首页> 外文期刊>Biomedical Microdevices >Microfluidic device to study arterial shear-mediated platelet-surface interactions in whole blood: reduced sample volumes and well-characterised protein surfaces
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Microfluidic device to study arterial shear-mediated platelet-surface interactions in whole blood: reduced sample volumes and well-characterised protein surfaces

机译:用于研究全血中动脉剪切介导的血小板-表面相互作用的微流体装置:减少的样品量和特征明确的蛋白质表面

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摘要

We report a novel device to analyze cell-surface interactions under controlled fluid-shear conditions on well-characterised protein surfaces. Its performance is demonstrated by studying platelets interacting with immobilised von Willebrand Factor at arterial vascular shear rates using just 200 μL of whole human blood per assay. The device's parallel-plate flow chamber, with 0.1 mm~2 cross sectional area and height-to-width ratio of 1:40, provides uniform, well-defined shear rates along the chip surface with negligible vertical wall effects on the fluid flow profile while minimizing sample volumetric flow. A coating process was demonstrated byrnellipsometry, atomic force microscopy, and fluorescent immu-nostaining to provide reproducible, homogeneous, uniform protein layers over the 0.7 cm~2 cell-surface interaction area. Customized image processing quantifies dynamic cellular surface coverage vs. time throughout the whole-blood-flow assay for a given drug treatment or disease state. This device can track the dose response of anti-platelet drugs, is suitable for point-of-care diagnostics, and is designed for adaptation to mass manufacture.
机译:我们报告了一种新颖的设备来分析在表征良好的蛋白质表面上受控的流体剪切条件下的细胞表面相互作用。通过在每次测定中仅使用200μL全人类血液来研究与固定血管性血管性假血友病因子相互作用的血小板在动脉血管剪切速率下的相互作用,即可证明其性能。该装置的平行板流动室具有0.1 mm〜2的横截面积,高宽比为1:40,可沿切屑表面提供均匀,明确的剪切速率,而对流体流动剖面的垂直壁影响可忽略不计同时最小化样品的体积流量。通过椭偏光度法,原子力显微镜和荧光免疫证实了包被过程,可在0.7 cm〜2的细胞表面相互作用区域上提供可再现,均匀,均匀的蛋白质层。定制的图像处理功能可针对给定的药物治疗或疾病状态,在整个血流测定中量化动态细胞表面覆盖率与时间的关系。该设备可以跟踪抗血小板药物的剂量反应,适用于即时诊断,并且适合于批量生产。

著录项

  • 来源
    《Biomedical Microdevices》 |2010年第6期|p.987-1000|共14页
  • 作者单位

    Biomedical Diagnostics Institute, Dublin City University,Glasnevin Dublin 9, Ireland The Biomedical Devices and Assistive Technology Research Group, College of Engineering and Built Environment,Dublin Institute of Technology,Bolton St.,Dublin 1, Ireland;

    rnBiomedical Diagnostics Institute, Dublin City University,Glasnevin Dublin 9, Ireland;

    rnBiomedical Diagnostics Institute, Dept of Molecular and Cellular Therapeutics, Royal College of Surgeons in Ireland,123 St Stephens Green,Dublin 2, Ireland;

    rnBiomedical Diagnostics Institute, Dublin City University,Glasnevin Dublin 9, Ireland;

    rnSchool of Mechanical and Manufacturing Engineering, Dublin City University, Glasnevin Dublin 9, Ireland;

    rnBiomedical Diagnostics Institute, Dept of Molecular and Cellular Therapeutics, Royal College of Surgeons in Ireland,123 St Stephens Green,Dublin 2, Ireland;

    rnBiomedical Diagnostics Institute, Dublin City University,Glasnevin Dublin 9, Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    shear activation; microfluidics; platelet-surface interactions; protein characterisation; image analysis;

    机译:剪切活化微流体血小板表面相互作用;蛋白质表征;图像分析;

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