Chien S, King R G, Kaperonis A A, Usami S
Blood Cells. 1982;8(1):53-64.
The quantitative relationship between deoxygenation and rheological behavior of SS cell suspensions and concentrated HbS solutions has been studied under steady shear (viscosity eta) and oscillatory shear (complex viscosity with viscous component eta' and elastic component eta"). decrease of O2 saturation below 80-85% causes eta, eta' and eta" to increase progressively in SS cell suspensions and HbS solutions. These rheological parameters do not change in AA cell suspensions and HbA solutions following deoxygenation. The deoxygenation-induced increase in eta" of HbS solutions from the unmeasurable level when oxygenated reflects the gelation of HbS. At high O2 saturations, the rheological behavior of the intracellular fluid has relatively insignificant contribution to that of the SS cell suspension. As O2 saturation decreases, the viscoelastic properties of the SS cell suspension become increasingly dominated by that of the intracellular HbS. at a given degree of deoxygenation, eta, eta' and eta" of HbS solutions decrease with increasing shear rate, indicating that HbS aggregates can be dispersed by shear stress.
在稳定剪切(粘度η)和振荡剪切(具有粘性成分η'和弹性成分η''的复数粘度)条件下,研究了镰状细胞贫血(SS)细胞悬液和浓缩血红蛋白S(HbS)溶液的脱氧与流变行为之间的定量关系。在SS细胞悬液和HbS溶液中,氧气饱和度降至80%-85%以下会导致η、η'和η''逐渐增加。在脱氧后,AA细胞悬液和血红蛋白A(HbA)溶液中的这些流变学参数没有变化。脱氧导致HbS溶液的η''从氧合时不可测量的水平增加,这反映了HbS的凝胶化。在高氧饱和度下,细胞内液的流变行为对SS细胞悬液的流变行为贡献相对较小。随着氧饱和度降低,SS细胞悬液的粘弹性特性越来越受细胞内HbS的主导。在给定的脱氧程度下,HbS溶液的η、η'和η''随剪切速率增加而降低,表明HbS聚集体可被剪切应力分散。