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首页> 外文期刊>Journal of Biotechnology >Application of response surface methodology to the modeling of alpha-amylase purification by aqueous two-phase systems
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Application of response surface methodology to the modeling of alpha-amylase purification by aqueous two-phase systems

机译:响应面法在水两相系统纯化α-淀粉酶建模中的应用

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摘要

Mathematical models concerning the purification of alpha-amylase from the cultivation supernatant of Bacillus subtilis in a polyethylene glycol-citrate aqueous two-phase system (ATP) are established with response surface methodology. The PEG3350, citrate and sodium chloride concentrations were selected as variables to evaluate the purification impact factors in aqueous two-phase system, including partition coefficients of alpha-amylase, total protein, purification factor and alpha-amylase yield. An experimental space with two-fold purification and over 90% yield of alpha-amylase is achieved through the optimized condition basing on the model. Two systems with low viscosity within said space were further selected to perform alpha-amylase purification and the experimental results coincide well with the calculation of the models, which indicates that the model provides a promising tool for experimental design of protein purification by aqueous two-phase system.
机译:利用响应面分析法建立了关于从枯草芽孢杆菌培养上清液在聚柠檬酸乙二醇水两相系统(ATP)中纯化α-淀粉酶的数学模型。选择PEG3350,柠檬酸盐和氯化钠浓度作为变量,以评估水性两相系统中的纯化影响因子,包括α-淀粉酶的分配系数,总蛋白,纯化因子和α-淀粉酶的得率。通过基于模型的优化条件,可以实现具有两倍纯化和超过90%的α-淀粉酶收率的实验空间。进一步选择了在所述空间内具有低粘度的两个系统进行α-淀粉酶的纯化,实验结果与模型的计算吻合良好,这表明该模型为水两相蛋白纯化的实验设计提供了有希望的工具。系统。

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