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血小板大小分布测量作为剪切应力诱导血小板聚集的指标。

Platelet size distribution measurements as indicators of shear stress-induced platelet aggregation.

作者信息

Slack S M, Jennings L K, Turitto V T

机构信息

Department of Biomedical Engineering, University of Tennessee, Memphis.

出版信息

Ann Biomed Eng. 1994 Nov-Dec;22(6):653-9. doi: 10.1007/BF02368290.

DOI:10.1007/BF02368290
PMID:7532923
Abstract

The mechanisms underlying shear stress-induced platelet aggregation (SIPA) were investigated by measuring changes in the platelet size distributions resulting from the exposure of human platelet-rich plasma (PRP) to well-defined shear stresses in a modified viscometer. Exposure of PRP to a shear stress of 100 dyne/cm2 for 1 min at 37 degrees C resulted in the loss of single platelets, an overall shift in the distribution to larger particle sizes, and the generation of platelet fragments. Treatment of PRP prior to shearing with a monoclonal antibody directed against platelet glycoprotein (GP) IIb-IIIa (integrin alpha IIb beta 3) at a concentration that completely inhibited ADP-induced platelet aggregation also inhibited SIPA. Furthermore, incubation of PRP with a recombinant fragment of von Willebrand factor (vWF) that abolishes ristocetin-induced platelet agglutination significantly inhibited but did not eliminate SIPA. Pretreatment of PRP with the tetrapeptides RGDS or RGDV, which constitute the GP IIb-IIIa peptide recognition sequences on fibrinogen and vWF, almost completely blocked platelet aggregation at 100 dyne/cm2, whereas the negative control peptide RGES had no discernible effect. Finally, incubation of PRP with a monoclonal antibody directed against the platelet vitronectin receptor (integrin alpha v beta 3) did not affect SIPA. These results indicate that both GP IIb-IIIa and GP Ib, the latter through its interaction with vWF, are required for SIPA at 100 dyne/cm2; that the interaction of GP IIb-IIIa with its adhesive ligands under shear stress can be inhibited by RGD-containing peptides; and that the vitronectin receptor on platelets, which shares the same beta 3 subunit as GP IIb-IIIa, plays no role in SIPA.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过在改良粘度计中测量人富血小板血浆(PRP)暴露于明确剪切应力后血小板大小分布的变化,研究了剪切应力诱导的血小板聚集(SIPA)的潜在机制。在37℃下,将PRP暴露于100达因/平方厘米的剪切应力1分钟,导致单个血小板丢失,分布总体向更大粒径转移,并产生血小板碎片。在用完全抑制ADP诱导的血小板聚集的浓度的抗血小板糖蛋白(GP)IIb-IIIa(整合素αIIbβ3)单克隆抗体剪切之前处理PRP,也抑制了SIPA。此外,用消除瑞斯托菌素诱导的血小板凝集的重组血管性血友病因子(vWF)片段孵育PRP,可显著抑制但不能消除SIPA。用构成纤维蛋白原和vWF上GP IIb-IIIa肽识别序列的四肽RGDS或RGDV预处理PRP,在100达因/平方厘米时几乎完全阻断血小板聚集,而阴性对照肽RGES没有明显作用。最后,用抗血小板玻连蛋白受体(整合素αvβ3)单克隆抗体孵育PRP不影响SIPA。这些结果表明,在100达因/平方厘米时,GP IIb-IIIa和GP Ib(后者通过其与vWF的相互作用)都是SIPA所必需的;含RGD的肽可抑制剪切应力下GP IIb-IIIa与其粘附配体的相互作用;并且与GP IIb-IIIa共享相同β3亚基的血小板玻连蛋白受体在SIPA中不起作用。(摘要截短于250字)

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本文引用的文献

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剪切速率对枸橼酸化血液和全血中血小板与内皮下层相互作用的影响。II. 血小板黏附、血栓大小和纤维蛋白形成之间的关系。
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