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Comparative evaluation of bacterial cellulose (nata) as a cryoprotectant and carrier support during the freeze drying process of probiotic lactic acid bacteria

机译:益生菌乳酸菌冷冻干燥过程中作为冷冻保护剂和载体载体的细菌纤维素(nata)的比较评估

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摘要

Nata or bacterial cellulose produced by Acetobacter xylinum was compared for its cryoprotective and carrier support potential for probiotic lactic acid bacteria against other established cryoprotectants like 10% skim milk, calcium alginate encapsulation or 0.85% physiological saline and distilled water. Individual lactic acid bacteria were grown in MRS broth in the presence of nata cubes or the bacterial suspension mixed with either powdered bacterial cellulose (PBC), 10% skim milk, saline or distilled water and freeze dried. These freeze dried cells were stored at temperatures of either 30 degrees C or 4 degrees C and periodically checked for viability. The freeze dried cells on carrier supports were directly used to prepare fermented milks to establish the activity of these cultures. Scanning electron microscopy was employed to visualize the support matrix with the attached lactic acid bacteria. The freeze drying process resulted in a 3.0 log cycle reduction in the colony forming units as compared to the original cell suspension in the case of all the lactic acid bacteria. The growth of lactic acid bacteria in the presence of bacterial cellulose (nata) offers a convenient and easy method to preserve bacteria for short durations and use it as a support to carry out other fermentation processes. (C) 2010 Elsevier Ltd. All rights reserved.
机译:比较了木醋杆菌产生的纳塔氏菌或细菌纤维素对益生菌乳酸菌的冷冻保护和载体支持潜力与其他已建立的冷冻保护剂(如10%脱脂牛奶,藻酸钙胶囊或0.85%生理盐水和蒸馏水)的抗冻性和载体支持能力。单个乳酸菌在有纳豆块或细菌悬浮液与粉状细菌纤维素(PBC),10%脱脂牛奶,盐水或蒸馏水混合的条件下在MRS肉汤中生长,然后冷冻干燥。将这些冷冻干燥的细胞储存在30℃或4℃的温度下,并定期检查其生存力。将载体支持物上的冻干细胞直接用于制备发酵乳,以建立这些培养物的活性。使用扫描电子显微镜使带有附着的乳酸菌的支持基质可视化。与所有乳酸菌情况下的原始细胞悬浮液相比,冷冻干燥过程导致菌落形成单位的菌落形成单位减少了3.0 log周期。在细菌纤维素(nata)的存在下乳酸菌的生长提供了一种方便,容易的方法,可以在短时间内保存细菌并将其用作进行其他发酵过程的支持。 (C)2010 Elsevier Ltd.保留所有权利。

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