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在微流控图案化毛细管中,组织因子启动血液凝固的阈值反应受剪切速率控制。

Threshold response of initiation of blood coagulation by tissue factor in patterned microfluidic capillaries is controlled by shear rate.

作者信息

Shen Feng, Kastrup Christian J, Liu Ying, Ismagilov Rustem F

机构信息

Department of Chemistry, Institute for Biophysical Dynamics, The University of Chicago, Chicago, IL 60637, USA.

出版信息

Arterioscler Thromb Vasc Biol. 2008 Nov;28(11):2035-41. doi: 10.1161/ATVBAHA.108.173930. Epub 2008 Aug 14.

Abstract

OBJECTIVE

Blood flow is considered one of the important parameters that contribute to venous thrombosis. We quantitatively test the relationship between initiation of coagulation and shear rate and suggest a biophysical mechanism to understand this relationship.

METHODS AND RESULTS

Flowing human blood and plasma were exposed to cylindrical surfaces patterned with patches of tissue factor (TF) by using microfluidics. Initiation of coagulation of normal pooled plasma depended on shear rate, not volumetric flow rate or flow velocity, and coagulation initiated only at shear rates below a critical value. Initiation of coagulation of platelet-rich plasma and whole blood showed similar behavior. At constant shear rate, coagulation of plasma also showed a threshold response to the size of a patch of TF, consistent with our previous work in the absence of flow.

CONCLUSIONS

Initiation of coagulation of flowing blood displays a threshold response to shear rate and to the size of a surface patch of TF. Combined with the results of others, these results set the range of shear rates that limit initiation of coagulation by small surface areas of TF and by shear activation of platelets. This range fits the relatively narrow range of physiological shear rates described by Murray's law.

摘要

目的

血流被认为是导致静脉血栓形成的重要参数之一。我们定量测试了凝血起始与剪切速率之间的关系,并提出了一种生物物理机制来理解这种关系。

方法与结果

利用微流控技术,使流动的人体血液和血浆接触带有组织因子(TF)斑块图案的圆柱形表面。正常混合血浆的凝血起始取决于剪切速率,而非体积流速或流速,且仅在低于临界值的剪切速率下才会引发凝血。富含血小板血浆和全血的凝血起始表现出类似行为。在恒定剪切速率下,血浆凝血对TF斑块大小也呈现出阈值响应,这与我们之前在无流动情况下的研究结果一致。

结论

流动血液的凝血起始对剪切速率和TF表面斑块大小呈现出阈值响应。结合其他研究结果,这些结果确定了限制小面积TF引发凝血以及血小板剪切激活引发凝血的剪切速率范围。该范围符合默里定律所描述的相对狭窄的生理剪切速率范围。

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