Role and initiation mechanism of the interaction of glycoprotein Ib with surface-immobilized von Willebrand factor in a solid-phase platelet cohesion process

被引:20
作者
Tsuji, S
Sugimoto, M
Kuwahara, M
Nishio, K
Takahashi, Y
Fujimura, Y
Ikeda, Y
Yoshioka, A
机构
[1] NARA MED UNIV,DEPT PEDIAT,KASHIHARA,NARA 634,JAPAN
[2] NARA MED UNIV,DEPT EMERGENCY & CRIT CARE MED,NEONATAL INTENS CARE UNIT,KASHIHARA,NARA 634,JAPAN
[3] NARA MED UNIV,DEPT BLOOD TRANSFUS,KASHIHARA,NARA 634,JAPAN
[4] KEIO UNIV,FAC MED,DIV HEMATOL,TOKYO,JAPAN
关键词
D O I
10.1182/blood.V88.10.3854.bloodjournal88103854
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
To know the role and initiation mechanism of the interaction of glycoprotein (GP) Ib with surface-immobilized von Willebrand factor (vWF), we examined the effect of shear stress levels on platelet binding to vWF-coated plates using a cone-and-plate type viscometer capable of loading various levels of shear stress, The extent of platelet binding to immobilized VWF reached a plateau at the shortest period tested (20 seconds) under high shear stress (90 dyne/cm(2)), whereas 9 to 12 minutes was necessary for saturable platelet binding under static conditions This shear effect, which was found to be dependent on the vWF-GP Ib interaction, was observed even under the lowest shear stress (1.5 dyne/cm(2)) examined. In contrast with the high shear effect previously reported to initiate the interaction of GP Ib with soluble vWF, these results indicate that relatively low levels of shear stress can promote the interaction of GP Ib with surface-immobilized vWF. This effect of shear stress was observed regardless of the manner in which vWF was immobilized, suggesting that immobilization itself and not, as previously hypothesized, a conformational change in VWF induced by direct adsorption to the surface is responsible for the enhanced GPIb binding. Thus, the present findings suggest that the vWF-GP Ib interaction contributes optimally to rapid platelet cohesion on a thrombogenic surface when vWF is in a static state and when platelets are moved by an appropriate rheological force such as low shear stress. (C) 1996 by The American Society of Hematology.
引用
收藏
页码:3854 / 3861
页数:8
相关论文
共 35 条
[1]  
ALEVRIADOU BR, 1993, BLOOD, V81, P1263
[2]  
AZUMA H, 1993, THROMB HAEMOSTASIS, V69, P192
[3]  
BAUMGARTNER HR, 1978, THROMB HAEMOSTASIS, V39, P782
[4]   ISOLATION OF PURE IGG1, IGG2A AND IGG2B IMMUNOGLOBULINS FROM MOUSE SERUM USING PROTEIN A-SEPHAROSE [J].
EY, PL ;
PROWSE, SJ ;
JENKIN, CR .
IMMUNOCHEMISTRY, 1978, 15 (07) :429-436
[5]  
FUJIMURA Y, 1986, J BIOL CHEM, V261, P381
[6]  
FUJIMURA Y, 1995, THROMB HAEMOSTASIS, V74, P743
[7]  
FUJIMURA Y, 1987, J BIOL CHEM, V262, P1734
[8]  
IKEDA Y, 1993, THROMB HAEMOSTASIS, V69, P496
[9]   THE ROLE OF VONWILLEBRAND-FACTOR AND FIBRINOGEN IN PLATELET-AGGREGATION UNDER VARYING SHEAR-STRESS [J].
IKEDA, Y ;
HANDA, M ;
KAWANO, K ;
KAMATA, T ;
MURATA, M ;
ARAKI, Y ;
ANBO, H ;
KAWAI, Y ;
WATANABE, K ;
ITAGAKI, I ;
SAKAI, K ;
RUGGERI, ZM .
JOURNAL OF CLINICAL INVESTIGATION, 1991, 87 (04) :1234-1240
[10]   ROLE OF THE GLYCOPROTEIN IB-BINDING A1 REPEAT AND THE RGD SEQUENCE IN PLATELET-ADHESION TO HUMAN RECOMBINANT VON-WILLEBRAND-FACTOR [J].
LANKHOF, H ;
WU, YP ;
VINK, T ;
SCHIPHORST, ME ;
ZERWES, HG ;
DEGROOT, PG ;
SIXMA, JJ .
BLOOD, 1995, 86 (03) :1035-1042