Punthi Fuangfah, Yudhistira Bara, Gavahian Mohsen, Chang Chao-Kai, Husnayain Naila, Hou Chih-Yao, Yu Cheng-Chia, Hsieh Chang-Wei
Department of Food Science and Biotechnology, National Chung Hsing University, Taichung City 40227, Taiwan.
Department of Food Science and Technology, Sebelas Maret University, Surakarta City 57126, Indonesia.
Foods. 2023 Dec 1;12(23):4347. doi: 10.3390/foods12234347.
This study focused on optimizing the extraction of polysaccharides (POPs) using plasma-activated water (PAW). A single factor and response surface methodology were employed to optimize and evaluate the polysaccharide yield, physiochemical characteristics, and biological activities of POPs. The observed findings were compared to those obtained by the conventional hot water extraction method (100 °C, 3 h), as the control treatment. The optimal extraction conditions were obtained at 700 W PAW power, 58 s treatment time, 1:19 sample-to-water ratio, and 15 L/min gas flow rate. In these conditions, the PAW-treated samples experienced changes in surface morphology due to plasma etching, leading to a 288% increase in the polysaccharide yield (11.67%) compared to the control sample (3.01%). Furthermore, the PAW-treated sample exhibited superior performance in terms of biological activities, namely phenolic compounds (53.79 mg GAE/100 g), DPPH scavenging activity (72.77%), and OH scavenging activity (65.03%), which were 29%, 18%, and 38% higher than those of control sample, respectively. The results highlighted the importance of process optimization and provided new evidence for PAW as an alternative approach to enhance the extraction efficiency of POPs, a novel source of natural antioxidants which enables diverse applications in the food industry.
本研究聚焦于利用等离子体活化水(PAW)优化多糖(POPs)的提取。采用单因素和响应面方法来优化和评估POPs的多糖产率、理化特性及生物活性。将观察结果与作为对照处理的传统热水提取法(100℃,3小时)所获得的结果进行比较。在700W的PAW功率、58秒的处理时间、1:19的样品与水比例以及15L/分钟的气体流速条件下获得了最佳提取条件。在这些条件下,经PAW处理的样品由于等离子体蚀刻而使表面形态发生变化,导致多糖产率(11.67%)相较于对照样品(3.01%)提高了288%。此外,经PAW处理的样品在生物活性方面表现优异,即酚类化合物(53.79mg GAE/100g)、DPPH清除活性(72.77%)和OH清除活性(65.03%),分别比对照样品高29%、18%和38%。结果突出了工艺优化的重要性,并为PAW作为提高POPs提取效率的替代方法提供了新证据,POPs是一种新型天然抗氧化剂来源,可在食品工业中实现多种应用。