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乳清蛋白分离物纳米纤维在益生菌表面的生物界面超分子自组装,以提高其存活率,并应用于 3D 打印吞咽困难食品。

Biointerfacial supramolecular self-assembly of whey protein isolate nanofibrils on probiotic surface to enhance survival and application to 3D printing dysphagia foods.

机构信息

Department of Chemistry, College of Arts and Sciences, Northeast Agricultural University, Harbin 150030, China.

Department of Chemistry, College of Arts and Sciences, Northeast Agricultural University, Harbin 150030, China.

出版信息

Food Chem. 2024 Dec 1;460(Pt 3):140720. doi: 10.1016/j.foodchem.2024.140720. Epub 2024 Aug 2.

Abstract

Personalized three-dimensional (3D) printed foods rich in probiotics were investigated. Lactiplantibacillus plantarum (Lp), as a representative of probiotics, was used to investigate the 3D printing of probiotic-rich dysphagia foods. Here, whey protein isolate nanofibrils (WPNFs) were coated and anchored on bacterial surfaces via biointerfacial supramolecular self-assembly, providing protection against environmental stress and the 3D printing process. The optimized composite gels consisting of High acyl gellan gum (0.25 g), whey protein isolate (1.25 g), fructooligosaccharides (0.75 g), Lp-WPNFs-Glyceryl tributyrate emulsion (Φ = 40%, 3.75 mL) can realize 3D printing, and exhibit high resolution, and stable shape. The viable cell count is higher than 8.0 log CFU/g. They are particularly suitable for people with dysphagia and are classified as level 5-minced & moist in the international dysphagia diet standardization initiative framework. The results provide new insights into the development of WPNFs-coating on bacterial surfaces to deliver probiotics and 3D printed food rich in probiotics.

摘要

个性化的富含益生菌的三维(3D)打印食品得到了研究。植物乳杆菌(Lp)作为益生菌的代表,被用于研究富含益生菌的吞咽困难食品的 3D 打印。在这里,乳清蛋白分离物纳米纤维(WPNFs)通过生物界面超分子自组装被包覆和锚定在细菌表面,提供对环境胁迫和 3D 打印过程的保护。由高酰基结冷胶(0.25g)、乳清蛋白分离物(1.25g)、低聚果糖(0.75g)和 Lp-WPNFs-甘油三丁酸酯乳液(Φ=40%,3.75mL)组成的优化复合凝胶可以实现 3D 打印,具有较高的分辨率和稳定的形状。活菌数高于 8.0log CFU/g。它们特别适合吞咽困难的人群,在国际吞咽困难饮食标准化倡议框架中被归类为 5 级——切碎湿润。研究结果为在细菌表面包覆 WPNFs 以输送益生菌和富含益生菌的 3D 打印食品提供了新的见解。

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