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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Improved probiotic viability in stress environments with post-culture of alginate-chitosan microencapsulated low density cells
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Improved probiotic viability in stress environments with post-culture of alginate-chitosan microencapsulated low density cells

机译:海藻酸钠-壳聚糖微囊化低密度细胞的后培养提高了应激环境中的益生菌活力

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摘要

In this study, probiotics (Saccharomyces cerevisiae Y235) were entrapped in alginate-chitosan microcapsules by emulsification/internal gelation technique. Two different encapsulation patterns were established as directly entrapped high density cells (dEHDC) and entrapped low density cells with culture (ELDCwc). The performance of microencapsulated cells, with free cells (FC) as control, was investigated against sequential stress environments of freeze-drying, storage, and simulated gastrointestinal fluids. After being freeze-dried without cryoprotectant, the survival rate of ELDCwc (14.33%) was significantly higher than 10.00% of dEHDC, and 0.05% of FC. The lower temperature (-20 °C) and ELDCwc pattern were beneficial for keeping viable cells at 7.00 log CFUg~(-1) after 6 months. Furthermore, the ELDCwc microcapsule maintained viable cells of 6.29 log CFUg~(-1) after incubation in SGF and SIF. These studies demonstrated that the pattern of entrapped low density cells with culture was an effective and superior technique of resisting harmful stress environments.
机译:在这项研究中,益生菌(酿酒酵母Y235)通过乳化/内部凝胶化技术包埋在藻酸盐-壳聚糖微胶囊中。建立了两种不同的封装模式,分别是直接捕获的高密度细胞(dEHDC)和捕获的低密度培养细胞(ELDCwc)。针对冷冻干燥,储存和模拟胃肠液的连续应力环境,研究了以游离细胞(FC)为对照的微囊化细胞的性能。在没有冷冻保护剂的情况下冷冻干燥后,ELDCwc的存活率(14.33%)显着高于dEHDC的10.00%和FC的0.05%。较低的温度(-20°C)和ELDCwc模式有利于6个月后将活细胞保持在7.00 log CFUg〜(-1)。此外,在SGF和SIF中孵育后,ELDCwc微胶囊维持了6.29 log CFUg〜(-1)的活细胞。这些研究表明,通过培养捕获低密度细胞的模式是抵抗有害胁迫环境的有效且优越的技术。

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