Polson A
Prep Biochem. 1977;7(2):129-54. doi: 10.1080/00327487708061631.
The displacement action of polyethylene glycol of different molecular weights may be linked to the ability of the polymers to form coiled particles in solution. From conclusions drawn from their sedimentating properties in centrifugal fields the polyethylene glycols of low molecular weights, as expected, are less randomly coiled than those of higher molecular weight. It is suggested that protein molecules have the ability to diffuse into the coils of the polyethylene glycol from which they are excluded when the random coiling increases with increasing polymer concentration. From considerations based on the interaction of the polymer filament with the displaced particle the distribution of the substance between the coils and the intermolecular spaces may be predicted semi-quantitatively.
不同分子量聚乙二醇的置换作用可能与聚合物在溶液中形成卷曲颗粒的能力有关。根据从它们在离心场中的沉降特性得出的结论,正如预期的那样,低分子量的聚乙二醇比高分子量的聚乙二醇的无规卷曲程度更低。有人提出,当随着聚合物浓度增加无规卷曲程度增大时,蛋白质分子有能力扩散到聚乙二醇的卷曲中,而它们在聚乙二醇卷曲中是被排斥的。基于聚合物细丝与被置换颗粒之间的相互作用进行考虑,可以半定量地预测该物质在卷曲和分子间空间之间的分布。