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Phenylethyl Isothiocyanate Extracted from Watercress By-Products with Aqueous Micellar Systems: Development and Optimisation

机译:苯基乙基异硫氰酸酯用含水胶束系统的水纤维副产物提取:开发和优化

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摘要

Phenylethyl isothiocyanate (PEITC) was reported as a useful antioxidant, anti-inflammatory, and chemopreventive agent. Due to technological and stability issues, it is necessary to be able to extract PEITC from its natural matrix (watercress) through sustainable and scalable methodologies. In this article, we explored, for the first time, the extractive capacity of aqueous micellar systems (AMSs) of two non-ionic surfactants. For this, we compared the AMSs with conventional organic solvents. Furthermore, we developed and optimised a new integral PEITC production and extraction process by a multifactorial experimental design. Finally, we analysed the antioxidant capacity by the oxygen radical absorbance capacity (ORAC) and ABTS methods. As results, the AMSs were able to extract PEITC at the same level as the tested conventional solvents. In addition, we optimised by response surface methodology the integrated process (2.0% m/m, 25.0 °C, pH 9.0), which was equally effective (ca. 2900 µg PEITC/g watercress), regardless of the surfactant used. The optimal extracts showed greater antioxidant capacity than pure PEITC, due to other antioxidant compounds extracted in the process. In conclusion, by the present work, we developed an innovative cost-effective and low environmental impact process for obtaining PEITC extracts from watercress by-products.
机译:将苯基乙基异硫氰酸酯(PEITC)报告为有用的抗氧化剂,抗炎和化学预防剂。由于技术和稳定性问题,必须能够通过可持续和可扩展的方法从其天然基质(豆瓣)中提取PEITC。在本文中,我们首次探索了两种非离子表面活性剂的胶束系统(AMS)的胶形胶质系统的萃取能力。为此,我们将AMS与常规有机溶剂进行比较。此外,我们通过多因其实验设计开发并优化了新的整体PEITC生产和提取过程。最后,我们通过氧自由基吸光度(ORAC)和ABTS方法分析了抗氧化能力。结果,AMS能够以与测试的常规溶剂相同的水平提取PEITC。此外,我们通过响应面方法优化了综合方法(2.0%M / M,25.0°C,pH 9.0),其同样有效(约2900μgPEITC/ G豆瓣豆荚豆荚),无论使用的表面活性剂如何。由于在该方法中提取的其他抗氧化剂化合物,最佳提取物表现出比纯PEIDC更大的抗氧化能力。总之,通过本作工作,我们开发了一种创新的成本效益和低环境影响过程,用于从豆瓣副产品获得PEITC提取物。

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