Improved production of Bacillus subtilis cholesterol oxidase by optimization of process parameters using response surface methodology

被引:0
|
作者
Lotfy, Walid A. [1 ]
Badawy, Hala M. [2 ]
Ghanem, Khaled M. [2 ]
El-Aassar, Samy A. [2 ]
机构
[1] Pharos Univ Alexandria, Fac Dent, Dept Microbiol, Alexandria, Egypt
[2] Alexandria Univ, Fac Sci, Dept Bot & Microbiol, Alexandria, Egypt
关键词
Bacillus subtilis; Box-Behnken design; Cholesterol oxidase; Optimization; Plackett-Burman design; ENHANCED PRODUCTION; ORGANIC-SOLVENT; PURIFICATION; IDENTIFICATION; BIOSYNTHESIS; METABOLISM; DETERGENT; STEROLS;
D O I
10.1186/s43141-023-00576-9
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background Cholesterol oxidase has numerous biomedical and industrial applications. In the current study, a new bacterial strain was isolated from sewage and was selected for its high potency for cholesterol degradation (%) and production of high cholesterol oxidase activity (U/OD600). Results Based on the sequence of 16S rRNA gene, the bacterium was identified as Bacillus subtilis. The fermentation conditions affecting cholesterol degradation (%) and the activity of cholesterol oxidase (U/OD600) of B. subtilis were optimized through fractional factorial design (FFD) and response surface methodology (RSM). According to this sequential optimization approach, 80.152% cholesterol degradation was achieved by setting the concentrations of cholesterol, inoculum size, and magnesium sulphate at 0.05 g/l, 6%, and 0.05 g/l, respectively. Moreover, 85.461 U of cholesterol oxidase/OD600 were attained by adjusting the fermentation conditions at initial pH, 6; volume of the fermentation medium, 15 ml/flask; and concentration of cholesterol, 0.05 g/l. The optimization process improved cholesterol degradation (%) and the activity of cholesterol oxidase (U/OD600) by 139% and 154%, respectively. No cholesterol was detected in the spectroscopic analysis of the optimized fermented medium via gas chromatography-mass spectroscopy (GC-MS). Conclusion The current study provides principal information for the development of efficient production of cholesterol oxidase by B. subtilis that could be used in various applications.
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页数:17
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