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Controlled release of Lactobacillus rhamnosus biofilm probiotics from alginate-locust bean gum microcapsules

机译:藻酸刺槐豆胶微胶囊对鼠李糖乳杆菌生物膜益生菌的控制释放

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摘要

Chitosan-coated alginate microcapsules containing high-density biofilm Lactobacillus rhamnosus have been previously shown to exhibit higher freeze drying- and thermal-tolerance than their planktonic counterparts. However, their cell release profile remains poor due to the capsules' susceptibility to the gastric environment. Herein the effects of adding locust bean (LB) and xanthan (XT) gums to alginate (AGN) capsules on the stress tolerance and cell release profiles in simulated gastrointestinal fluids are investigated. Compared to the AGN-only capsules, the AGN-LB capsules exhibit improved stress tolerance (i.e. ≈6x for freeze drying, 100x for thermotolerance, 10x for acid), whereas the AGN-XT capsules only improve the acid tolerance. Importantly, the AGN-LB capsules possess the optimal cell release profile with a majority of cells released in the simulated intestinal juice than in the gastric juice. The AGN-LB capsules' superiority is attributed to their stronger interaction with the chitosan coating and high swelling capacity, thus delaying their bulk dissolution.
机译:先前已证明,含有高密度生物膜鼠李糖乳杆菌的壳聚糖包衣藻酸盐微胶囊比浮游生物具有更高的冷冻干燥和耐热性。然而,由于胶囊对胃环境的敏感性,它们的细胞释放特性仍然很差。在本文中,研究了将刺槐豆(LB)和黄原胶(XT)胶添加到藻酸盐(AGN)胶囊中对模拟胃肠道液中的胁迫耐受性和细胞释放曲线的影响。与仅使用AGN的胶囊相比,AGN-LB胶囊的应力耐受性有所提高(即冷冻干燥约为≈6倍,耐热性约为100倍,酸为10倍),而AGN-XT胶囊仅提高了耐酸性。重要的是,AGN-LB胶囊具有最佳的细胞释放特性,在模拟肠液中比在胃液中释放的细胞大多数。 AGN-LB胶囊的优越性归因于它们与壳聚糖涂层的更强相互作用以及高溶胀能力,从而延迟了其整体溶解。

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