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首页> 外文期刊>Biotechnology and Applied Biochemistry >Immobilization of Bacillus amyloliquefaciens MBL27 cells for enhanced antimicrobial protein production using calcium alginate beads
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Immobilization of Bacillus amyloliquefaciens MBL27 cells for enhanced antimicrobial protein production using calcium alginate beads

机译:使用藻酸钙珠粒固定化解淀粉芽孢杆菌MBL27细胞以增强抗菌蛋白的生产

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摘要

Cell immobilization is one of the common techniques for increasing the overall cell concentration and productivity. Bacillus amyloliquefaciens MBL27 cells were immobilized in calcium alginate beads and it is a promising method for repeated AMP (antimicrobial protein) production. The present study aimed at determining the optimal conditions for immobilization of B. amyloliquefaciens MBL27 cells in calcium alginate beads and the operational stability for enhanced production of the AMP. AMP production with free and immobilized cells was also done. In batch fermentation, maximum AMP production (7300 AU (arbitrary units)/ml against Staphylococcus aureus) was obtained with immobilized cells in shake flasks under optimized parameters such as 3% (w/v) sodium alginate, 136 mM CaCl2 with 350 alginate beads/flask of 2.7-3.0 mm diameter. In repeated cultivation, the highest activity was obtained after the second cycle of use and approx. 94% production was noted up to the fifth cycle. The immobilized cells of B. amyloliquefaciens MBL27 in alginate beads are more efficient for the production of AMP and had good stability. The potential application of AMP as a wound healant and the need for development of economical methods for improved production make whole cell immobilization an excellent alternative method for enhanced AMP production.
机译:细胞固定化是提高总细胞浓度和生产率的常用技术之一。淀粉芽孢杆菌MBL27细胞被固定在藻酸钙珠粒中,这是重复生产AMP(抗菌蛋白)的一种有前途的方法。本研究旨在确定在藻酸钙珠粒中固定解淀粉芽孢杆菌MBL27细胞的最佳条件以及提高AMP产量的操作稳定性。还进行了游离和固定化细胞的AMP生产。在分批发酵中,固定化的细胞在优化的参数(例如3%(w / v)海藻酸钠,136 mM CaCl2和350个海藻糖珠)下,用摇瓶固定化细胞可获得最大AMP产量(对金黄色葡萄球菌为7300 AU(任意单位)/ ml)。 /瓶直径2.7-3.0毫米。在重复培养中,在第二个使用周期后获得了最高的活性,大约到第五个周期为止,记录到94%的产量。在藻酸盐珠粒中固定化解淀粉芽孢杆菌MBL27的细胞对于生产AMP更有效并且具有良好的稳定性。 AMP作为伤口愈合剂的潜在应用以及对开发提高产量的经济方法的需求,使全细胞固定化成为提高AMP产量的绝佳替代方法。

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