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非理想溶液超速离心法测得的分子量及分子量分布

Molecular weights and molecular-weight distributions from ultracentrifugation of nonideal solutions.

作者信息

Wan P J, Adams E T

出版信息

Biophys Chem. 1976 Jul;5(1-2):207-41. doi: 10.1016/0301-4622(76)80036-1.

Abstract

Ultracentrifugation, membrane osmometry and capillary viscometry experiments have been performed on two dextran samples, which have molecular-weight distributions (MWDs) similar to those of dextrans used as blood plasma extenders. The manufacturer reported values of Mn and MW, determined by end group analysis and by light scattering, respectively. Our values of Mn, determined by osmometry, and MW, calculated from ultracentrifugal and viscometry experiments, agreed quite well with the manufacturer's results. Good agreement was obtained with values of MW and BLS (the light scattering second virial coefficient) obtained from sedimentation equilibrium experiments at different speeds using sector or nonsector-shaped centerpieces. Several ways of obtaining MW, MZ and BLS from sedimentation equilibrium experiments are presented. We have also shown how to obtain the speed-dependent term of the sedimentation equilibrium second virial coefficient. Both BLS and the speed-dependent nonideal terms could be used to correct the sedimentation equilibrium data, so that ideal values of d in c/d(r2) or dc/d(r2) could be estimated and used to obtain the MWDs of the dextran samples. Both Donnelly's and Scholte's methods were used with the sedimentation equilibrium data. With both methods, unimodal MWDs were encountered, which gave good agreement with the manufacturer's MWDs, obtained by a combination of analytical gel chromatography and light scattering. Uncorrected sedimentation equilibrium data gave MWDs quite different from the manufacturer's results. The MWD calculated from the differential distribution of sedimentation coefficients also gave a unimodal MWD, but this MWD did not give a good agreement with the sedimentation equilibrium results or with the manufacturer's results.

摘要

已对两种葡聚糖样品进行了超速离心、膜渗透压测定和毛细管粘度测定实验,这两种样品的分子量分布(MWD)与用作血浆扩容剂的葡聚糖相似。制造商分别报告了通过端基分析和光散射测定的Mn和MW值。我们通过渗透压测定法测定的Mn值以及通过超速离心和粘度测定实验计算得到的MW值与制造商的结果相当吻合。使用扇形或非扇形中心部件在不同速度下进行沉降平衡实验得到的MW和BLS(光散射第二维里系数)值也取得了良好的一致性。本文介绍了从沉降平衡实验中获得MW、MZ和BLS的几种方法。我们还展示了如何获得沉降平衡第二维里系数的速度相关项。BLS和速度相关的非理想项都可用于校正沉降平衡数据,从而可以估计c/d(r2)或dc/d(r2)中d的理想值,并用于获得葡聚糖样品的MWD。唐纳利法和朔尔特法都用于沉降平衡数据。使用这两种方法都遇到了单峰MWD,与通过分析凝胶色谱和光散射相结合获得的制造商的MWD吻合良好。未经校正的沉降平衡数据给出的MWD与制造商的结果有很大不同。根据沉降系数的微分分布计算得到的MWD也给出了单峰MWD,但该MWD与沉降平衡结果或制造商的结果不一致。

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