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Microencapsulated Lactobacillus rhamnosus GG Powders: Relationship of Powder Physical Properties to Probiotic Survival during Storage

机译:微囊化鼠李糖乳杆菌GG粉末:粉末物理性质与储存过程中益生菌存活的关系

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摘要

Freeze-dried commercial Lactobacillus rhamnosus GG (LGG) were encapsulated in an emulsion-based formulation stabilized by whey protein and resistant starch and either spray-dried or freeze-dried to produce probiotic microcapsules. There was no difference in loss of probiotics viability after spray drying or freeze drying. Particle size, morphology, moisture sorption, and water mobility of the powder microcapsules were examined. Particle size analysis and scanning electron microscopy showed that spray-dried LGG microcapsules (SDMC) were small spherical particles, whereas freeze-dried LGG microcapsules (FDMC) were larger nonspherical particles. Moisture sorption isotherms obtained using dynamic vapor sorption showed a slightly higher water uptake in spray-dried microcapsules. The effect of water mobility, as measured by nuclear magnetic resonance (NMR.) spectroscopy, at various water activities (a_w 0.32, 0.57, and 0.70) and probiotic viability during storage at 25 ℃ was also examined. Increasing the relative humidity of the environment at which the samples were stored caused an increase in water mobility and the rate of loss in viability. The viability data during storage indicated that SDMC had better storage stability compared to FDMC. Although more water was adsorbed for spray-dried than freeze-dried microcapsules, water mobility was similar for corresponding storage conditions because there was a stronger water-binding energy for spray-dried microcapsule. This possibly accounted for the improved survival of probiotics in spray-dried microcapsules.
机译:将冷冻干燥的商业鼠李糖乳杆菌GG(LGG)封装在乳清蛋白配方中,该配方由乳清蛋白和抗性淀粉稳定,然后喷雾干燥或冷冻干燥以生产益生菌微胶囊。喷雾干燥或冷冻干燥后,益生菌活力丧失没有差异。检查了粉末微胶囊的粒径,形态,吸湿性和水迁移率。粒度分析和扫描电子显微镜显示,喷雾干燥的LGG微胶囊(SDMC)是小的球形颗粒,而冷冻干燥的LGG微胶囊(FDMC)是较大的非球形颗粒。使用动态蒸汽吸附获得的水分吸附等温线显示,喷雾干燥的微胶囊中的吸水率略高。还研究了通过核磁共振波谱法测量的水分迁移率在25°C下贮藏期间各种水分活度(a_w 0.32、0.57和0.70)和益生菌生存力的影响。存储样品的环境的相对湿度增加导致水流动性增加和生存能力降低。存储期间的生存力数据表明,SDMC与FDMC相比具有更好的存储稳定性。尽管喷雾干燥的微囊比冻干的微囊吸附了更多的水,但是对于相应的储存条件,水的流动性相似,因为喷雾干燥的微囊具有更强的水结合能。这可能是益生菌在喷雾干燥微胶囊中存活率提高的原因。

著录项

  • 来源
    《Journal of Food Science》 |2010年第9期|p.E588-E595|共8页
  • 作者单位

    CSIRO Food Futures & CSIRO Preventative Health Flagships and located at CSIRO Div. of Food and Nutritional Sciences, Private Bag 16, Werribee, VIC 3030, Australia;

    rnCSIRO Food Futures & CSIRO Preventative Health Flagships and located at CSIRO Div. of Food and Nutritional Sciences, Private Bag 16, Werribee, VIC 3030, Australia;

    rnCSIRO Food Futures & CSIRO Preventative Health Flagships and located at CSIRO Div. of Food and Nutritional Sciences, Private Bag 16, Werribee, VIC 3030, Australia;

    rnCSIRO Food Futures & CSIRO Preventative Health Flagships and located at CSIRO Div. of Food and Nutritional Sciences, Private Bag 16, Werribee, VIC 3030, Australia;

    rnCSIRO Materials Science and Engineering, Private Bag 33, Clayton South MDC VIC 3169,Australia;

    rnCSIRO Food Futures & CSIRO Preventative Health Flagships and located at CSIRO Div. of Food and Nutritional Sciences, Private Bag 16, Werribee, VIC 3030, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    freeze drying; lactobacillus rhamnosus GG; microencapsulation; probiotic; spray drying;

    机译:冷冻干燥鼠李糖乳杆菌GG;微囊化益生菌喷雾干燥;

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