Department of Chemistry, The Government Sadiq College Women University Bahawalpur, Bahawalpur 63100, Pakistan.
Department of Chemistry, The Government Sadiq College Women University Bahawalpur, Bahawalpur 63100, Pakistan.
Int J Biol Macromol. 2024 Apr;264(Pt 1):130208. doi: 10.1016/j.ijbiomac.2024.130208. Epub 2024 Feb 24.
Microbial growth and exposure to UV light is a persistent global concern resulting in food spoilage, therefore, smart packaging is crucial for the availability of safer and quality food. Present work describes fabrication of chitosan (CH) and gelatin (GL) based nanocomposite films by introducing green source, highly fluorescent Vachillia nilotica gum-derived carbon dots (VNG-CDs). The VNG-CDs and incorporated CH/GL nanocomposite films were characterized by UV-Visible, FTIR, XRD, SEM and TGA analysis. The FTIR and XRD data revealed that VNG-CDs, chitosan, gelatin, and glycerol are combined/interlinked to form homogeneous nanocomposite films. The inclusion of VNG-CDs to CS/GL-CDs nanocomposite film efficiently enhanced the thermal stability and improved mechanical properties. VNG-CDs added to films markedly blocked the ultraviolet light and their effectiveness improved as concentration of CDs increases, being >90 % in UVC (200-280 nm) region. The prepared CS/GL-CDs nanocomposite films manifested radical scavenging activity, reducing capability and also excellently inhibited growth of E. coli, K. pneumonia and S. aureus bacteria. The viability of CS/GL-CDs nanocomposite films examined using banana as a model fruit extending the storage time by two weeks. In conclusion, CH/GL films containing VNG-CDs can be developed into smart packaging materials with enhanced protection and antimicrobial properties.
微生物生长和暴露在紫外线下是一个持续存在的全球性问题,会导致食物变质,因此,智能包装对于提供更安全和高质量的食品至关重要。本工作通过引入绿色来源、高荧光性 Vachillia nilotica 树胶衍生碳点(VNG-CDs),描述了壳聚糖(CH)和明胶(GL)基纳米复合膜的制备。通过紫外-可见、FTIR、XRD、SEM 和 TGA 分析对 VNG-CDs 和掺入的 CH/GL 纳米复合膜进行了表征。FTIR 和 XRD 数据表明,VNG-CDs、壳聚糖、明胶和甘油结合/交联形成均匀的纳米复合膜。将 VNG-CDs 掺入 CS/GL-CDs 纳米复合膜中,有效地提高了热稳定性并改善了机械性能。添加到薄膜中的 VNG-CDs 显著阻挡了紫外线,并且随着 CD 浓度的增加,其有效性提高,在 UVC(200-280nm)区域>90%。制备的 CS/GL-CDs 纳米复合膜表现出自由基清除活性、还原能力,并且极好地抑制了 E. coli、K. pneumonia 和 S. aureus 细菌的生长。通过将香蕉作为模型水果来检查 CS/GL-CDs 纳米复合膜的活力,将储存时间延长了两周。总之,含有 VNG-CDs 的 CH/GL 薄膜可以开发成具有增强的保护和抗菌性能的智能包装材料。