首页> 外文期刊>Journal of Chromatography, Biomedical Applications >Diffusion of lysozme in gels and liquids A general approach for the determiantion of diffusion coefficients using holographic laser interferometry
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Diffusion of lysozme in gels and liquids A general approach for the determiantion of diffusion coefficients using holographic laser interferometry

机译:凝胶和液体中溶菌酶的扩散使用全息激光干涉法测定扩散系数的通用方法

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摘要

A study on diffusion measurements of the protein lysozyme in liquids and agarose gels, at different pH and ionic strengths, has been performed using holographic laser interferometry .The measurements showed that the diffusive flux was very dependent on pH and ionic strength when the protein was not at its isoelectric point or when the charge of the lysozyme molecules was not screened by ions in the solution. Evaluation of the experimental data with Fick's law, resulted in diffusion coefficients for lysozyme that are strongly dependent on pH and ionic strength. Evaluation of the experimental data using a more general transport model, based on chemical potential gradients instead of concentration gradients resulted in lysozyme diffusion coefficients that are independent of pH and ionic strength. The chemical potential was estimated by using the Poisson-Boltzmann equation.
机译:用全息激光干涉法研究了在不同pH和离子强度下液体和琼脂糖凝胶中蛋白质溶菌酶的扩散测量结果,测量结果表明当蛋白质不溶于水时,扩散通量非常依赖于pH和离子强度。在其等电点或溶菌酶分子的电荷未被溶液中的离子筛选时。用菲克定律对实验数据进行评估,得出溶菌酶的扩散系数与pH和离子强度密切相关。基于化学势梯度而不是浓度梯度,使用更通用的传输模型对实验数据进行评估,得出的溶菌酶扩散系数与pH和离子强度无关。通过使用泊松-玻耳兹曼方程估算化学势。

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