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Fibrinogen Matrix Deposited on the Surface of Biomaterials Acts as a Natural Anti-Adhesive Coating

机译:沉积在生物材料表面的纤维蛋白原基质可作为天然抗粘涂层

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摘要

Adsorption of fibrinogen on the luminal surface of biomaterials is a critical early event during the interaction of blood with implanted vascular graft prostheses which determines their thrombogenicity. We have recently identified a nanoscale process by which fibrinogen modifies the adhesive properties of various surfaces for platelets and leukocytes. In particular, adsorption of fibrinogen at low density promotes cell adhesion while its adsorption at high density results in the formation of an extensible multilayer matrix, which dramatically reduces cell adhesion. It remains unknown whether deposition of fibrinogen on the surface of vascular graft materials produces this anti-adhesive effect. Using atomic force spectroscopy, single cell force spectroscopy, and standard adhesion assays with platelets and leukocytes, we have characterized the adhesive and physical properties of the contemporary biomaterials, before and after coating with fibrinogen. We found that uncoated PET, PTFE and ePTFE exhibited high adhesion forces developed between the AFM tip or cells and the surfaces. Adsorption of fibrinogen at the increasing concentrations progressively reduced adhesion forces, and at ≥2 µg/ml all surfaces were virtually nonadhesive. Standard adhesion assays performed with platelets and leukocytes confirmed this dependence. These results provide a better understanding of the molecular events underlying thrombogenicity of vascular grafts.
机译:纤维蛋白原在生物材料腔表面上的吸附是血液与植入的血管移植假体相互作用的关键早期事件,这决定了它们的血栓形成性。我们最近发现了一种纳米级工艺,纤维蛋白原通过这种工艺改变了血小板和白细胞在各种表面上的粘附特性。特别地,低密度的纤维蛋白原吸附促进细胞粘附,而高密度的纤维吸附导致形成可伸长的多层基质,这大大降低了细胞粘附。纤维蛋白原在血管移植物表面上的沉积是否产生这种抗粘连作用仍是未知的。使用原子力光谱,单细胞力光谱以及血小板和白细胞的标准粘附测定,我们已经表征了当代生物材料在涂有纤维蛋白原之前和之后的粘附性和物理性质。我们发现未涂覆的PET,PTFE和ePTFE表现出在AFM尖端或电池与表面之间形成的高粘附力。浓度增加时,纤维蛋白原的吸附会逐渐降低粘附力,并且≥2 µg / ml时,所有表面实际上都是非粘附性的。用血小板和白细胞进行的标准粘附测定证实了这种依赖性。这些结果更好地理解了血管移植物血栓形成的分子事件。

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