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温度对丝状绿僵菌中环抱素A提取动力学及扩散系数的影响

Effect of temperature on the extraction kinetics and diffusivity of Cyclosporin A in the fungus Tolypocladium inflatum.

作者信息

Ly May, Margaritis Argyrios

机构信息

Department of Chemical and Biochemical Engineering, Faculty of Engineering, University of Western Ontario, London, Ontario, Canada N6A 5B9.

出版信息

Biotechnol Bioeng. 2007 Apr 1;96(5):945-55. doi: 10.1002/bit.21198.

Abstract

The influence of temperature on the extraction kinetics of Cyclosporin A (CyA) from the mycelia of Tolypocladium inflatum was examined in this study. The extraction of CyA from mycelia was performed in a 2-L stirred, baffled vessel using 30% v/v aqueous methanol. The temperature range used was from 5 to 45 degrees C. A linear relationship was found between the extraction yield of CyA and temperature. As the temperature increased, the yield of CyA increased with a maximum CyA yield of 18.3% obtained at 45 degrees C, which is 21.3% higher than the yield at 25 degrees C. The activation energy for the extraction of CyA from T. inflatum was found to be 36.7 kJ/mol, which indicates that the extraction of CyA from T. inflatum is controlled by both solubilization of CyA and diffusion of CyA through the solid phase of mycelia. The overall mass transfer coefficient, k(L)a(S), was found to increase from 1.02 x 10(-3) to 1.34 x 10(-2) s(-1) as the temperature increased from 5 to 45 degrees C. The effective diffusivity of CyA in the solid matrix of mycelia was found to increase from 1.05 x 10(-15) to 1.43 x 10(-14) m(2)/s as the temperature increased from 5 to 45 degrees C. A mathematical diffusion model was developed and was used to fit the experimental kinetic data of CyA extraction and determination of CyA effective diffusivities at different temperatures. This is the first time CyA diffusivities as a function of extraction temperature are reported in the literature.

摘要

本研究考察了温度对从Inflatum拟青霉菌丝体中提取环孢菌素A(CyA)动力学的影响。使用30%(v/v)甲醇水溶液,在一个2升带搅拌、带挡板的容器中从菌丝体中提取CyA。所用温度范围为5至45摄氏度。发现CyA的提取产率与温度之间存在线性关系。随着温度升高,CyA的产率增加,在45摄氏度时获得的最大CyA产率为18.3%,比25摄氏度时的产率高21.3%。从Inflatum拟青霉中提取CyA的活化能为36.7 kJ/mol,这表明从Inflatum拟青霉中提取CyA受CyA的溶解和CyA通过菌丝体固相的扩散共同控制。发现总传质系数k(L)a(S)随着温度从5摄氏度升高到45摄氏度从1.02×10⁻³增加到1.34×10⁻² s⁻¹。发现随着温度从5摄氏度升高到45摄氏度,CyA在菌丝体固体基质中的有效扩散系数从1.05×10⁻¹⁵增加到1.43×10⁻¹⁴ m²/s。建立了一个数学扩散模型,并用于拟合CyA提取的实验动力学数据以及测定不同温度下CyA的有效扩散系数。这是文献中首次报道CyA扩散系数作为提取温度的函数。

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