首页> 外文期刊>Journal of Agricultural and Food Chemistry >Porous Cellulose Microgel Particle: A Fascinating Host for the Encapsulation, Protection, and Delivery of Lactobacillus plantarum
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Porous Cellulose Microgel Particle: A Fascinating Host for the Encapsulation, Protection, and Delivery of Lactobacillus plantarum

机译:多孔纤维素微凝胶颗粒:封装,保护和传递植物乳杆菌的迷人主机。

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摘要

Advances in probiotic markets are always restrained by a low viable loading capacity and poor viability. Herein, cellulose microgels (CMs) with high porosity of 95.83 +/- 0.38%, prepared by the sol gel transition method, turned out to be a hospitable host that accommodated a large number of viable Lactobacillus plantarum higher than 109 colony-forming units (cfu)/g. The unique porous structure fascinated probiotics to penetrate into the core of microgels. The conjugation with alginate helped for better acid resistance and bacterial survival of the probiotics. In comparison to Ca-alginate gels, core shell gels showed sustainable release of L. plantarum cells without damage of viability, lasting for 360 min in simulated intestine fluid. The cellulose host helped to sustain the viable cell release for a longer duration and afford better shelter for L. plantarum cells as a result of the porous structure and rigid supporting property. The core shell gels are promising for constructing targeted delivery vehicles of bioactive nutrients.
机译:益生菌市场的进步总是受到低生存能力和低生存能力的限制。在本文中,通过溶胶凝胶转变法制备的具有95.83 +/- 0.38%的高孔隙度的纤维素微凝胶(CMs)证明是一种好客的宿主,可容纳大量高于109个菌落形成单位的活植物乳杆菌( cfu)/克。独特的多孔结构吸引了益生菌渗入微凝胶的核心。与藻酸盐的结合有助于提高益生菌的耐酸性和细菌存活率。与海藻酸钙凝胶相比,核壳凝胶显示出植物乳杆菌细胞的可持续释放而没有活力的损害,在模拟肠液中可持续360分钟。由于多孔结构和刚性支撑特性,纤维素宿主有助于在更长的时间内维持活细胞的释放,并为植物乳杆菌细胞提供更好的遮盖力。核壳凝胶有望用于构建生物活性营养物的靶向输送载体。

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