Sep 9.
Polysaccharide-based packaging has been directed toward the development of technologies for the generation of packaging with biodegradable materials that can serve as substitutes for conventional packaging. Polysaccharides are reliable sources of edible packaging materials with excellent renewability, biodegradability, and bio-compatibility as well as antioxidant and antimicrobial activities. Apart from these properties, packaging film developed from a single polysaccharide has various disadvantages due to undesirable properties. Thus, to overcome these problems, researchers focused on ternary blend-based bio-packaging instead of the primary and binary complex to improve their characteristics and properties. The review emphasizes the extraction of polysaccharides and their combination with other polymers to provide desirable characteristics and physico-mechanical properties of the biodegradable film which will upgrade the green packaging technology in the future generation This review also explores the advancement of ternary blend-based biodegradable film and their application in foods with different requirements and the future aspects for developing advanced biodegradable film. Moreover, the review concludes that cellulose, modified starch, and another plant-based polysaccharide film mostly provides good gas barrier property and better tensile strength, which can be used as a safeguard of perishable and semi-perishable foods which brings them closer to replacing commercial synthetic packaging.
多糖基包装材料被用于开发具有生物降解性的包装技术,这些材料可以替代传统包装。多糖是可靠的食用包装材料来源,具有良好的可再生性、生物降解性和生物相容性,同时还具有抗氧化和抗菌活性。除了这些特性外,由单一多糖制成的包装薄膜由于不理想的特性而存在各种缺点。因此,为了克服这些问题,研究人员专注于三元共混物基生物包装,而不是初级和二元复合物,以改善其特性和性能。本综述强调了多糖的提取及其与其他聚合物的结合,以提供可降解薄膜所需的特性和物理机械性能,这将提升未来一代的绿色包装技术。本综述还探讨了基于三元共混物的可生物降解薄膜的进展及其在具有不同要求的食品中的应用,以及开发先进的可生物降解薄膜的未来方面。此外,本综述得出结论,纤维素、改性淀粉和其他植物基多糖薄膜大多提供了良好的气体阻隔性能和更好的拉伸强度,可用于保护易腐和半易腐食品,使它们更接近于替代商业合成包装。