Wu Ding-Tao, Geng Jin-Lei, Li Jie, Deng Wen, Zhang Yao, Hu Yi-Chen, Zou Liang, Xia Yu, Zhuang Qi-Guo, Liu Hong-Yan, Gan Ren-You
Key Laboratory of Coarse Cereal Processing (Ministry of Agriculture and Rural Affairs), Sichuan Engineering & Technology Research Center of Coarse Cereal Industralization, School of Food and Biological Engineering, Chengdu University, Chengdu 610106, Sichuan, China.
Research Center for Plants and Human Health, Institute of Urban Agriculture, Chinese Academy of Agricultural Sciences, National Agricultural Science and Technology Center, Chengdu 610213, China.
Food Chem X. 2023 Dec 17;21:101083. doi: 10.1016/j.fochx.2023.101083. eCollection 2024 Mar 30.
To promote the potentially industrial applications of thinned unripe kiwifruits, two deep eutectic solvent-based methods, including deep eutectic solvent-assisted extraction (DAE) and microwave-assisted deep eutectic solvent extraction (MDE), were optimized for the extraction of polysaccharides from thinned unripe kiwifruits (YKP). Results showed that the yields of YKP-D prepared by DAE and YKP-DM prepared by MDE were extremely higher than YKP-H prepared by hot water extraction. Furthermore, YKP-H, YKP-D, and YKP-DM were mainly composed of pectic polysaccharides, including homogalacturonan (HG) and rhamnogalacturonan I (RG I) domains. Besides, both YKP-D and YKP-DM exhibited stronger antioxidant, anti-glycosylation, and immunomodulatory effects than those of YKP-H, and their higher contents of uronic acids and bound polyphenols as well as lower molecular weights could partially contribute to their bioactivities. Overall, these results revealed that the developed MDE method could be utilized as a promising method for highly efficient extraction of YKP with superior beneficial effects.
为促进疏果未成熟猕猴桃的潜在工业应用,对两种基于低共熔溶剂的方法进行了优化,即低共熔溶剂辅助提取(DAE)和微波辅助低共熔溶剂提取(MDE),用于从疏果未成熟猕猴桃(YKP)中提取多糖。结果表明,DAE制备的YKP-D和MDE制备的YKP-DM的产率远高于热水提取制备的YKP-H。此外,YKP-H、YKP-D和YKP-DM主要由果胶多糖组成,包括同型半乳糖醛酸聚糖(HG)和鼠李糖半乳糖醛酸聚糖I(RG I)结构域。此外,YKP-D和YKP-DM均表现出比YKP-H更强的抗氧化、抗糖基化和免疫调节作用,其较高的糖醛酸和结合多酚含量以及较低的分子量可能部分归因于它们的生物活性。总体而言,这些结果表明,所开发的MDE方法可作为一种有前景的方法,用于高效提取具有优异有益效果的YKP。