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血流会影响血浆凝块中纤维蛋白网络的结构和力学性能。

Flow affects the structural and mechanical properties of the fibrin network in plasma clots.

机构信息

Department of Hematology, Erasmus MC, University Medical Center Rotterdam, Rotterdam, The Netherlands.

Department of Bionanoscience, Kavli Institute of Nanoscience, Delft University of Technology, Delft, the Netherlands.

出版信息

J Mater Sci Mater Med. 2024 Jan 29;35(1):8. doi: 10.1007/s10856-024-06775-1.

Abstract

The fibrin network is one of the main components of thrombi. Altered fibrin network properties are known to influence the development and progression of thrombotic disorders, at least partly through effects on the mechanical stability of fibrin. Most studies investigating the role of fibrin in thrombus properties prepare clots under static conditions, missing the influence of blood flow which is present in vivo. In this study, plasma clots in the presence and absence of flow were prepared inside a Chandler loop. Recitrated plasma from healthy donors were spun at 0 and 30 RPM. The clot structure was characterized using scanning electron microscopy and confocal microscopy and correlated with the stiffness measured by unconfined compression testing. We quantified fibrin fiber density, pore size, and fiber thickness and bulk stiffness at low and high strain values. Clots formed under flow had thinner fibrin fibers, smaller pores, and a denser fibrin network with higher stiffness values compared to clots formed in absence of flow. Our findings indicate that fluid flow is an essential factor to consider when developing physiologically relevant in vitro thrombus models used in researching thrombectomy outcomes or risk of embolization.

摘要

纤维蛋白网络是血栓的主要成分之一。已知纤维蛋白网络性质的改变会影响血栓形成性疾病的发展和进展,至少部分是通过对纤维蛋白机械稳定性的影响。大多数研究血栓特性中纤维蛋白作用的研究都是在静态条件下制备血栓,而忽略了体内存在的血流的影响。在这项研究中,在 Chandler 环内制备了存在和不存在流动的血浆血栓。从健康供体中回收的血浆在 0 和 30 RPM 下旋转。使用扫描电子显微镜和共聚焦显微镜对血栓结构进行了表征,并与无约束压缩测试测量的刚性相关联。我们量化了低应变和高应变值下纤维蛋白纤维密度、孔径和纤维厚度以及整体刚性。与在无流动条件下形成的血栓相比,在流动条件下形成的血栓具有更细的纤维蛋白纤维、更小的孔和更密集的纤维蛋白网络,具有更高的刚性值。我们的研究结果表明,在开发用于研究血栓切除术结果或栓塞风险的生理相关体外血栓模型时,考虑到流体流动是一个重要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74b9/10824866/8f0eb5ff7671/10856_2024_6775_Fig1_HTML.jpg

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