Research Center for Food Technology and Processing, National Research and Innovation Agency (BRIN), Yogyakarta, 55861, Indonesia.
Department of Chemistry, Universitas Negeri Malang, Malang, 65145, Indonesia.
Appl Biochem Biotechnol. 2024 Aug;196(8):5127-5143. doi: 10.1007/s12010-023-04794-2. Epub 2023 Dec 19.
Bacterial cellulose is a natural polymer produced by fermentation of coconut water using Acetobacter xylinum bacteria. This study aimed to synthesize a novel composite of bacterial cellulose impregnated with plant extracts that had an antibacterial activity that have the potential to be used as a food packaging material to maintain food quality. Pure bacterial cellulose (pure BC) was impregnated using Ageratum conyzoides L. leaf extract (AC-BC) and Chromolaena odorata L. leaf extract (CO-BC), which contain secondary metabolites with potential as antibacterial. The study began with the synthesis of pure BC, AC-BC, and CO-BC composites then characterized by SEM-EDX and FTIR, continued with antibacterial activity tests against S. aureus, S. typhimurium, E. coli, and their biodegradability tests. The results of SEM and FTIR characterization showed the success of the impregnation process for antibacterial compounds. The results of the antibacterial activity of AC-BC disc diffusion against S. typhimurium and E. coli showed good antibacterial activity of 9.82 mm and 8.41 mm, respectively. The similar result showed with the antibacterial activity of CO-BC disc diffusion against S. typhimurium and E. coli that showed good activity of 9.73 mm and 6.82 mm, respectively. On the other hand, the biodegradability test showed that the impregnation of bacterial cellulose slowed down the degradation process in the soil. This study confirmed the potential application of bacterial cellulose-plant extracts as an active and biodegradable food packaging.
细菌纤维素是一种天然聚合物,由醋酸菌发酵椰子水制成。本研究旨在合成一种新型的细菌纤维素复合材料,该复合材料浸渍有具有抗菌活性的植物提取物,有望用作食品包装材料以保持食品质量。纯细菌纤维素(纯 BC)用 Ageratum conyzoides L. 叶提取物(AC-BC)和 Chromolaena odorata L. 叶提取物(CO-BC)浸渍,这两种提取物含有具有抗菌潜力的次生代谢物。该研究首先合成纯 BC、AC-BC 和 CO-BC 复合材料,然后通过 SEM-EDX 和 FTIR 进行表征,接着对金黄色葡萄球菌、鼠伤寒沙门氏菌、大肠杆菌进行抗菌活性测试及其生物降解性测试。SEM 和 FTIR 表征结果表明,抗菌化合物的浸渍过程取得了成功。AC-BC 圆盘扩散对鼠伤寒沙门氏菌和大肠杆菌的抗菌活性结果表明,其对金黄色葡萄球菌和大肠杆菌的抗菌活性分别为 9.82mm 和 8.41mm。CO-BC 圆盘扩散对鼠伤寒沙门氏菌和大肠杆菌的抗菌活性结果也表明,其对金黄色葡萄球菌和大肠杆菌的抗菌活性分别为 9.73mm 和 6.82mm。另一方面,生物降解性测试表明,细菌纤维素的浸渍减缓了土壤中的降解过程。本研究证实了细菌纤维素-植物提取物作为一种具有活性和可生物降解的食品包装材料的潜在应用。