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Preservation of Bacillus firmus Strain 37 and Optimization of Cyclodextrin Biosynthesis by Cells Immobilized on Loofa Sponge

机译:固定化丝瓜海绵细胞的牢固芽孢杆菌37菌株的保存和环糊精生物合成的优化

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摘要

The preservation of Bacillus firmus strain 37 cells by lyophilization was evaluated and response surface methodology (RSM) was used to optimize the β-cyclodextrin (β-CD) production by cells immobilized on loofa sponge. Interactions were studied with the variables temperature, pH and dextrin concentration using a central composite design (CCD). Immobilization time influence on β-CD production was also investigated. B. firmus strain 37 cells remained viable after one year of storage, showing that the lyophilization is a suitable method for preservation of the microorganism. From the three-dimensional diagrams and contour plots, the best conditions for β-CD production were determined: temperature 60 °C, pH 8, and 18% dextrin. Considering that the amount of dextrin was high, a new assay was carried out, in which dextrin concentrations of 10, 15, and 18% were tested and the temperature of 60 °C and pH 8 were maintained. The results achieved showed very small differences and therefore, for economic reasons, the use of 10% dextrin is suggested. Increasing the immobilization time of cells immobilized on synthetic sponge the β-CD production decreased and did not change for cells immobilized on loofa sponge. The results of this research are important for microorganism preservation and essential in the optimization of the biosynthesis of CD.
机译:评价了冻干的芽孢杆菌牢固菌株37细胞的保存,并使用响应表面方法(RSM)优化了固定在loofa海绵上的细胞产生的β-环糊精(β-CD)。使用中央复合设计(CCD)研究了变量,温度,pH和糊精浓度之间的相互作用。还研究了固定时间对β-CD产生的影响。贮藏一年后,牢固的芽孢杆菌菌株37细胞保持活力,这表明冻干是保存微生物的合适方法。根据三维图和轮廓图,确定了生产β-CD的最佳条件:温度为60°C,pH为8,糊精为18%。考虑到糊精含量高,进行了新的测定,其中糊精浓度分别为10%,15%和18%,温度保持在60°C和pH 8。所获得的结果显示出很小的差异,因此,出于经济原因,建议使用10%的糊精。固定在合成海绵上的细胞的固定时间增加,β-CD的产生减少,并且对于固定在loofa海绵上的细胞没有改变。这项研究的结果对于微生物的保存很重要,对于CD的生物合成的优化至关重要。

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