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首页> 外文期刊>ASAIO journal >Quantitative Characterization of Shear-Induced Platelet Receptor Shedding: Glycoprotein Ib, Glycoprotein VI, and Glycoprotein IIb/IIIa
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Quantitative Characterization of Shear-Induced Platelet Receptor Shedding: Glycoprotein Ib, Glycoprotein VI, and Glycoprotein IIb/IIIa

机译:剪切血小板受体脱落的定量表征:糖蛋白IB,糖蛋白VI和糖蛋白IIB / IIIa

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摘要

The structural integrity of platelet receptors is essential for platelets to play the normal hemostatic function. The high non-physiologic shear stress (NPSS) commonly exists in blood-contacting medical devices and has been shown to cause platelet receptor shedding. The loss of platelet receptors may impair the normal hemostatic function of platelets. The aim of this study was to quantify NPSS-induced shedding of three key receptors on the platelet surface. Human blood was subjected to the matrix of well-defined shear stresses and exposure times, generated by using a custom-designed blood-shearing device. The expression of three key platelet receptors, glycoprotein (GP) Ib, GPVI, and GPIIb/IIIa, in sheared blood was quantified using flow cytometry. The quantitative relationship between the loss of each of the three receptors on the platelet surface and shear condition (shear stress level and exposure time) was explored. It was found that these relationships followed well the power law functional form. The coefficients of the power law models for the shear-induced shedding of these platelet receptors were derived with coefficients of determination (R-2) of 0.77, 0.73, and 0.78, respectively. The power law models with these coefficients may be potentially used to predict the shear-induced platelet receptor shedding of human blood.
机译:血小板受体的结构完整性对于血小板至普通止血功能至关重要。高非生理剪切应力(NPS)通常存在于血液接触医疗装置中,并且已被证明引起血小板受体脱落。血小板受体的损失可能会损害血小板的正常止血功能。本研究的目的是量化NPSS诱导的血小板表面上的三个关键受体的脱落。通过使用定制设计的血液剪切装置对人体血液进行透明剪切应力和曝光时间的基质。使用流式细胞术定量三个关键血小板受体,糖蛋白(GP)IB,GPVI和GPIIB / IIIa的表达。探讨了血小板表面和剪切条件(剪切应力水平和曝光时间)中三种受体中的每一个的损失之间的定量关系。有人发现,这些关系遵循权力法功能形式。用于剪切诱导的这些血小板受体的电力法模型的系数分别与0.77,0.73和0.78的测定系数(R-2)的系数衍生。具有这些系数的电力法可能用于预测人血的剪切诱导的血小板受体脱落。

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