Parhi Shivangi, Pal Sreyasi, Tripathy Puja, Das Amrita, Mukherjee Ashmita, Pattanayak Subhamoy, Kumar Deepak, Ghosh Paulomi
CSIR-Indian Institute of Chemical Biology, 4, Raja S.C. Mullick Road, 700032 Kolkata, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad - 201002, India.
CSIR-Indian Institute of Chemical Biology, 4, Raja S.C. Mullick Road, 700032 Kolkata, India.
Int J Biol Macromol. 2025 Jan;285:138266. doi: 10.1016/j.ijbiomac.2024.138266. Epub 2024 Dec 3.
In this study, antioxidant nanofiber-based food packaging material composed of polylactic acid (PLA) and mangiferin (MG) was produced to reduce food spoilage. To this end, MG was extracted from Mangifera indica and chemically characterized. In vitro assays for scavenging several radical ions showed excellent antioxidant properties of MG. Thereafter, MG was blended with PLA to form nanofibers (PLA-MG) using electrospinning. The Field Emission-Scanning Electron Microscopy (FE-SEM) images of the prepared nanofibers displayed defect-free homogeneous morphology with an average fiber diameter of 176.89 ± 61.97 nm. Fabricated nanofibers were physico-chemically characterized. From chromatography, mangiferin content in the PLA-MG fiber was found to be 40.55 ± 3.7 μg/mg of fiber. Contact angle measurements of the fabricated nanofibers showed the hydrophobic nature of PLA-MG nanofibers. PLA-MG nanofibers demonstrated a significantly higher antioxidant activity compared to PLA nanofibers (****p < 0.0001), as evidenced by their superior performance in DPPH, ABTS, and FRAP assays. Specifically, PLA-MG nanofibers exhibited 3676 ± 3.46 mg/100 g vitamin C equivalents in antioxidant activity (VCEAC) and 1866 ± 2.12 VCEAC in ABTS and DPPH radical scavenging assays respectively. Further, apples wrapped with PLA-MG nanofibers showed that the browning of the fruit decreased when compared with controls. The MTT assay and live-dead assay indicated that the fabricated nanofibers were cytocompatible with L929 fibroblasts. The results showed that the fabricated PLA-MG nanofibers can be an effective non-toxic food packaging material to increase the shelf-life of the food. Finally, PLA-MG nanofiber-coated food container production was demonstrated to be commercialized for the effective transportation of food.
在本研究中,制备了由聚乳酸(PLA)和芒果苷(MG)组成的基于抗氧化纳米纤维的食品包装材料,以减少食品变质。为此,从芒果中提取了MG并进行了化学表征。体外清除几种自由基离子的试验表明MG具有优异的抗氧化性能。此后,将MG与PLA混合,通过静电纺丝形成纳米纤维(PLA-MG)。制备的纳米纤维的场发射扫描电子显微镜(FE-SEM)图像显示出无缺陷的均匀形态,平均纤维直径为176.89±61.97nm。对制备的纳米纤维进行了物理化学表征。通过色谱分析,发现PLA-MG纤维中芒果苷含量为40.55±3.7μg/mg纤维。对制备的纳米纤维进行接触角测量,结果表明PLA-MG纳米纤维具有疏水性。与PLA纳米纤维相比,PLA-MG纳米纤维表现出显著更高的抗氧化活性(****p<0.0001),这在DPPH、ABTS和FRAP试验中得到了证实。具体而言,PLA-MG纳米纤维在抗氧化活性(VCEAC)中表现为3676±3.46mg/100g维生素C当量,在ABTS和DPPH自由基清除试验中分别为1866±2.12VCEAC。此外,用PLA-MG纳米纤维包裹的苹果表明,与对照组相比,果实的褐变减少。MTT试验和活死试验表明,制备的纳米纤维与L929成纤维细胞具有细胞相容性。结果表明,制备的PLA-MG纳米纤维可以成为一种有效的无毒食品包装材料来延长食品的保质期。最后,展示了PLA-MG纳米纤维涂层食品容器的生产,以实现食品的有效运输并实现商业化。