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Effects of Electron Beam Radiation on the Phenolic Composition and Bioactive Properties of Olive Pomace Extracts

机译:电子束辐射对橄榄果渣提取物酚类成分和生物活性特性的影响

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摘要

Olive pomace is an agro-industrial waste product generated from the olive oil industry and constituted by bioactive compounds with potential applications in several industrial sectors. The purpose of this work was to evaluate the effects of electron beam (e-beam) radiation on olive pomace, specifically on phenolic compounds (by HPLC–DAD–ESI/MS) and the bioactive properties (antioxidant, antiproliferative, and antimicrobial activities) of crude olive pomace (COP) and extracted olive pomace (EOP) extracts. The amount of total flavonoid content and the reducing power of COP extracts were higher than those obtained for EOP extracts. The results suggested that e-beam radiation at 6 kGy increased both total phenolic and total flavonoid contents as well as the reducing power of COP extracts, due to the higher extractability (>2.5-fold) of phenolic compounds from these samples, while decreasing the scavenging activity of extracts. The extracts of both olive pomaces showed antibacterial potential, and COP extracts at 400 µg/mL also presented antiproliferative activity against A549, Caco-2, 293T, and RAW264.7 cell lines, with both properties preserved with the e-beam treatment. All in all, e-beam radiation at 6 kGy appears to be a promising technology to valorize the pollutant wastes of the olive oil industry through enhancing phenolic extractability and bioactive properties, and, furthermore, to contribute to the environmental and economical sustainability of the olive oil industry.
机译:橄榄渣是橄榄油工业产生的一种农业工业废料,由生物活性化合物构成,在多个工业部门具有潜在应用。这项工作的目的是评估电子束 (e-beam) 辐射对橄榄渣的影响,特别是对酚类化合物(通过 HPLC-DAD-ESI/MS)和粗橄榄渣 (COP) 和提取橄榄渣 (EOP) 提取物的生物活性特性(抗氧化、抗增殖和抗菌活性)。COP 提取物的总类黄酮含量和还原力高于 EOP 提取物。结果表明,由于酚类化合物从这些样品中的提取率较高(>2.5 倍),同时降低了提取物的清除活性,因此 6 kGy 的电子束辐射增加了总酚和总类黄酮含量以及 COP 提取物的还原能力。两种橄榄果渣的提取物均显示出抗菌潜力,400 μg/mL 的 COP 提取物也对 A549、Caco-2、293T 和 RAW264.7 细胞系表现出抗增殖活性,电子束处理保留了这两种特性。总而言之,6 kGy 的电子束辐射似乎是一项很有前途的技术,可以通过增强酚类提取性和生物活性来使橄榄油行业的污染废物增值,此外,还可以为橄榄油行业的环境和经济可持续性做出贡献。

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