School of Food Safety, College of Nutrition, Taipei Medical University, 250 Wu-Hsing Street, Taipei 11031, Taiwan; Ph.D. Program in Drug Discovery and Development Industry, College of Pharmacy, Taipei Medical University, 250 Wu-Hsing Street, Taipei 11031, Taiwan; TMU Research Center for Digestive Medicine, Taipei Medical University, 250 Wu-Hsing Street, Taipei 11031, Taiwan; Research Center of Biomedical Device, Taipei Medical University, 250 Wu-Hsing Street, Taipei 11031, Taiwan.
Institute of Food Science and Technology, National Taiwan University, 1 Roosevelt Rd., Sec. 4, Taipei 10617, Taiwan.
Int J Biol Macromol. 2024 Nov;279(Pt 3):135114. doi: 10.1016/j.ijbiomac.2024.135114. Epub 2024 Sep 2.
Owing to a lack of specific biological functions, bacterial cellulose (BC) has been restricted in its application to the field of active packaging. In this study, we developed antimicrobial packaging materials using foaming BC (FBC) with chitosan (CS) and applied it to the preservation of chilled sea bass. The material property analysis demonstrated that 1.5 % CS/FBC maintained a high water content of 91 %, a swelling ratio of 75.6 %, great stress of 1.61 MPa, and great strain of 1.87 %. CS incorporation into FBC also decreased its crystallinity from 73.39 % to 69.3 %. Meanwhile, 1.5 % CS/FBC also provided great antimicrobial ability against Escherichia coli and Staphylococcus aureus by approximately 2 log colony-forming units/mL inhibition utilizing contact-killing. Results of the preservation assessment indicated that 1.5 % CS/FBC efficiently inhibited Shewanella putrefaciens growth, reduced total volatile basic nitrogen release, and slightly inhibited lipid oxidation. Based on the above results, CS/FBC is an ecofriendly biomaterial produced from a microorganism that possesses high absorbency and strong antibacterial properties, making it suitable for development as antibacterial active packaging.
由于缺乏特定的生物学功能,细菌纤维素 (BC) 在活性包装领域的应用受到限制。本研究采用壳聚糖 (CS) 对发泡细菌纤维素 (FBC) 进行了抗菌包装材料的开发,并将其应用于冷藏鲈鱼的保鲜。材料性能分析表明,1.5%CS/FBC 保持了 91%的高含水量、75.6%的高溶胀比、1.61MPa 的高应力和 1.87%的高应变。CS 的加入也使 FBC 的结晶度从 73.39%降低到 69.3%。同时,1.5%CS/FBC 通过接触杀菌对大肠杆菌和金黄色葡萄球菌的抑制率约为 2 个对数菌落形成单位/mL,具有很强的抗菌能力。保鲜评估结果表明,1.5%CS/FBC 能有效抑制腐败希瓦氏菌的生长,减少总挥发性碱性氮的释放,对脂质氧化略有抑制。基于上述结果,CS/FBC 是一种由微生物产生的环保型生物材料,具有高吸水性和强抗菌性能,适合开发成抗菌活性包装材料。