Frosi Ilaria, Colombo Raffaella, Milanese Chiara, Papetti Adele
Department of Drug Sciences, University of Pavia, 27100 Pavia, Italy.
Physical Chemistry Section, Department of Chemistry, University of Pavia & C.G.S.I., 27100 Pavia, Italy.
Foods. 2025 Jun 9;14(12):2034. doi: 10.3390/foods14122034.
The generally very low bioaccessibility of polyphenols can be enhanced through several different strategies, especially when these metabolites are components of extracts used as food ingredients. This work explores the efficacy of pectin-zein beads as carriers for delivering -coumaric acid), the main component of rice husk extract. Ten formulations were prepared using the ionic gelation technique, employing a Taghuci Design of Experiments to optimize zein, pectin, and CaCl concentrations. Zein content was found as the main parameter affecting the encapsulation efficiency. The highest value (51.77 ± 1.13%) was achieved using 10% zein, 3% pectin, and 4% CaCl. -coumaric acid bioaccessibility in the raw and encapsulated extracts was evaluated by adopting the Infogest digestion protocol and simulating a colon phase with Pectinex Ultra SPL enzymes, evidencing that pectin-zein beads effectively improved -coumaric acid stability in the extract. The encapsulation highly preserves -coumaric acid during the gastric phase (bioaccessibility index 34%); conversely, an increased release was registered at the intestinal level, reaching approximately 80% and 100% during the duodenal and colon steps, respectively. Therefore, pectin-zein beads were demonstrated to be a promising tool for the development of active ingredients suitable for functional foods/food supplements aimed at enhancing health benefits through controlled intestinal delivery of bioactives.
多酚类物质通常很低的生物可及性可以通过几种不同的策略来提高,特别是当这些代谢物是用作食品成分的提取物的组成部分时。这项工作探索了果胶-玉米醇溶蛋白微球作为阿魏酸(米糠提取物的主要成分)载体的功效。采用离子凝胶法制备了十种配方,运用Taghuci实验设计来优化玉米醇溶蛋白、果胶和氯化钙的浓度。发现玉米醇溶蛋白含量是影响包封效率的主要参数。使用10%玉米醇溶蛋白、3%果胶和4%氯化钙时达到了最高值(51.77±1.13%)。通过采用Infogest消化方案并使用Pectinex Ultra SPL酶模拟结肠阶段,评估了生提取物和包封提取物中阿魏酸的生物可及性,结果表明果胶-玉米醇溶蛋白微球有效地提高了提取物中阿魏酸的稳定性。包封在胃阶段能高度保留阿魏酸(生物可及性指数为34%);相反,在肠道水平上观察到释放增加,在十二指肠和结肠阶段分别达到约80%和100%。因此,果胶-玉米醇溶蛋白微球被证明是一种很有前景的工具,可用于开发适合功能性食品/食品补充剂的活性成分,旨在通过生物活性物质的可控肠道递送增强健康益处。