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Effect of Low Molecular Weight Dextrans on Erythrocyte Aggregation

机译:低分子量葡聚糖对红细胞聚集的影响

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摘要

Red blood cells (RBCs) can form aggregates of which shape is similar to stack-of-coin-like rouleaux. RBC aggregation is reversible and shear-dependent, thus it becomes a major determinant of shear-dependent nonlinear behavior of blood. It is generally known that high molecular weight polymers such as Dextran 70 and Dextran 500 can induce RBC aggregation, thus they have been widely used to adjust the degree of aggregation. Reversely, low molecular weight polymers (Dextran 10 and Dextran 40) have been reported to have an inhibitory effect on RBC aggregation. Maeda et al. found that the extent of RBC aggregation induced by Dextran 70 was decreased markedly by increasing concentrations of small dextrans (Dextran 10 and Dextran 40). Similarly, Chien and coworkers5 observed a reduction in the aggregation level when Dextran 40 was added to a suspension of human RBCs in Dextran 70-saline solution, which was attributed to augmentation of the RBC surface potential. Recently, our previous study10 with horse blood also reported that Dextran 40 might have an inhibitory effect on RBC aggregation induced by Dextran 500. However, it still remains relatively unclear how a neutral macromolecule like dextrans is capable of altering the surface potential of RBCs. Furthermore, no information has been available on whether or not even smaller dextrans (molecular weight <10 kDa) can provide such an inhibitory effect on aggregation. Thus, the present study utilized Dextran 1 to examine its potential inhibition effect on RBC aggregation induced by Dextran 500.
机译:红细胞(RBC)可以形成聚集体,其形状类似于硬币状的rouleaux。 RBC聚集是可逆的且与剪切有关,因此它成为血液与剪切有关的非线性行为的主要决定因素。众所周知,高分子量聚合物,例如葡聚糖70和葡聚糖500可以诱导RBC聚集,因此它们已被广泛用于调节聚集度。相反,据报道,低分子量聚合物(Dextran 10和Dextran 40)对RBC聚集具有抑制作用。前田等。研究发现,右旋糖酐70诱导的RBC聚集程度通过增加小分子右旋糖酐(右旋糖酐10和右旋糖酐40)的浓度而明显降低。同样,Chien等[5]观察到,当将Dextran 40加入人RBC在Dextran 70盐溶液中的悬浮液时,聚集水平降低,这归因于RBC表面电位的增加。最近,我们先前对马血的研究[10]也报道了葡聚糖40可能对葡聚糖500诱导的RBC聚集具有抑制作用。然而,相对尚不清楚的是,像dextrans这样的中性大分子如何能够改变RBC的表面电势。此外,尚无关于甚至更小的葡聚糖(分子量<10kDa)是否可提供这种对聚集的抑制作用的信息。因此,本研究利用葡聚糖1来检查其对葡聚糖500诱导的RBC聚集的潜在抑制作用。

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