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首页> 外文期刊>Journal of Materials Science. Materials in Medicine >Modification of human platelet adhesion on biomaterial surfaces by protein preadsorption under static and flow conditions
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Modification of human platelet adhesion on biomaterial surfaces by protein preadsorption under static and flow conditions

机译:在静态和流动条件下通过蛋白质的预吸附来改变人血小板在生物材料表面上的粘附力

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Biomaterial-induced thrombosis remains one of the main complications of vascular implant devices. Preadsorbed proteins on the biomaterial/blood interface will modify the adhesion and activation of platelets (PTLs) during the initial contact-phase. Our results clearly show that PTL-adherence on biomaterials is influenced not only by protein preadsorption, but also by flow conditions. The covalent coating of TCPS and glass by phosphorylcholine (PC) induces a significant decrease of PTL adhesion but leads to a slight, but nevertheless significant activation of PTL, which was detected by the induction of P-selectin expression using FACS analysis. Methodologically, the visualization of PTL adhesion gave more reliable results for measurement of PTL adhesion than the cell-enzyme immunoassay (EIA) for P-selectin. Human citrated plasma caused an inhibition of PTL. It is probable, that the contained sodium citrate may inhibit PTL adhesion by its calcium ion-binding capacity. The flow experiment as dynamic system is in our view absolutely essential for the evaluation of biomaterials for vascular prosthesis, and is in accordance with the international standards. The results of the experiments also suggest that investigations under static and flow conditions are needed to determine the influence of protein adsorption on mixed blood cell populations, for example, on PTL and PMN mixtures/co-cultures in order to achieve a better simulation of the in vivo situation.
机译:生物材料引起的血栓形成仍然是血管植入装置的主要并发症之一。生物材料/血液界面上的预先吸附的蛋白质将在初始接触阶段改变血小板(PTL)的粘附和激活。我们的结果清楚地表明,PTL在生物材料上的粘附不仅受蛋白质预吸附的影响,还受到流动条件的影响。磷酸胆碱(PC)对TCPS和玻璃的共价涂层诱导PTL粘附力显着降低,但导致PTL轻微但仍然显着活化,这通过使用FACS分析诱导P-选择蛋白表达来检测。从方法上讲,与P-选择素的细胞酶免疫分析(EIA)相比,PTL粘附的可视化为PTL粘附的测量提供了更可靠的结果。人柠檬酸血浆可抑制PTL。所含的柠檬酸钠可能通过其钙离子结合能力而抑制PTL的粘附。在我们看来,作为动态系统的流动实验对于评估用于血管假体的生物材料绝对必要,并且符合国际标准。实验结果还表明,需要进行静态和流动条件下的研究,以确定蛋白质吸附对混合血细胞群体的影响,例如对PTL和PMN混合物/共培养物的影响,以便更好地模拟体内情况。

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