Alkhamis T M, Beissinger R L, Chediak J R
Department of Chemical Engineering, Illinois Institute of Technology, Chicago 60616.
Blood. 1990 Apr 1;75(7):1568-75.
Red blood cell (RBC) effects on platelet adhesion to a nonbiologic test surface (tetrafluoroethylene propylene copolymer) and platelet aggregation during laminar shear flow for shear rates to 5,680 s-1 (corresponding to shear stress to 200 dyne/cm2) were investigated. Results on hemoglobin (Hb) and adenosine diphosphate (ADP) release from RBCs, percent decrease of single platelets in the bulk, and percent of test surface covered with platelets were obtained in a cone-and-plate (CP) viscometer for samples of whole blood, suspensions of RBC ghosts in platelet-rich plasma (PRP), and suspensions of RBCs in either PRP or platelet-poor plasma. Results obtained over the shear rate range studied for samples of normal hematocrit indicated that low-stress shearing led to ADP and Hb release from intact RBCs; shear-induced release of ADP from RBCs was about twice that of platelets, and of the total ADP released, the ADP released from RBCs contributed about six times that of the platelets to single platelet reduction in the bulk and about twice that of the platelets to platelet adhesion, ie, coverage of the test surface with platelets. Results obtained for various hematocrits showed that above a threshold hematocrit of about 25% to 35% the RBCs (suspended in PRP) had a greater contribution to ADP release, platelet adhesion, and platelet aggregation than the platelets themselves. Single platelet reduction for samples of RBC ghosts suspended in PRP correlated with shear rate level and not with shear stress.
研究了红细胞(RBC)对血小板在非生物测试表面(四氟乙烯丙烯共聚物)上的黏附以及在层流剪切流中剪切速率高达5680 s-1(对应剪切应力达200达因/平方厘米)时血小板聚集的影响。在锥板(CP)粘度计中,针对全血样本、富含血小板血浆(PRP)中的红细胞影悬液以及PRP或贫血小板血浆中的红细胞悬液,获得了关于红细胞血红蛋白(Hb)和二磷酸腺苷(ADP)释放、大量单个血小板减少百分比以及测试表面血小板覆盖百分比的结果。对正常血细胞比容样本在所研究的剪切速率范围内获得的结果表明,低应力剪切导致完整红细胞释放ADP和Hb;剪切诱导的红细胞ADP释放量约为血小板的两倍,在释放的总ADP中,红细胞释放的ADP对大量单个血小板减少的贡献约为血小板的六倍,对血小板黏附(即测试表面的血小板覆盖)的贡献约为血小板的两倍。对不同血细胞比容获得的结果表明,高于约25%至35%的阈值血细胞比容时,(悬浮在PRP中的)红细胞对ADP释放、血小板黏附和血小板聚集的贡献比血小板本身更大。悬浮在PRP中的红细胞影样本的单个血小板减少与剪切速率水平相关,而与剪切应力无关。