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通过电极化抑制血管内传感器上血栓的形成。

Inhibition of thrombus formation on intravascular sensors by electrical polarization.

作者信息

Schmitt J M, Baer M, Meindl J D, Anderson M F, Mihm F G

出版信息

J Biomed Mater Res. 1984 Sep;18(7):797-807. doi: 10.1002/jbm.820180710.

Abstract

Implantable biomedical sensors built on a silicon substrate capped with glass are currently being developed for intravascular applications. Electrical techniques for inhibiting thrombus formation on the surface of a proposed optical sensor in direct contact with blood have been investigated. Glass-on-silicon specimens (4 X 1.2 X 0.4 mm3) were coated with indium-tin oxide, a transparent conductor, and implanted in the vena cava and iliac veins of three dogs for 10, 20, or 33 days. The equilibrium surface-blood interface potentials of the specimens were modified by implanted current sources which supplied either direct current (8-15 microA) or 100 KHz alternating current (5 microA, root mean square). Light-microscopic and scanning electron-microscopic analyses showed each of the DC-polarized specimens to be free of thrombus, in contrast to nonpolarized (control) specimens on which varying amounts of adsorbed protein and thrombus deposits were found. Like the control specimens, the AC-polarized specimens formed thrombus, but the appearance of the deposits differed. These findings support the view that the polarity, magnitude and time dependence of the potential across conducting surface-blood interface significantly influence thrombogenicity. Further work is necessary to determine the roles of electrochemical and electrostatic factors in preventing thrombus formation on foreign materials.

摘要

目前正在研发基于覆盖有玻璃的硅基片的可植入生物医学传感器,用于血管内应用。已对抑制与血液直接接触的拟议光学传感器表面血栓形成的电学技术进行了研究。将涂有透明导体氧化铟锡的硅上玻璃样本(4×1.2×0.4立方毫米)植入三只狗的腔静脉和髂静脉中10、20或33天。通过植入的电流源改变样本的平衡表面-血液界面电位,电流源提供直流电(8 - 15微安)或100千赫交流电(5微安,均方根)。光学显微镜和扫描电子显微镜分析表明,与发现有不同数量吸附蛋白和血栓沉积物的非极化(对照)样本相比,每个直流极化样本均无血栓形成。与对照样本一样,交流极化样本形成了血栓,但沉积物的外观有所不同。这些发现支持这样一种观点,即跨导电表面-血液界面的电位的极性、大小和时间依赖性显著影响血栓形成倾向。有必要进一步开展工作,以确定电化学和静电因素在防止异物表面形成血栓方面的作用。

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