Chien S, Kaperonis A A, King R G, Lipowsky H H, Schmalzer E A, Sung L A, Sung K L, Usami S
Prog Clin Biol Res. 1987;240:151-65.
The alterations in the viscoelastic properties of the hemoglobin S solution following deoxygenation can be correlated, on the one hand, with the gelation of the HbS molecules and, on the other hand, with changes in the rheological behavior of the deoxygenated SS erythrocytes. The abnormal rheology of SS erythrocytes forms the basis of their altered flow behavior through filter pores in vitro and microcirculation in vivo. The results support the notion that the rheological behavior of sickle cells is an important link between the molecular events in hemoglobin S following deoxygenation and the behavior of the cell in the microcirculation. Although recent advances have shed considerable lights on the rheology of sickle cells in a variety of conditions, further studies are needed in order to elucidate the pathophysiological role of cell rheology in this disease, especially in terms of the influence of individual SS cells in the heterogeneous populations and the correlation between in vitro and in vivo behavior of SS cells.
脱氧后血红蛋白S溶液粘弹性特性的改变,一方面可与HbS分子的凝胶化相关,另一方面可与脱氧的SS红细胞流变行为的变化相关。SS红细胞异常的流变学构成了其在体外通过滤孔及在体内微循环中流动行为改变的基础。这些结果支持了这样一种观点,即镰状细胞的流变行为是脱氧后血红蛋白S分子事件与细胞在微循环中行为之间的重要联系。尽管最近的进展使人们对多种条件下镰状细胞的流变学有了相当多的了解,但仍需要进一步研究以阐明细胞流变学在这种疾病中的病理生理作用,特别是在异质群体中单个SS细胞的影响以及SS细胞体外和体内行为之间的相关性方面。