Wang Huilin, Huang Gangliang, Zhang Xixin
Key Laboratory of Carbohydrate Science and Engineering, Chongqing Key Laboratory of Inorganic Functional Materials, Chongqing Normal University, Chongqing 401331, China.
Key Laboratory of Carbohydrate Science and Engineering, Chongqing Key Laboratory of Inorganic Functional Materials, Chongqing Normal University, Chongqing 401331, China.
Ultrason Sonochem. 2025 Mar;114:107244. doi: 10.1016/j.ultsonch.2025.107244. Epub 2025 Jan 27.
In this study, the polysaccharides (BOLP) of Brassica oleracea L. var. capitata L. were extracted by ultrasound-assisted pectinase (UAEE) and hot water extraction (HAE), and the extraction conditions of the two methods were optimized by establishing response surface methodology (RSM), and the HAE-BOLP and UAEE-BOLP obtained under the optimal extraction conditions were analyzed for their chemical compositions, preliminary structural characterization and in vitro antioxidant activity tests. The findings demonstrated that, in the ideal circumstances investigated by RSM, the BOLP extracted by UAEE was superior to that of HAW, both in terms of sugar content and extraction rate, in which the extraction rate was 1.51 times higher than that of HAE, and the amount of solvent used for extraction was greatly reduced. As far as the antioxidant activity test is concerned, UAEE-extracted BOLP showed more reducing power and ABTS radical scavenging ability than HAE, reaching about 97.61 % scavenging of ABTS at 4 mg/mL. In addition, structural characterization showed that UAEE-BOLP is an acidic polysaccharide containing glucuronic acid with α- and β-glycosidic bonds, whereas HAE-BOLP contains only β-glycosidic bonds, and both polysaccharides contain furanose and pyranose ring structures. In this study, the ultrasound-assisted pectinase extraction method for BOLP was reported for the first time. Additionally, the in-vitro antioxidant activity of BOLP was measured for the first time. This work fills the gap regarding the antioxidant activity of BOLP, and it can provide a theoretical basis for the future development and utilization of BOLP in fields such as biopharmaceuticals and food additives.
本研究采用超声辅助果胶酶法(UAEE)和热水提取法(HAE)提取甘蓝型油菜变种甘蓝的多糖(BOLP),通过建立响应面法(RSM)优化两种方法的提取条件,并对在最佳提取条件下获得的HAE - BOLP和UAEE - BOLP进行化学组成分析、初步结构表征及体外抗氧化活性测试。研究结果表明,在RSM研究的理想条件下,UAEE提取的BOLP在糖含量和提取率方面均优于HAW,其中提取率比HAE高1.51倍,且提取所用溶剂量大幅减少。就抗氧化活性测试而言,UAEE提取的BOLP比HAE表现出更强的还原力和ABTS自由基清除能力,在4mg/mL时对ABTS的清除率达到约97.61%。此外,结构表征表明UAEE - BOLP是一种含有葡萄糖醛酸的酸性多糖,具有α - 和β - 糖苷键,而HAE - BOLP仅含有β - 糖苷键,两种多糖均含有呋喃糖和吡喃糖环结构。本研究首次报道了超声辅助果胶酶提取BOLP的方法。此外,首次测定了BOLP的体外抗氧化活性。这项工作填补了BOLP抗氧化活性方面的空白,可为BOLP在生物制药和食品添加剂等领域的未来开发利用提供理论依据。