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Optimization of an Extraction Process to Obtain a Food-Grade Sulforaphane-Rich Extract from Broccoli (Brassica oleracea var. italica)

机译:优化萃取过程以获得来自西兰花的食品级含糖素的提取物(Brassica Oleracea Var。Italica)

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摘要

Sulforaphane (SFN) is a powerful health-promoting compound found in broccoli in the form of its inactive precursor, glucoraphanin (GFN). SFN formation occurs through the enzymatic hydrolysis of glucoraphanin by myrosinase under specific chemical conditions. Its incorporation in food formulations has been hindered by the thermal instability of SFN and low concentration in Brassicaceae. Then, extracting SFN from broccoli at a temperature below 40 °C appears as an option to recover and stabilize SFN, aiming at delivering it as a nutraceutical. We studied an eco-friendly extraction process to obtain an SFN-rich extract from broccoli. The effect of the broccoli mass/solvent ratio, ethanol concentration in the extractant solution, and extraction time on the recovery of SFN, GFN, phenolic compounds, and antioxidant activity were studied through a Box–Behnken design. The regression models explained more than 70% of the variability in the responses, adequately representing the system. The experimental factors differently affected the bioactive compound recovery and antioxidant activity of the extracts. The extraction conditions that allowed the highest recovery of bioactive compounds and antioxidant activity were identified and experimentally validated. The results may provide the basis for the design of a process to produce a sulforaphane-rich food supplement or nutraceutical by using a GRAS extractant.
机译:亚磺甲烷(SFN)是一种强大的健康促进化合物,以其无活性前体,葡萄瓜蛋白(GFN)的形式。在特定化学条件下通过硫酸氨基酶的酶水解酶水解发生SFN形成。它在食品配方中的掺入已经受到SFN的热不稳定性和Brassicaceae的热不稳定性。然后,在低于40℃的温度下从西兰花的SFN提取为恢复和稳定SFN的选项,旨在将其作为营养制品递送。我们研究了一种生态友好的提取方法,得到了来自西兰花的富含SFN的提取物。通过箱形式设计研究了萃取剂溶液中的萃取剂溶液中的乙醇浓度,萃取剂溶液中的乙醇浓度,以及对SFN,GFN,酚类化合物和抗氧化活性的提取时间。回归模型在响应中解释了超过70%的可变性,充分代表系统。实验因素对提取物的生物活性化合物回收和抗氧化活性不同。鉴定允许生物活性化合物和抗氧化活性最高回收率的提取条件并进行实验验证。结果可以通过使用GRAS提取物为生产富含含糖的食品补充剂或营养保健品的方法提供基础。

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