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蛋白质-多糖复合物包被的固体脂质微粒对益生菌和富含原花青素的肉桂提取物的保护潜力。

Potential of solid lipid microparticles covered by the protein-polysaccharide complex for protection of probiotics and proanthocyanidin-rich cinnamon extract.

作者信息

Tasch Holkem Augusto, Favaro-Trindade Carmen Sílvia

机构信息

Universidade de São Paulo, Faculdade de Zootecnia e Engenharia de alimentos, Av. Duque de Caxias Norte, 225, CEP 13635-900, Pirassununga, São Paulo, Brazil.

Universidade de São Paulo, Faculdade de Zootecnia e Engenharia de alimentos, Av. Duque de Caxias Norte, 225, CEP 13635-900, Pirassununga, São Paulo, Brazil.

出版信息

Food Res Int. 2020 Oct;136:109520. doi: 10.1016/j.foodres.2020.109520. Epub 2020 Jul 13.

DOI:10.1016/j.foodres.2020.109520
PMID:32846591
Abstract

Probiotics and proanthocyanidin-rich cinnamon extract (PRCE) have numerous potential health benefits, but they are very sensitive to degradation in various environmental conditions. Additionally, the combination of these two materials into a single structure could possibly enhance their therapeutic properties. Thus, the aim of this study was to produce and evaluate the solid lipid microparticles covered by electrostatic interactions of polymers in which Lactobacillus paracasei (BGP1) and Bifidobacterium animalis subsp. lactis (BLC1) were either encapsulated alone or co-encapsulated with PRCE. Through turbidimetric titration and zeta potential measurement, the optimum coacervates were obtained at a pH of 4.2 with the protein:polysaccharide mixing ratio of 6:1. Along with quantification of the probiotics, total phenolic compounds, and proanthocyanidins, morphological and physicochemical characterizations were performed during storage for 120 days at both 7 and 25 °C. All the produced powders had similar morphological and physicochemical properties. The treatments with BLC1 and 5% PRCE presented greater encapsulation efficiencies for probiotic, phenolics, and proanthocyanids with 98.59% ± 0.45, 119.49% ± 4.21, and 81.25% ± 1.9, respectively. Additionally, there was greater viability for BLC1 (9.30 ± 0.16 log CFU / g) after 120 days of storage at 7 °C. In conclusion, solid lipid particles with BLC1 and 5% PRCE are a promising solution for the preservation and consumption of both materials.

摘要

益生菌和富含原花青素的肉桂提取物(PRCE)具有许多潜在的健康益处,但它们在各种环境条件下对降解非常敏感。此外,将这两种物质组合成单一结构可能会增强它们的治疗特性。因此,本研究的目的是制备并评估由聚合物静电相互作用覆盖的固体脂质微粒,其中副干酪乳杆菌(BGP1)和动物双歧杆菌亚种乳酸亚种(BLC1)单独封装或与PRCE共封装。通过比浊滴定和zeta电位测量,在pH为4.2、蛋白质与多糖混合比为6:1时获得了最佳凝聚层。在7℃和25℃下储存120天期间,除了对益生菌、总酚类化合物和原花青素进行定量外,还进行了形态学和物理化学表征。所有制备的粉末具有相似的形态学和物理化学性质。用BLC1和5%PRCE处理的益生菌、酚类和原花青素的包封效率更高,分别为98.59%±0.45、119.49%±4.21和81.25%±1.9。此外,在7℃下储存120天后,BLC1的活力更高(9.30±0.16 log CFU/g)。总之,含有BLC1和5%PRCE的固体脂质颗粒是这两种物质保存与消费的一个有前景的解决方案。

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