Soiklom Siriwan, Siri-Anusornsak Wipada, Petchpoung Krittaya, Soiklom Sumpan, Maneeboon Thanapoom
Scientific Equipment and Research Division, Kasetsart University Research and Development Institute (KURDI), Kasetsart University, Bangkok 10900, Thailand.
Department of Industrial Chemistry, Faculty of Applied Science, King Mongkut's University of Technology North Bangkok, Bangkok 10800, Thailand.
Foods. 2025 Feb 26;14(5):804. doi: 10.3390/foods14050804.
The growing interest in environmentally friendly food packaging has led to the development of bio-edible alternatives. This study developed novel, edible, active films and coatings to enhance the shelf life of fresh products. Crude bioactive algal extract (CBAE) was obtained from the ethanol extraction of sp. and incorporated into chitosan-based films and coatings at varying concentrations. The CBAE was rich in phenolic compounds and had antioxidant activity and potential antibacterial properties. The films were prepared using a solvent-casting method and characterized for their biochemical and physical properties. The incorporation of CBAE enhanced the antioxidant activity and improved the tensile strength of the films by 80%. Additionally, film transparency and water vapor permeability were reduced by 13% and 50%, respectively, compared to the control. The developed CBAE coating solution exhibited biocompatibility with human colon adenocarcinoma (HT-29) and mouse subcutaneous connective tissue (L929) fibroblast cells. A shelf-life evaluation using a coating-dipping method on okra showed that the CBAE-coated samples maintained better weight retention and firmness than the uncoated samples over 5 days of storage at ambient temperature. Based on these findings, the CBAE-based edible films and coatings could serve as sustainable alternatives for extending the shelf life of fresh products.
人们对环保食品包装的兴趣日益浓厚,这推动了生物可食用替代品的发展。本研究开发了新型、可食用的活性薄膜和涂层,以延长新鲜产品的保质期。粗生物活性藻类提取物(CBAE)是通过对 sp. 进行乙醇提取获得的,并以不同浓度掺入壳聚糖基薄膜和涂层中。CBAE富含酚类化合物,具有抗氧化活性和潜在的抗菌性能。薄膜采用溶液浇铸法制备,并对其生化和物理性能进行了表征。掺入CBAE提高了抗氧化活性,使薄膜的拉伸强度提高了80%。此外,与对照相比,薄膜透明度和水蒸气透过率分别降低了13%和50%。所开发的CBAE涂层溶液与人类结肠腺癌(HT-29)和小鼠皮下结缔组织(L929)成纤维细胞具有生物相容性。使用浸涂法对秋葵进行保质期评估表明,在室温下储存5天期间,涂有CBAE的样品比未涂覆的样品保持了更好的重量保留率和硬度。基于这些发现,基于CBAE的可食用薄膜和涂层可作为延长新鲜产品保质期的可持续替代品。