Lei Wenzhi, Liang Jingjing, Tan Pei, Yang Siqi, Fan Lingjia, Han Mengzhen, Li Hongcai, Gao Zhenpeng
College of Food Science and Engineering, Northwest A&F University, 712100 Yangling, Shaanxi, People's Republic of China.
College of Food Science and Engineering, Northwest A&F University, 712100 Yangling, Shaanxi, People's Republic of China.
Int J Biol Macromol. 2022 Dec 1;222(Pt B):2054-2064. doi: 10.1016/j.ijbiomac.2022.10.004. Epub 2022 Oct 6.
Apple polyphenols are abundantly present in apple pomace, and their applications are limited by the low efficiency of traditional extraction methods and the tendency to pollute the environment. Starch nanoparticles (SNPs) have received much attention due to their renewable, low cost and biocompatibility. The aim of this study was to prepare SNPs of different sizes from corn starch using ultrasonic-assisted chemical precipitation with adsorption of apple polyphenols, investigate the relationship between particle size and adsorption, while experiments were performed to assess antioxidant activity, simulate in vivo digestion and polyphenol release. The results showed that the smaller the particle size of SNPs the higher the adsorption of polyphenols, and the combination of characterization and adsorption kinetics showed that this adsorption was a physicochemical binding process. DPPH radical scavenging activity showed that polyphenols bound to SNPs were more stable than free polyphenols. In vitro simulation of digestion and release processes, SNPs loaded with polyphenols showed better anti-digestive properties, polyphenols are released in small amounts in gastric juices and continuously in intestinal juices. Our results provide a theoretical basis for the direct separation of polyphenols from fruit pomace polyphenol extracts using nanomaterials and the industrial utilization of polyphenol products.
苹果多酚大量存在于苹果渣中,但其应用受到传统提取方法效率低和易污染环境的限制。淀粉纳米颗粒(SNPs)因其可再生、低成本和生物相容性而备受关注。本研究的目的是通过超声辅助化学沉淀法从玉米淀粉制备不同尺寸的SNPs,并吸附苹果多酚,研究粒径与吸附之间的关系,同时进行实验以评估抗氧化活性、模拟体内消化和多酚释放。结果表明,SNPs的粒径越小,多酚的吸附量越高,表征和吸附动力学表明这种吸附是一个物理化学结合过程。DPPH自由基清除活性表明,与SNPs结合的多酚比游离多酚更稳定。在体外模拟消化和释放过程中,负载多酚的SNPs表现出更好的抗消化特性,多酚在胃液中少量释放,在肠液中持续释放。我们的研究结果为利用纳米材料直接从果渣多酚提取物中分离多酚以及多酚产品的工业化利用提供了理论依据。