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Co-Microencapsulated Black Rice Anthocyanins and Lactic Acid Bacteria: Evidence on Powders Profile and In Vitro Digestion

机译:共同微胶囊的黑米花青素和乳酸菌:粉末剖面和体外消化的证据

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摘要

Two multi-functional powders, in terms of anthocyanins from black rice (Oryza sativa L.) and lactic acid bacteria (Lactobacillus paracasei, L. casei 431®) were obtained through co-microencapsulation into a biopolymer matrix composed of milk proteins and inulin. Two extracts were obtained using black rice flour as a raw material and hot water and ethanol as solvents. Both powders (called P1 for aqueous extract and P2 for ethanolic extract) proved to be rich sources of valuable bioactives, with microencapsulation efficiency up to 80%, both for anthocyanins and lactic acid bacteria. A higher content of anthocyanins was found in P1, of 102.91 ± 1.83 mg cyanindin-3-O-glucoside (C3G)/g dry weight (DW) when compared with only 27.60 ± 17.36 mg C3G/g DW in P2. The morphological analysis revealed the presence of large, thin, and fragile structures, with different sizes. A different pattern of gastric digestion was observed, with a highly protective effect of the matrix in P1 and a maximum decrease in anthocyanins of approximatively 44% in P2. In intestinal juice, the anthocyanins decreased significantly in P2, reaching a maximum of 97% at the end of digestion; whereas in P1, more than 45% from the initial anthocyanins content remained in the microparticles. Overall, the short-term storage stability test revealed a release of bioactive from P2 and a decrease in P1. The viable cells of lactic acid bacteria after 21 days of storage reached 7 log colony forming units (CFU)/g DW.
机译:通过来自黑米(Oryza Sativa L.)和乳酸菌(Lactobacillus ParacaSi,L.Sisti 431)的花青素的两种多功能粉末通过共胶囊化成由牛奶蛋白和菊粉组成的生物聚合物基质。使用黑米粉作为原料和热水和乙醇作为溶剂获得两种提取物。证明,对于花青素和乳酸菌,微胶囊化效率高达80%,均为有价值的生物术来源的粉末(含水提取物和乙醇提取物的P2)被证明是有价值的生物透视的富含源。在P2中仅在102.91±1.83mg Cyanindin-3-O-葡糖苷(C3G)/ g干重(DW)中,在P1中发现了更高的花青素含量。在P2中仅为27.60±17.36mg C3G / G DW。形态学分析显示出大,薄,脆弱的结构,具有不同的尺寸。观察到一种不同的胃消化模式,具有p1中的基质在p1中的高度保护作用和近似44%的花青素的最大降低。在肠汁中,花青素在P2中显着下降,消化结束时最多达到97%;虽然在P1中,从初始花青素含量留在微粒中超过45%。总体而言,短期储存稳定性测试显示从P2的生物活性释放和P1的减少。储存21天后乳酸菌的活细胞达到7个木菌落形成单位(CFU)/ g DW。

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