Ji Haifeng, Yu Kai, Abbina Srinivas, Xu Lin, Xu Tao, Cheng Shengjun, Vappala Sreeparna, Arefi S M Amin, Rana Md Mohosin, Chafeeva Irina, Drayton Matthew, Gonzalez Kevin, Liu Yun, Grecov Dana, Conway Edward M, Zhao Weifeng, Zhao Changsheng, Kizhakkedathu Jayachandran N
Centre for Blood Research & Life Science Institute, University of British Columbia, Life Sciences Centre, Vancouver, British Columbia, Canada.
Department of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, British Columbia, Canada.
Nat Mater. 2025 Apr;24(4):626-636. doi: 10.1038/s41563-024-02046-0. Epub 2024 Nov 12.
Antithrombotic surfaces that prevent coagulation activation without interfering with haemostasis are required for blood-contacting devices. Such materials would restrain device-induced thrombogenesis and decrease the need for anticoagulant use, thereby reducing unwanted bleeding. Here, by optimizing the interactions with coagulation factor XII rather than preventing its surface adsorption, we develop a substrate-independent antithrombotic polymeric coating with sheltered positive charges. The antithrombic properties of the coating were demonstrated in vitro with human blood and in vivo using a carotid artery-jugular vein shunt model in rabbits. The coating exhibits a strong interaction with factor XII, but results in a low reciprocal activation of the contact pathway that triggers clot formation. These findings contradict the prevailing strategy of designing antithrombotic materials through protein-repelling surfaces. Overall, the polymeric coating we describe can benefit most blood-contacting devices and is a useful engineering guideline for designing surfaces with improved antithrombotic properties.
血液接触设备需要能够防止凝血激活而不干扰止血的抗血栓表面。这类材料将抑制设备诱导的血栓形成,并减少对抗凝剂的使用需求,从而减少不必要的出血。在此,我们通过优化与凝血因子XII的相互作用而非防止其在表面吸附,开发出一种具有隐蔽正电荷的与底物无关的抗血栓聚合物涂层。该涂层的抗血栓特性在体外用人血进行了验证,并在体内使用兔颈动脉-颈静脉分流模型进行了验证。该涂层与因子XII表现出强烈的相互作用,但导致触发凝血形成的接触途径的反向激活较低。这些发现与通过蛋白质排斥表面设计抗血栓材料的主流策略相矛盾。总体而言,我们所描述的聚合物涂层可使大多数血液接触设备受益,并且是设计具有改善抗血栓特性表面的有用工程指南。