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首页> 外文期刊>Thrombosis Research: An International Journal on Vascular Obstruction, Hemorrhage and Hemostasis >Using microfluidics to understand the effect of spatial distribution of tissue factor on blood coagulation.
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Using microfluidics to understand the effect of spatial distribution of tissue factor on blood coagulation.

机译:使用微流控技术了解组织因子的空间分布对凝血的影响。

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摘要

Initiation of blood coagulation by tissue factor (TF) is a robust, highly regulated process. Both the spatial distribution of TF and the geometry of the vasculature may play important roles in regulating coagulation. As this review describes, microfluidic systems provide a unique opportunity for investigating the spatiotemporal dynamics of blood coagulation in vitro. Microfluidic systems with surfaces of phospholipid bilayers patterned with TF have been used to demonstrate experimentally the threshold responses of initiation of coagulation to the size and shape of surfaces presenting TF. These systems have also been used to demonstrate experimentally that propagation of coagulation is regulated by the shear rate of blood flow in microcapillaries and microchannels. By understanding these and other aspects of the spatial dynamics that regulate blood coagulation, many new methods for treating clotting disorders, such as venous thromboembolism (VTE) and sepsis, could arise.
机译:通过组织因子(TF)引发血液凝固是一个强大的,高度受控的过程。 TF的空间分布和脉管系统的几何形状均可能在调节凝血中起重要作用。如本综述所述,微流体系统为研究体外凝血时空动态提供了独特的机会。具有用TF图案化的磷脂双层表面的微流体系统已用于实验证明凝固起始对呈现TF的表面的大小和形状的阈值响应。这些系统也已用于通过实验证明凝结的传播受微毛细管和微通道中血流的剪切速率调节。通过了解调节血液凝固的空间动力学的这些和其他方面,可能会出现许多用于治疗凝血障碍的新方法,例如静脉血栓栓塞(VTE)和败血症。

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