基于新型磁悬浮泰勒-库特流血液剪切平台血管性血友病因子损伤的研究
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苏州大学

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Study on von Willebrand Factor damage based on a novel Maglev Taylor-Couette blood-shearing circulation platform
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    摘要:

    目的 基于新型磁悬浮泰勒-库特流血液剪切装置研究血管性血友病因子(von Willebrand Factor, VWF)的损伤规律。方法 设计了磁悬浮泰勒-库特流血液剪切装置,并搭建血液剪切平台。基于在搭建的剪切平台,使用猪血在稳定层流状态下进行1 h循环测试,最后通过免疫蛋白印迹法和酶联免疫反应分析样品来评估血液VWF损伤。结果 随着暴露时间或剪切应力的增加,与初始样品相比有大量高分子量VWF多聚体降解为低分子量VWF。同样,VWF活性也随着剪切应力的增大而减少。结论 VWF损伤主要表现为高分子量VWF减少和VWF活性降低,VWF总含量并未产生明显变化。该新型磁悬浮泰勒-库特流血液剪切装置能够定量控制相关参数(暴露时间和剪切应力),用于体外血液损伤研究,从而为体外膜肺氧合器(Extracorporeal membrane oxygenation,ECMO)和血泵的设计与优化提供参考。

    Abstract:

    Objective The purpose of the paper is to study von Willebrand Factor(VWF) damage based on a novel Maglev Taylor-Couette blood-shearing device. Methods MagLev Taylor-Couette blood-shearing device was designed, and blood-shearing platform was built. Fresh porcine blood was tested in circulation loop for 1 h at laminar flow state. VWF damage was assessed by western blot and enzyme-linked immunosorbent assay. Results With the increase of non-physiological shear stress, a large number of high molecular weight VWF multimers were degraded into low molecular weight VWF and the activity of VWF decreased . Conclusions The VWF damage was mainly manifested by the decrease of high molecular weight VWF and the decrease of VWF activity, and VWF-Ag did not change significantly. The novel magnetic levitation Taylor-Couette blood-shearing device could quantitatively control the flow parameters (exposure time and shear stress), which can be used for blood damage research in vitro, thus providing a reference for the design and optimization of Extracorporeal membrane oxygenation(ECMO) and blood pump.

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  • 收稿日期:2021-09-29
  • 最后修改日期:2021-11-05
  • 录用日期:2021-11-16
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