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The effect of amorphous carbon films deposited on polyethylene terephthalate on blood compatibility

机译:非晶碳膜沉积在聚对苯二甲酸乙二醇酯对血液相容性的影响

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Summary form only given. Acetylene (C/sub 2/H/sub 2/) plasma immersion ion implantation and deposition (PIII-D) was performed on polyethylene terephthalate (PET) at different bias voltages from -5 KV to -15 KV. The surface structure of the treated PET is determined by Rutherford backscattering spectrometry (RBS), Raman spectroscopy, and X-ray photoelectron spectroscopy (XPS). The results show the formation of thin hydrogenated amorphous carbon (a-C:H) films with different structures and chemical bonds on the PET surface. Atomic force microscopy (AFM) shows that the reduced average surface roughness (R/sub a/) decreases from 33.1 nm to 11.4 nm by depositing the amorphous carbon film. The wettability of the films is investigated by contact angle measurement. After C/sub 2/H/sub 2/ PIII-D, the surface energy increases from 43.3 mN/m to 47.1 mN/m and the ratio of polar component /spl gamma//sub p/ to dispersive component /spl gamma//sub d/ increases from 0.06 to 0.35. Platelet adhesion and coagulation factor experiments are conducted to examine the blood compatibility in vitro. Scanning electron microscopy (SEM) and optical microscopy reveal that the amounts of adhered, aggregated and morphologically changed platelets are reduced on all amorphous carbon films. The number of platelet adhered on the amorphous carbon film deposited under -10 KV is reduced by almost 75% compared to the amount of platelets on the untreated film. The thrombin time (TT), prothrombin time (PT) and activated partial thromboplastin time (aPTT) of the modified PET are longer than those of the untreated PET. Our result thus shows that the amorphous carbon film deposited on the PET surface by C/sub 2/H/sub 2/ PIII-D improves platelet adhesion and activation. A possible reason for the good hemocompatibility is that the amorphous carbon coating minimizes its interactions with plasma protein and slightly changes the conformation of adsorbed plasma proteins.
机译:摘要表格仅给出。在不同偏置电压的聚对苯二甲酸乙二醇酯(PET)下,在-5kV至-15kV的不同偏置电压下对乙炔(C / SUB 2 / H / SUB 2 / SUP 2 /)等离子体浸渍离子注入和沉积(PIII-D)进行。经处理的PET的表面结构由Rutherford反向散射光谱法(RB),拉曼光谱和X射线光电子谱(XPS)确定。结果表明,在PET表面上具有不同结构和化学键的薄氢化非晶碳(A-C:H)膜的形成。原子力显微镜(AFM)表明,通过沉积非晶碳膜,降低的平均表面粗糙度(R / Sub A /)从33.1nm至11.4nm降低。通过接触角测量来研究薄膜的润湿性。 C / SUB 2 / H / SUB 2 / PIII-D后,表面能量从43.3mn / m / m至47.1mn / m增加,极性成分/ splγ//子P / TO分散成分/ SPLγ/ /亚D /增加0.06至0.35。进行血小板粘附和凝血因子实验以检查体外血液相容性。扫描电子显微镜(SEM)和光学显微镜揭示了所有无定形碳膜上粘附,聚集和形态变化的血小板的量。与未处理薄膜上的血小板相比,粘附在-10kV下的无定形碳膜上粘附的血小板数量近75%。改性PET的凝血酶时间(TT),凝血酶原时间(PT)和激活的部分血栓形成时间(APTT)比未处理的PET的时间长。因此,我们的结果表明,C / sub 2 / h / sub 2 / piii-d沉积在PET表面上的非晶碳膜改善了血小板粘附和活化。良好血液相容性的可能原因是无定形碳涂层最小化其与血浆蛋白的相互作用,并略微改变吸附的血浆蛋白的构象。

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