Bäumler H, Donath E, Krabi A, Knippel W, Budde A, Kiesewetter H
Institute of Transfusion Medicine and Immunohematology, Medical School Charité, Humboldt University of Berlin, Germany.
Biorheology. 1996 Jul-Oct;33(4-5):333-51. doi: 10.1016/0006-355x(96)00026-1.
A theoretical description of polymer depletion layers near smooth and hairy surfaces is developed and used for interpretation of experiments. Electrophoretic mobility measurements of human red blood cells and platelets in aqueous electrolyte solutions were performed in the presence of dextran (MW = 70 kD) to study the interaction of dextran with the cell surface. The electrophoretic mobility in the presence of dextran was considerably larger than expected from the viscosity. This behavior was interpreted as evidence for the existence of a polymer depletion layer. Depending on ionic strength, depletion layer thicknesses ranging from 2.9 to 4.4 nm were found. The dextran concentration at the outer border of the glycocalyx was only 10% of the bulk value. One cannot exclude the possibility that this small amount reflected adsorption. In the case of platelets, the degree of the mobility reduction depended on ionic strength. Depletion of dextran from the platelet surface apparently became smaller with decreasing ionic strength. This indicated a more complex pattern of interaction of dextran with the platelet surface than with the RBC surface. Both adsorption and polymer penetration into the glycocalyx were discussed quantitatively. It was concluded that ionic strength-dependent penetration of dextran into the hairy layer is more likely than ionic strength dependent adsorption changes. As in the case of red cells, some adsorption of dextran might be present.
本文对光滑表面和有毛表面附近的聚合物耗尽层进行了理论描述,并用于解释实验结果。在葡聚糖(分子量 = 70 kD)存在的情况下,对人类红细胞和血小板在水性电解质溶液中的电泳迁移率进行了测量,以研究葡聚糖与细胞表面的相互作用。在葡聚糖存在下的电泳迁移率比根据粘度预期的要大得多。这种行为被解释为聚合物耗尽层存在的证据。根据离子强度,发现耗尽层厚度在2.9至4.4纳米之间。糖萼外边界处的葡聚糖浓度仅为本体浓度的10%。不能排除这种少量反映吸附的可能性。在血小板的情况下,迁移率降低的程度取决于离子强度。随着离子强度降低,血小板表面葡聚糖的耗尽明显变小。这表明葡聚糖与血小板表面的相互作用模式比与红细胞表面的更复杂。对葡聚糖的吸附和聚合物渗透到糖萼中的情况都进行了定量讨论。得出的结论是,葡聚糖依赖离子强度渗透到有毛层中比依赖离子强度的吸附变化更有可能。与红细胞的情况一样,可能存在一些葡聚糖的吸附。