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首页> 外文期刊>Applied Microbiology and Biotechnology >Effect of water activity and protective solutes on growth and subsequent survival to air-drying of Lactobacillus and Bifidobacterium cultures
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Effect of water activity and protective solutes on growth and subsequent survival to air-drying of Lactobacillus and Bifidobacterium cultures

机译:水分活度和保护性溶质对乳酸菌和双歧杆菌培养物的生长和风干后存活的影响

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Probiotic cultures of Lactobacillus plantarum, Lactobacillus rhamnosus, Bifidobacterium longum, Lactobacillus casei and Lactobacillus acidophilus were grown in media having water activities (a _w) adjusted between 0.99 and 0.94 with NaCl or with a mixture of glycerol and sucrose in order to find conditions of osmotic stress which would still allow for good growth. Cultures grown at a _w00.96 or 0.99 were then recovered by centrifugation, added to a sucrose- phosphate medium and air-dried. In some assays, a 2-h osmotic stress was applied to the cell concentrate prior to air-drying. Assays were also carried out where betaine, glutamate and proline (BGP) supplements were added as protective compounds to the growth or drying media. For most strains, evidence of osmotic stress and benefits of BGP supplementation on growth occurred at a _w00.96. Growing the cells in complex media adjusted at a _w00.96 did not enhance their subsequent survival to air-drying, but applying the 2-h osmotic stress did. Addition of the BGP supplements to the growth medium or in the 2-h stress medium did not enhance survival to air-drying. Furthermore, addition of BGP to a sucrose-phosphate drying medium reduced survival of the cultures to air-drying. This study provides preliminary data for producers of probiotics who wish to use air-drying in replacement of freeze-drying for the stabilization of cultures.
机译:用NaCl或甘油和蔗糖的混合物将水分活度(_w)调节在0.99至0.94之间的培养基中培养植物乳杆菌,鼠李糖乳杆菌,长双歧杆菌,干酪乳杆菌和嗜酸乳杆菌的益生菌培养物,以发现渗透条件压力,仍然可以保持良好的增长。然后通过离心回收以_w00.96或0.99生长的培养物,将其加入蔗糖-磷酸酯培养基中并风干。在某些测定中,在风干之前​​对细胞浓缩液施加2小时的渗透压。还进行了将甜菜碱,谷氨酸和脯氨酸(BGP)补充剂作为保护性化合物添加至生长或干燥培养基的试验。对于大多数菌株而言,渗透压和BGP补充对生长有益的证据发生在_w00.96。使细胞在调整为_w00.96的复杂培养基中生长不会提高其随后的风干存活率,但是施加2小时的渗透胁迫确实可以提高。在生长培养基中或在2小时胁迫培养基中添加BGP补充剂不会增加空气干燥的存活率。此外,在蔗糖-磷酸盐干燥培养基中添加BGP会降低培养物风干的存活率。该研究为希望使用风干代替冷冻干燥以稳定培养物的益生菌生产者提供了初步数据。

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