Harding S E, Johnson P
Biochem J. 1985 Nov 1;231(3):543-7. doi: 10.1042/bj2310543.
Theories concerning the concentration-dependence of sedimentation and diffusion coefficients for macro-molecules in dilute solution are compared and discussed, together with their experimental basis. An attempt has been made to clarify an important uncertainty still present in the literature as to whether sedimentation coefficients should be corrected for solvent or solution density. It is pointed out that the two processes yield the same extrapolation limit but different concentration-dependencies, which have, however, been related. A general expression is derived thermodynamically for the concentration-dependence of diffusion that includes the coefficient of the concentration term involved in sedimentation (on the basis of sedimentation coefficients corrected from solution density). For rigid spherical particles the expression is shown to be exactly equivalent to one given by Batchelor [(1976) J. Fluid Mech. 74, 1-29], which was derived on the basis of sedimentation coefficients corrected from solvent density. Finally, we discuss the concentration-dependence of apparent weight-average relative molecular masses ('molecular weights') (from, e.g., sedimentation equilibrium) and note an important omission in some earlier representations.
本文对稀溶液中大分子沉降系数和扩散系数浓度依赖性的相关理论及其实验依据进行了比较和讨论。文中试图澄清文献中关于沉降系数是否应针对溶剂或溶液密度进行校正这一仍然存在的重要不确定性。需要指出的是,这两种方法得出相同的外推极限,但浓度依赖性不同,不过二者是相关的。基于溶液密度校正后的沉降系数,从热力学角度推导出了扩散浓度依赖性的通用表达式,其中包含沉降过程中浓度项的系数。对于刚性球形颗粒,该表达式被证明与Batchelor [(1976) J. Fluid Mech. 74, 1 - 29]给出的表达式完全等效,后者是基于溶剂密度校正后的沉降系数推导得出的。最后,我们讨论了表观重均相对分子质量(“分子量”)(例如来自沉降平衡)的浓度依赖性,并指出了一些早期表述中的一个重要疏漏。