Activation-independent platelet adhesion and aggregation under elevated shear stress

被引:326
作者
Ruggeri, Zaverio M. [1 ]
Orje, Jennifer N. [1 ]
Habermann, Rolf [1 ]
Federici, Augusto B. [1 ]
Reininger, Armin J. [1 ]
机构
[1] Scripps Res Inst, Roon Ctr Arteriosclerosis & Thrombosis, Div Expt Hemostasis & Thrombosis, Dept Mol & Expt Med, La Jolla, CA 92037 USA
关键词
D O I
10.1182/blood-2006-04-011551
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Platelet aggregation, which contributes to bleeding arrest and also to thrombovascular disorders, is thought to initiate after signaling-induced activation. We found that this paradigm does not apply under blood flow conditions comparable to those existing in stenotic coronary arteries. Platelets interacting with immobilized von Willebrand factor (VWF) aggregate independently of activation when soluble VWF is present and the shear rate exceeds 10 000 s(-1) (shear stress = 400 dyn/cm(2)). Above this threshold, active All domains become exposed in soluble VWF multimers and can bind to glycoprotein Ib alpha, promoting additional platelet recruitment. Aggregates thus formed are unstable until the shear rate approaches 20 000 s(-1) (shear stress = 800 dyn/cm.(2)). Above this threshold, adherent platelets at the interface of surface-immobilized and membrane-bound VWF are stretched into elongated structures and become the core of aggregates that can persist on the surface for minutes. When isolated dimeric All domain is present instead of native VWF multimers, activation-independent platelet aggregation occurs without requiring shear stress above a threshold level, but aggregates never become firmly attached to the surface and progressively disaggregate as shear rate exceeds 6000 s(-1). Platelet and VWF modulation by hydrodynamic force is a mechanism for activation-independent aggregation that may support thrombotic arterial occlusion.
引用
收藏
页码:1903 / 1910
页数:8
相关论文
共 41 条
[1]  
[Anonymous], 1994, LECT MATH LIFE SCI S
[2]   Ultralarge multimers of von Willebrand factor form spontaneous high-strength bonds with the platelet glycoprotein Ib-IX complex:: studies using optical tweezers [J].
Arya, M ;
Anvari, B ;
Romo, GM ;
Cruz, MA ;
Dong, JF ;
McIntire, LV ;
Moake, JL ;
López, JA .
BLOOD, 2002, 99 (11) :3971-3977
[3]  
AZUMA H, 1993, J BIOL CHEM, V268, P2821
[4]   Fluid mechanics of arterial stenosis: Relationship to the development of mural thrombus [J].
Bluestein, D ;
Niu, LJ ;
Schoephoerster, RT ;
Dewanjee, MK .
ANNALS OF BIOMEDICAL ENGINEERING, 1997, 25 (02) :344-356
[5]   Crystal structure of the von Willebrand factor A1 domain in complex with the function blocking NMC-4 Fab [J].
Celikel, R ;
Varughese, KI ;
Madhusudan ;
Yoshioka, A ;
Ware, J ;
Ruggeri, ZM .
NATURE STRUCTURAL BIOLOGY, 1998, 5 (03) :189-194
[6]   Selectin receptor-ligand bonds: Formation limited by shear rate and dissociation governed by the Bell model [J].
Chen, SQ ;
Springer, TA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (03) :950-955
[8]   INTRAMYOCARDIAL PLATELET-AGGREGATION IN PATIENTS WITH UNSTABLE ANGINA SUFFERING SUDDEN ISCHEMIC CARDIAC DEATH [J].
DAVIES, MJ ;
THOMAS, AC ;
KNAPMAN, PA ;
HANGARTNER, JR .
CIRCULATION, 1986, 73 (03) :418-427
[9]   Selectin-like kinetics and biomechanics promote rapid platelet adhesion in flow:: The GPIbα-vWF tether bond [J].
Doggett, TA ;
Girdhar, G ;
Lawshé, A ;
Schmidtke, DW ;
Laurenzi, IJ ;
Diamond, SL ;
Diacovo, TG .
BIOPHYSICAL JOURNAL, 2002, 83 (01) :194-205
[10]   Size regulation of von Willebrand factor-mediated platelet thrombi by ADAMTS13 in flowing blood [J].
Donadelli, R ;
Orje, JN ;
Capoferri, C ;
Remuzzi, G ;
Ruggeri, ZM .
BLOOD, 2006, 107 (05) :1943-1950