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Effect of the carrier material, drying technology and dissolution media on the viability of Lactobacillus fermentum K73 during simulated gastrointestinal transit

机译:载体材料,干燥技术和溶出介质对模拟胃肠道乳杆菌Cermentum K73活力的影响

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摘要

The goal of this study was to determine the effect of the carrier material, drying technology and dissolution media during the passage of L. fermentum K73 through a dynamic in vitro digestion system (IViDiS). The carrier materials were (i) culture medium with growing micro-organisms and (ii) culture medium with maltodextrin : sweet whey [0.6 : 0.4]. The carrier materials were dried by spray-drying and freeze-drying to obtain four types of powders. The dissolution media consisted of water and 1% fat milk. The powders were tested using an in vitro dynamic digestion system (IViDiS). The results showed that powders derived from culture medium had the highest protective effect on the viability of L. fermentum K73 in both dissolution media and that survival increased when the powders were tested in milk. The modified Gompertz model was used to model L. fermentum K73 behaviour during the digestion process. The model showed that cells entrapped in culture medium had the longest lag phase and the slowest inactivation rate when evaluated in milk.
机译:本研究的目的是通过动态的体外消化系统(IVIVITIS)来确定载体材料,干燥技术和溶出介质在L.Fermentum K73通过期间的影响。载体材料是(i)培养基,具有生长的微生物和(II)培养基,麦芽糖糊精:甜乳清[0.6:0.4]。通过喷雾干燥和冷冻干燥载体材料,得到四种类型的粉末。溶出培养基由水和1%的脂肪乳组成。使用体外动态消化系统(IVIVITIS)测试粉末。结果表明,衍生自培养基的粉末对溶解介质的L.Fermentum K73的活力具有最高的保护作用,并且当粉末在牛奶中测试粉末时,存活率增加。改性的Gompertz模型用于在消化过程中模拟L.Fermentum K73行为。该模型表明,在牛奶中评估时,捕获在培养基中的细胞具有最长的滞后阶段和最严重的灭活率。

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    《Food & Function》 |2020年第3期|共10页
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  • 正文语种 eng
  • 中图分类 食品工业;
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