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Dynamics of the ceramic ultrafiltration of model proteins with different isoelectric point: Comparison of beta-lactoglobulin and lysozyme

机译:等电点不同的模型蛋白的陶瓷超滤动力学:β-乳球蛋白和溶菌酶的比较

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The study of the electrostatic interactions in the ultrafiltration of single model proteins is an important topic for the biotechnology industry interested in the fractionation of protein mixtures. In this paper, the dynamics of the ultrafiltration of beta-lactoglobulin and lysozyme through a 300 kDa tubular ceramic membrane was investigated. The time evolution of permeate flux and protein transmission were determined at a temperature of 30°C, a cross-flow velocity of 3.5 m/s and a transmembrane pressure of 100kPa. The influence of pH was monitored in the 3-9 interval for beta-lactoglobulin and in the 5-12 interval for lysozyme. The effect of ionic strength was studied by increasing the addition of NaCl up to 15 mM. The curves of permeate flux were discussed according to the resistances in series model. Since beta-lactoglobulin and lysozyme have acid and alkaline isoelectric points, respectively, the results showed different responses with respect to the electrostatic environment.
机译:对单一模型蛋白质进行超滤时的静电相互作用的研究对于感兴趣的蛋白质混合物分级分离的生物技术行业来说是一个重要的课题。本文研究了β-乳球蛋白和溶菌酶通过300 kDa管状陶瓷膜的超滤动力学。在30℃的温度,3.5m / s的错流速度和100kPa的跨膜压力下测定渗透通量和蛋白质传递的时间演变。在3-9间隔内监测β-乳球蛋白的pH值,在5-12间隔内监测溶菌酶的pH值。通过将NaCl的添加量增加到15 mM,研究了离子强度的影响。根据串联模型的阻力,讨论了渗透通量曲线。由于β-乳球蛋白和溶菌酶分别具有酸性和碱性等电点,因此结果显示出对静电环境的不同响应。

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