de los Santos Pereira Andres, Sheikh Sonia, Blaszykowski Christophe, Pop-Georgievski Ognen, Fedorov Kiril, Thompson Michael, Rodriguez-Emmenegger Cesar
Department of Chemistry and Physics of Surfaces and Biointerfaces, Institute of Macromolecular Chemistry, Academy of Sciences of the Czech Republic, v.v.i. , Heyrovsky Square 2, 162 06 Prague, Czech Republic.
Department of Chemistry - St. George Campus, University of Toronto , 80 St. George Street, Toronto, Ontario Canada M5S 3H6.
Biomacromolecules. 2016 Mar 14;17(3):1179-85. doi: 10.1021/acs.biomac.6b00019. Epub 2016 Feb 26.
The contact of blood with artificial materials generally leads to immediate protein adsorption (fouling), which mediates subsequent biological processes such as platelet adhesion and activation leading to thrombosis. Recent progress in the preparation of surfaces able to prevent protein fouling offers a potential avenue to mitigate this undesirable effect. In the present contribution, we have prepared several types of state-of-the-art antifouling polymer brushes on polycarbonate plastic substrate, and investigated their ability to prevent platelet adhesion and thrombus formation under dynamic flow conditions using human blood. Moreover, we compared the ability of such brushes--grafted on quartz via an adlayer analogous to that used on polycarbonate--to prevent protein adsorption from human blood plasma, assessed for the first time by means of an ultrahigh frequency acoustic wave sensor. Results show that the prevention of such a phenomenon constitutes one promising route toward enhanced resistance to thrombus formation, and suggest that antifouling polymer brushes could be of service in biomedical applications requiring extensive blood-material surface contact.
血液与人工材料接触通常会立即导致蛋白质吸附(污染),这介导了随后的生物过程,如血小板粘附和活化,进而导致血栓形成。在制备能够防止蛋白质污染的表面方面的最新进展为减轻这种不良影响提供了一条潜在途径。在本论文中,我们在聚碳酸酯塑料基材上制备了几种类型的先进防污聚合物刷,并使用人体血液研究了它们在动态流动条件下防止血小板粘附和血栓形成的能力。此外,我们比较了通过类似于聚碳酸酯上使用的中间层接枝在石英上的此类刷子防止人血浆中蛋白质吸附的能力,这是首次通过超高频声波传感器进行评估。结果表明,防止这种现象是增强抗血栓形成能力的一条有前景的途径,并表明防污聚合物刷可用于需要广泛血液 - 材料表面接触的生物医学应用。