Goto S, Handa S, Takahashi E, Abe S, Handa M, Ikeda Y
First Dept. Intern. Med., Tokai Univ. School of Med., Isehara, Japan.
Thromb Res. 1996 Dec 1;84(5):351-9. doi: 10.1016/s0049-3848(96)00199-5.
Platelet activation mediated through the interaction between von Willebrand factor (vWF) and platelet glycoprotein (GP) Ib is known to occur under high shear rate. We have demonstrated that low concentration of epinephrine could reduce the threshold level of shear rate necessary to cause platelet activation with purified system devoid of the effect of plasma proteins other than vWF. Both the extent of platelet aggregation and [Ca2+]i were continuously measured with optically modified cone-and-plate viscometer. No aggregation with no change in [Ca2+]i occurred under shear rate less than 7,200 s-1 in the absence of exogeneously added epinephrine. Epinephrine enhanced platelet aggregation under moderate level of shear rate (7,200 s-1) in a dose dependent manner. Significant aggregation with rise in [Ca2+]i was demonstrated even under the low shear rate of 1,200 s-1 when exogeneously added low concentration of epinephrine (0.05 microM) which did not cause platelet activation by itself was present. Aggregation and rise in [Ca2+]i under low shear in the presence of epinephrine was abolished by monoclonal antibodies against A1 domain of vWF or GP Ib, like aggregation and the rise in [Ca2+]i occurred under high shear rate (10,800 s-1), alpha 2-receptor blockade yohimbine completely antagonized the enhancing effects of epinephrine. Our findings suggested that epinephrine and shearing synergistically activated platelets through vWF interaction to GP Ib, which might suggest the role of sympathetic stimulation for the onset of acute arterial thrombosis.
已知在高剪切速率下会发生通过血管性血友病因子(vWF)与血小板糖蛋白(GP)Ib之间的相互作用介导的血小板活化。我们已经证明,低浓度的肾上腺素可以降低在不含除vWF之外的血浆蛋白影响的纯化系统中引起血小板活化所需的剪切速率阈值水平。使用光学改良的锥板粘度计连续测量血小板聚集程度和[Ca2+]i。在没有外源添加肾上腺素的情况下,在剪切速率低于7200 s-1时未发生聚集且[Ca2+]i无变化。肾上腺素在中等剪切速率(7200 s-1)下以剂量依赖方式增强血小板聚集。当存在外源添加的低浓度肾上腺素(0.05 microM)时,即使在1200 s-1的低剪切速率下也显示出[Ca2+]i升高的显著聚集,而该浓度的肾上腺素本身不会引起血小板活化。在肾上腺素存在下低剪切时的聚集和[Ca2+]i升高被针对vWF或GP Ib的A1结构域的单克隆抗体消除;同样,在高剪切速率(10800 s-1)下发生的聚集和[Ca2+]i升高也被消除。α2受体阻滞剂育亨宾完全拮抗肾上腺素的增强作用。我们的研究结果表明,肾上腺素和剪切通过vWF与GP Ib的相互作用协同激活血小板,这可能提示交感神经刺激在急性动脉血栓形成发作中的作用。