Baskurt O K, Bor-Kucukatay M, Yalcin O, Meiselman H J
Department of Physiology, Akdeniz University School of Medicine, Antalya, Turkey.
Biorheology. 2000;37(5-6):417-28.
Differences of red blood cell (RBC) aggregation among various mammalian species has been previously reported for whole blood, for RBC in autologous plasma, and for washed RBC re-suspended in polymer solutions. The latter observation implies the role of cellular factors, yet comparative studies of such factors are relatively limited. The present study thus investigated RBC aggregation and RBC electrophoretic mobility (EPM) for guinea pigs, rabbits, rats, humans and horses; RBC were re-suspended in isotonic 500 kDa dextran solutions for the EPM and aggregation measurements, with aggregation studies also done in autologous plasma. Salient results included: (1) species-specific RBC aggregation in both plasma and dextran (horse > human > rat > rabbit approximately = guinea pig) with a significant correlation between aggregation in the two media; (2) similar EPM values in PBS for rat, human and horse, a lower value for guinea pig, and a markedly reduced EPM for rabbit RBC; (3) EPM values in dextran with a rank order identical to that for cells in PBS; (4) relative EPM results indicating formation of a polymer-poor, low viscosity depletion layer at the RBC surface (greatest depletion for horse RBC). EPM-aggregation correlations were evident and generally consistent with the Depletion Model for aggregation, yet did not fully explain differences between species; additional studies at various ionic strengths and with various dextran fractions thus seem warranted.
先前已有报道指出,不同哺乳动物物种的全血、自体血浆中的红细胞(RBC)以及重悬于聚合物溶液中的洗涤红细胞的红细胞聚集存在差异。后一项观察结果暗示了细胞因子的作用,但对此类因子的比较研究相对有限。因此,本研究调查了豚鼠、兔子、大鼠、人类和马的红细胞聚集和红细胞电泳迁移率(EPM);将红细胞重悬于等渗的500 kDa葡聚糖溶液中进行EPM和聚集测量,同时也在自体血浆中进行聚集研究。主要结果包括:(1)血浆和葡聚糖中均存在物种特异性的红细胞聚集(马>人类>大鼠>兔子≈豚鼠),且两种介质中的聚集之间存在显著相关性;(2)大鼠、人类和马的红细胞在PBS中的EPM值相似,豚鼠的EPM值较低,而兔子红细胞的EPM则明显降低;(3)红细胞在葡聚糖中的EPM值排序与在PBS中的细胞排序相同;(4)相对EPM结果表明在红细胞表面形成了聚合物贫乏、低粘度的耗尽层(马红细胞的耗尽程度最大)。EPM与聚集之间的相关性明显,且总体上与聚集的耗尽模型一致,但并未完全解释物种之间的差异;因此,似乎有必要在不同离子强度和使用不同葡聚糖级分的情况下进行进一步研究。