利用中心复合设计优化影响南瓜皮抗氧化活性和类胡萝卜素浓度的参数

Plants Pub Date : 2024-05-23 DOI:10.3390/plants13111447
Roxana Nicoleta Gavril (Rațu), O. Constantin, Elena Enachi, Florina Stoica, F. Lipșa, N. Stănciuc, I. Aprodu, G. Râpeanu
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摘要

研究发现,南瓜(Cucurbita maxima)皮被视为南瓜加工过程中的一种废品,含有大量类胡萝卜素和其他抗氧化剂。本研究旨在确定超声波辅助萃取法最有效的萃取参数,以提取南瓜皮中的类胡萝卜素总量(TCs)并评估其抗氧化活性(AA)。为了确定萃取时间、温度和材料与溶剂的比例对类胡萝卜素和抗氧化剂回收率的影响,采用了中心复合设计(CCD)的响应面方法。萃取温度(6.25-98.75 °C)、萃取时间(13.98-128.98 分钟)和溶剂比(0.23-50.23 mL)是实验计划中的编码变量。类胡萝卜素浓度在 0.53 至 1.06 mg/g DW 之间变化,而 AA 在 0.34 至 7.28 µM TE/g DW 之间变化。研究结果表明,最佳萃取参数为 80 °C 的温度、10 mL 的溶剂比例和 100 分钟的萃取时间。研究证实,在最佳萃取条件下,实验得出的 TC 产量为 0.97 mg/g DW,AA 为 7.25 µM TE/g DW。总之,需要强调的是,可以通过设置操作因子来增强萃取过程,使模型响应最大化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of the Parameters Influencing the Antioxidant Activity and Concentration of Carotenoids Extracted from Pumpkin Peel Using a Central Composite Design
It has been discovered that the peel of a pumpkin (Cucurbita maxima), regarded as a waste product of pumpkin processing, has significant amounts of carotenoids and other antioxidants. This study aims to identify the most effective extraction parameters for an ultrasonic-assisted extraction method to extract the total carotenoids (TCs) and assess the antioxidant activity (AA) of pumpkin peel. To determine the effects of the extraction time, temperature, and material-to-solvent ratio on the recovery of TCs and AA, a response surface methodology utilizing the central composite design (CCD) was used. The extraction temperature (6.25–98.75 °C), extraction duration (13.98–128.98 min), and solvent ratio (0.23–50.23 mL) were the variables studied in the coded form of the experimental plan. The carotenoid concentration varied from 0.53 to 1.06 mg/g DW, while the AA varied from 0.34 to 7.28 µM TE/g DW. The findings indicated that the optimal extraction parameters were an 80 °C temperature, a 10 mL solvent ratio, and a 100 min extraction time. The study confirmed that the optimum extraction conditions resulted in an experimental TC yield of 0.97 mg/g DW and an AA of 7.25 µM TE/g DW. Overall, it should be emphasized that the extraction process can be enhanced by setting the operating factors to maximize the model responses.
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