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首页> 外文期刊>Biomacromolecules >Chondroitin Sulfate Coatings Display Low Platelet but High Endothelial Cell Adhesive Properties Favorable for Vascular Implants
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Chondroitin Sulfate Coatings Display Low Platelet but High Endothelial Cell Adhesive Properties Favorable for Vascular Implants

机译:硫酸软骨素涂层显示低血小板但高内皮细胞粘附特性,有利于血管植入物

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This study highlights the advantages of chondroitin sulfate (CS) as a sublayer combining selective low-fouling properties, low-platelet adhesion and pro-adhesive properties on endothelial cells, making CS promising for vascular graft applications. These properties were evaluated by comparing CS with well-known low-fouling coatings such as poly( ethylene glycol) (PEG) and carboxymethylated dextran (CMD), which were covalently grafted on primary amine-rich plasma polymerized (LP) films. Protein adsorption studies by quartz crystal microbalance with dissipation monitoring (QCM-D) and fluorescence measurements showed that CS is as effective as PEG in reducing fibrinogen adsorption (~90% reduction). CS also largely reduced adsorption of bovine serum albumin (BSA) as well as fetal bovine serum (FBS) but to a lower extent than PEG and CMD surfaces (72% vs 85% for BSA and 66% vs 89% for FBS). Whole blood perfusion assays indicated that, while LP surfaces were highly reactive with platelets, PEG, CMD, and CS grafted surfaces drastically decreased platelet adhesion and activation to levels significantly lower than polyethylene terephthalate (PET) surfaces. Finally, while human umbilical vein endothelial cell (HUVEC) adhesion and growth were found to be very limited on PEG and CMD, they were significantly increased on CS compared to that on bare PET and reached similar values as those for tissue culture polystyrene positive controls. Interestingly, HUVEC retention during perfusion with blood was found to be excellent on CS but poor on PET. Overall, our results suggest that the CS surface has the advantage of promoting HUVEC growth and resistance to flow-induced shear stress while preventing fibrinogen and platelet attachment. Such a nonthrombogenic but endothelial-cell adhesive surface is thus promising to limit vascular graft occlusion.
机译:这项研究突出了硫酸软骨素(CS)作为亚层的优势,该层结合了选择性低污垢特性,低血小板粘附性和对内皮细胞的前粘附特性,使CS有望用于血管移植应用。通过将CS与众所周知的低污垢涂层(例如聚(乙二醇)(PEG)和羧甲基化的葡聚糖(CMD))进行比较来评估这些性能,这些涂层共价接枝在富含伯胺的等离子体聚合(LP)膜上。通过具有耗散监测(QCM-D)和荧光测量的石英晶体微量天平对蛋白质的吸附研究表明,CS在降低纤维蛋白原吸附(降低约90%)方面与PEG一样有效。 CS还大大降低了牛血清白蛋白(BSA)和胎牛血清(FBS)的吸附,但程度低于PEG和CMD表面(BSA为72%对85%,FBS为66%对89%)。全血灌注分析表明,尽管LP表面与血小板高度反应,但PEG,CMD和CS移植表面大大降低了血小板粘附和活化,使其水平明显低于聚对苯二甲酸乙二醇酯(PET)表面。最后,虽然发现人脐静脉内皮细胞(HUVEC)在PEG和CMD上的粘附和生长非常有限,但与裸PET相比,在CS上它们显着增加,并且达到与组织培养聚苯乙烯阳性对照相似的值。有趣的是,在血液灌注过程中,HUVEC保留在CS上表现出色,而在PET上表现差。总的来说,我们的结果表明CS表面具有促进HUVEC生长和抵抗流动诱导的剪切应力的优势,同时又能防止纤维蛋白原和血小板的附着。这样的无血栓形成但内皮细胞粘附的表面因此有望限制血管移植物的阻塞。

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