Neu Björn, Meiselman Herbert J
Department of Physiology and Biophysics, Keck School of Medicine, University of Southern California, 1333 San Pablo Street, MMR 626, Los Angeles, CA 90033, USA.
Biophys J. 2002 Nov;83(5):2482-90. doi: 10.1016/S0006-3495(02)75259-4.
Polymer-induced red blood cell (RBC) aggregation is of current basic science and clinical interest, and a depletion-mediated model for this phenomenon has been suggested; to date, however, analytical approaches to this model are lacking. An approach is thus described for calculating the interaction energy between RBC in polymer solutions. The model combines electrostatic repulsion due to RBC surface charge with osmotic attractive forces due to polymer depletion near the RBC surface. The effects of polymer concentration and polymer physicochemical properties on depletion layer thickness and on polymer penetration into the RBC glycocalyx are considered for 40 to 500 kDa dextran and for 18 to 35 kDa poly (ethylene glycol). The calculated results are in excellent agreement with literature data for cell-cell affinities and with RBC aggregation-polymer concentration relations. These findings thus lend strong support to depletion interactions as the basis for polymer-induced RBC aggregation and suggest the usefulness of this approach for exploring interactions between macromolecules and the RBC glycocalyx.
聚合物诱导的红细胞(RBC)聚集是当前基础科学和临床研究的热点,有人提出了一种基于耗尽作用的该现象模型;然而,迄今为止,针对该模型缺乏分析方法。因此,本文描述了一种计算聚合物溶液中红细胞之间相互作用能的方法。该模型将红细胞表面电荷引起的静电排斥与红细胞表面附近聚合物耗尽产生的渗透吸引力结合起来。对于40至500 kDa的葡聚糖和18至35 kDa的聚乙二醇,考虑了聚合物浓度和聚合物物理化学性质对耗尽层厚度以及聚合物渗透到红细胞糖萼中的影响。计算结果与关于细胞间亲和力的文献数据以及红细胞聚集与聚合物浓度关系的数据高度吻合。这些发现有力地支持了耗尽相互作用是聚合物诱导红细胞聚集的基础,并表明该方法对于探索大分子与红细胞糖萼之间的相互作用具有实用性。