University of Sannio - Department of Science and Technology, Via Francesco De Sanctis snc, 82100 Benevento, Italy.
Department of Organic and Inorganic Chemistry, Institute of Chemical Research "Andrés M. del Río" (IQAR), Universidad de Alcalá, Campus Universitario, 28871 Alcalá de Henares, Madrid, Spain.
Int J Biol Macromol. 2024 Jun;272(Pt 1):132509. doi: 10.1016/j.ijbiomac.2024.132509. Epub 2024 Jun 5.
Functional packaging represents a new frontier for research on food packaging materials. In this context, adding antioxidant properties to packaging films is of interest. In this study, poly(butylene adipate-co-terephthalate) (PBAT) and olive leaf extract (OLE) have been melt-compounded to obtain novel biomaterials suitable for applications which would benefit from the antioxidant activity. The effect of cellulose nanocrystals (CNC) on the PBAT/OLE system was investigated, considering the interface interactions between PBAT/OLE and OLE/CNC. The biomaterials' physical and antioxidant properties were characterized. Morphological analysis corroborates the full miscibility between OLE and PBAT and that OLE favours CNC dispersion into the polymer matrix. Tensile tests show a stable plasticizer effect of OLE for a month in line with good interface PBAT/OLE interactions. Simulant food tests indicate a delay of OLE release from the 20 wt% OLE-based materials. Antioxidant activity tests prove the antioxidant effect of OLE depending on the released polyphenols, prolonged in the system at 20 wt% of OLE. Fluorescence spectroscopy demonstrates the nature of the non-covalent PBAT/OLE interphase interactions in π-π stacking bonds. The presence of CNC in the biomaterials leads to strong hydrogen bonding interactions between CNC and OLE, accelerating OLE released from the PBAT matrix.
功能包装代表了食品包装材料研究的一个新前沿。在这种情况下,向包装薄膜中添加抗氧化特性是很有意义的。在这项研究中,将聚己二酸/对苯二甲酸丁二酯(PBAT)和橄榄叶提取物(OLE)熔融共混,以获得适合于从抗氧化活性中受益的新型生物材料。考虑到 PBAT/OLE 和 OLE/CNC 之间的界面相互作用,研究了纤维素纳米晶体(CNC)对 PBAT/OLE 体系的影响。对生物材料的物理和抗氧化性能进行了表征。形态分析证实了 OLE 与 PBAT 的完全混溶性,并且 OLE 有利于 CNC 分散到聚合物基质中。拉伸试验表明,OLE 作为增塑剂的作用在一个月内稳定,与 PBAT/OLE 之间良好的界面相互作用一致。模拟食品测试表明,基于 20wt%OLE 的材料中 OLE 的释放延迟。抗氧化活性测试证明了 OLE 的抗氧化作用取决于释放的多酚,在含有 20wt%OLE 的体系中可延长。荧光光谱证明了在π-π堆积键中存在非共价 PBAT/OLE 相间相互作用的性质。CNC 存在于生物材料中,导致 CNC 和 OLE 之间形成强氢键相互作用,从而加速 OLE 从 PBAT 基质中释放。