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Antioxidant Properties of Agri-Food Byproducts and Specific Boosting Effects of Hydrolytic Treatments

机译:农业食品副产物的抗氧化性能及水解处理的特异性提升作用

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摘要

Largely produced agri-food byproducts represent a sustainable and easily available source of phenolic compounds, such as lignins and tannins, endowed with potent antioxidant properties. We report herein the characterization of the antioxidant properties of nine plant-derived byproducts. 2,2-Diphenyl-1-picrylhydrazyl (DPPH) and ferric reducing/antioxidant power (FRAP) assays indicated the superior activity of pomegranate peels and seeds, grape pomace and pecan nut shell. An increase in the antioxidant potency was observed for most of the waste materials following a hydrolytic treatment, with the exception of the condensed tannin-rich pecan nut shell and grape pomace. UV-Vis and HPLC investigation of the soluble fractions coupled with the results from IR analysis and chemical degradation approaches on the whole materials allowed to conclude that the improvement of the antioxidant properties was due not only to removal of non-active components (mainly carbohydrates), but also to structural modifications of the phenolic compounds. Parallel experiments run on natural and bioinspired model phenolic polymers suggested that these structural modifications positively impacted on the antioxidant properties of lignins and hydrolyzable tannins, whereas significant degradation of condensed tannin moieties occurred, likely responsible for the lowering of the reducing power observed for grape pomace and pecan nut shell. These results open new perspectives toward the exploitation and manipulation of agri-food byproducts for application as antioxidant additives in functional materials.
机译:主要生产的农业食品副产品代表赋予含有有效的抗氧化性能的酚类化合物如木质素和单宁的可持续且易于使用的酚类化合物来源。我们在此报告了九种植物衍生的副产物的抗氧化性能的表征。 2,2-二苯基-1-牛仔酰基(DPPH)和抗氧化/抗氧化能力(FRAP)测定表明石榴果皮和种子,葡萄渣和山孔坚果壳的优异活性。对于水解处理后大部分废物,观察到抗氧化剂效力的增加,除了浓缩的富含宁富氯螺母壳和葡萄渣。 uV-Vis和HPLC调查与IR分析和化学降解的结果偶联的可溶性级分允许得出结论,抗氧化性能的改善是由于除去非活性组分(主要是碳水化合物) ,还用于酚类化合物的结构修饰。在天然和生物透明模型酚醛聚合物上运行的并行实验表明这些结构修饰对木质素和可水解的单宁的抗氧化性能产生了积极影响,而浓缩的单宁部分的显着降解可能发生在降低对葡萄渣中观察到的降低功率的负责山核桃壳。这些结果开放了新的视角,旨在利用和操纵施用作为抗氧化添加剂在功能材料中的应用。

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