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Microfluidic platelet function analyzer for shear-induced platelet activation studies

机译:用于剪切诱导的血小板活化研究的微流体血小板功能分析仪

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Platelet function is suggestive of pathological conditions in heart related diseases. With current insufficient prognostic devices, we see the need for a device to assess complete platelet function. This work presents our preliminary microfluidic device for the analysis of shear-induced platelet activation, which is crucial in studying the pathological role of platelets. In our novel device, the polydimethylsiloxane microchannels were coated using a novel layer-by-layer self-assembly technique to provide controlled nanometer-thick layers of fibrinogen. Anticoagulated platelet rich plasma labeled with a fluorescin isothiocynate-tagged anti-GpIIb/IIIa-antibody was passed through these microchannels and several experimental runs for different shear rates were carried out. Finally, fluorescence assays confirmed the activation of platelets in the microchannels for various shear rates. Control experiments showed that the extent of adhesion on bare PDMS surfaces was less than on the surfaces assembled with fibrinogen. Based on image processing, the extent of platelet adhesion to the fibrinogen substrate was determined for each of the shear rates. The extent of adhesion (Φ) was modeled as a third order polynomial in shear rate for substrate fibrinogen.
机译:血小板的功能是提示在心脏相关疾病的病理状态。随着电流不足预后的设备,我们看到了必要的设备,以评估完整的血小板功能。这项工作提出了剪切诱导的血小板活化的分析,这是研究血小板的病理作用至关重要我们初步的微流体装置。在我们的新颖装置,所述聚二甲基硅氧烷微通道使用新颖的层 - 层自组装技术,以提供纤维蛋白原的受控纳米厚的层涂覆。抗凝血小板标有荧光素异硫氰酸酯标记的抗糖蛋白IIb / IIIa受体抗体通过这些微通道和几个实验运行于不同的剪切速率通过富血小板血浆中进行。最后,荧光测定法证实了在微通道的各种剪切速率血小板的活化。对照实验表明,在裸露的表面PDMS密合性的程度小于与纤维蛋白原组合的表面上。基于图像处理,血小板粘附于纤维蛋白原底物的程度对每个剪切速率的测定。粘附(Φ)的程度被建模为在剪切速率三阶多项式基底的纤维蛋白原。

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