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Effective Immobilization of Agrobacterium sp. IFO 13140 Cells in Loofa Sponge for Curdlan Biosynthesis

机译:有效固定农杆菌。丝瓜海绵中的IFO 13140细胞用于Curdlan生物合成

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摘要

Curdlan production by Agrobacterium sp. IFO13140 immobilized on loofa sponge, alginate and loofa sponge with alginate was investigated. There was no statistically-significant difference in curdlan production when the microorganism was immobilized in different matrices. The loofa sponge was chosen because of its practical application and economy and because it provides a high stability through its continued use. The best conditions for immobilization on loofa sponge were 50 mg of cell, 200 rpm and 72 h of incubation, which provided a curdlan production 1.50-times higher than that obtained by free cells. The higher volumetric productivity was achieved by immobilized cells (0.09 g/L/h) at 150 rpm. The operating stability was evaluated, and until the fourth cycle, immobilized cells retained 87.40% of the production of the first cycle. The immobilized cells remained active after 300 days of storage at 4 °C. The results of this study demonstrate success in immobilizing cells for curdlan biosynthesis, making the process potentially suitable for industrial scale-up. Additional studies may show a possible contribution to the reduction of operating costs.
机译:农杆菌属的柯德兰生产。研究了将IFO13140固定在牙垢海绵,藻酸盐和含藻酸盐的牙垢海绵上的方法。当微生物固定在不同基质中时,凝胶多糖的生产没有统计学上的显着差异。选择loofa海绵是因为其实际应用和经济性,并且因为它通过持续使用提供了很高的稳定性。固定在loofa海绵上的最佳条件是50 mg细胞,200 rpm和72 h孵育,这提供的凝胶多糖产量比游离细胞高1.5倍。通过以150 rpm的转速固定细胞(0.09 g / L / h),可获得更高的体积生产率。评估了操作稳定性,直到第四个循环,固定化细胞保留了第一个循环产量的87.40%。在4°C下保存300天后,固定的细胞仍然保持活性。这项研究的结果表明,成功地将细胞固定用于凝胶多糖的生物合成,使该工艺潜在地适合于工业规模放大。进一步的研究可能显示出对降低运营成本的可能贡献。

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