Department of Food Science, University of Massachusetts , Chenoweth Lab, 102 Holdsworth Way, Amherst, Massachusetts 01003, United States.
J Agric Food Chem. 2013 Dec 18;61(50):12397-404. doi: 10.1021/jf4041832. Epub 2013 Dec 6.
Previously, a siderophore-mimetic metal chelating active packaging film was developed by grafting poly(hydroxamic acid) (PHA) from the surface of polypropylene (PP) films. The objective of the current work was to demonstrate the potential applicability of this PP-g-PHA film to control iron-promoted lipid oxidation in food emulsions. The iron chelating activity of this film was investigated, and the surface chemistry and color intensity of films were also analyzed after iron chelation. In comparison to the iron chelating activity in the free Fe(3+) solution, the PP-g-PHA film retained approximately 50 and 30% of its activity in nitrilotriacetic acid (NTA)/Fe(3+) and citric acid/Fe(3+) solutions, respectively (pH 5.0), indicating a strong chelating strength for iron. The ability of PP-g-PHA films to control lipid oxidation was demonstrated in a model emulsion system (pH 3.0). PP-g-PHA films performed even better than ethylenediaminetetraacetic acid (EDTA) in preventing the formation of volatile oxidation products. The particle size and ζ potential results of emulsions indicated that PP-g-PHA films had no adverse effects on the stability of the emulsion system. Attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR) analysis suggested a non-migratory nature of the PP-g-PHA film surface. These results suggest that such biomimetic, non-migratory metal chelating active packaging films have commercial potential in protecting foods against iron-promoted lipid oxidation.
先前,通过在聚丙烯(PP)膜表面接枝聚羟肟酸(PHA),开发出一种模拟铁载体的金属螯合活性包装膜。本研究旨在证明这种 PP-g-PHA 膜在控制食品乳液中铁促进的脂质氧化方面的潜在应用。研究了该膜的铁螯合活性,并分析了铁螯合后膜的表面化学和颜色强度。与游离 Fe(3+)溶液中的铁螯合活性相比,PP-g-PHA 膜在氮三乙酸(NTA)/Fe(3+)和柠檬酸/Fe(3+)溶液中分别保留了约 50%和 30%的活性(pH 5.0),表明其对铁具有很强的螯合强度。在模型乳液体系(pH 3.0)中,PP-g-PHA 膜控制脂质氧化的能力得到了证明。PP-g-PHA 膜在防止挥发性氧化产物形成方面的性能甚至优于乙二胺四乙酸(EDTA)。乳液的粒径和 ζ 电位结果表明,PP-g-PHA 膜对乳液体系的稳定性没有不利影响。衰减全反射傅里叶变换红外光谱(ATR-FTIR)分析表明,PP-g-PHA 膜表面具有非迁移性。这些结果表明,这种仿生、非迁移性的金属螯合活性包装膜在保护食品免受铁促进的脂质氧化方面具有商业潜力。