Barshtein G, Tamir I, Yedgar S
Department of Biochemistry, Hebrew University-Hadassah Medical School, Jerusalem, Israel.
Eur Biophys J. 1998;27(2):177-81. doi: 10.1007/s002490050124.
The velocity of rouleaux formation (RF), as previously shown, increases with increasing dextran concentration up to a critical concentration (Ca), beyond which the addition of dextran reduces the RF velocity (RFV). de Gennes' model for polymer solutions suggests that dextrans exist in two conformations: a coil structure at low concentrations, which changes to a network beyond a critical concentration (C*). In the present study we examined the relation between Ca and C* for dextrans of different molecular weight, and found that they coincide. This suggests that the change in dextran behavior, from increasing to decreasing RFV, occurs when their conformation changes from coil to network. In addition, it has been reported that in dilute dextran solutions the intercellular distance (D) between RBC in rouleaux increases with the molecular weight of the dextran. We found that D correlates with Rf, the end-to-end distance of the polymer molecule, and for all dextrans D < or = 1.5 Rf. In accord with de Gennes' Model for polymers between surfaces, this corresponds to intercellular interaction with two overlapping surface-associated polymer layers, which may extend "tails" to interact with the opposing cells.
如前所示,红细胞缗钱状形成(RF)的速度随着葡聚糖浓度的增加而增加,直至达到临界浓度(Ca),超过此浓度后,添加葡聚糖会降低RF速度(RFV)。德热纳的聚合物溶液模型表明,葡聚糖存在两种构象:低浓度时为卷曲结构,超过临界浓度(C*)时转变为网络结构。在本研究中,我们研究了不同分子量葡聚糖的Ca与C*之间的关系,发现它们是一致的。这表明,当葡聚糖的构象从卷曲变为网络时,其行为会发生从增加RFV到降低RFV的变化。此外,据报道,在稀葡聚糖溶液中,缗钱状红细胞间的细胞间距离(D)随葡聚糖分子量的增加而增加。我们发现D与聚合物分子的端到端距离Rf相关,并且对于所有葡聚糖,D≤1.5Rf。根据德热纳的表面间聚合物模型,这对应于细胞间通过两个重叠的表面相关聚合物层进行相互作用,这两个聚合物层可能会伸出“尾巴”与相对的细胞相互作用。