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首页> 外文期刊>Acta biomaterialia >Bioactive polymer grafting onto titanium alloy surfaces.
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Bioactive polymer grafting onto titanium alloy surfaces.

机译:生物活性聚合物接枝到钛合金表面上。

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Bioactive polymers bearing sulfonate (styrene sodium sulfonate, NaSS) and carboxylate (methylacrylic acid, MA) groups were grafted onto Ti6Al4V alloy surfaces by a two-step procedure. The Ti alloy surfaces were first chemically oxidized in a piranha solution and then directly subjected to radical polymerization at 70 degrees C in the absence of oxygen. The grafted surfaces were characterized by X-ray photoelectron spectroscopy (XPS), time-of-flight secondary ion mass spectrometry (ToF-SIMS) and the toluidine blue colorimetric method. Toluidine blue results showed 1-5microgcm(-2) of polymer was grafted onto the oxidized Ti surfaces. Grafting resulted in a decrease in the XPS Ti and O signals from the underlying Ti substrate and a corresponding increase in the XPS C and S signals from the polymer layer. The ToF-SIMS intensities of the S(-) and SO(-) ions correlated linearly with the XPS atomic percent S concentrations and the ToF-SIMS intensity of the TiO(3)H(2)(-) ion correlated linearly with the XPS atomic per cent Ti concentration. Thus, the ToF-SIMS S(-), SO(-) and TiO(3)H(2)(-) intensities can be used to quantify the composition and amount of grafted polymer. ToF-SIMS also detected ions that were more characteristic of the polymer molecular structure (C(6)H(4)SO(3)(-) and C(8)H(7)SO(3)(-) from NaSS, C(4)H(5)O(2)(-) from MA), but the intensity of these peaks depended on the polymer thickness and composition. An in vitro cell culture test was carried out with human osteoblast-like cells to assess the influence of the grafted polymers on cell response. Cell adhesion after 30min of incubation showed significant differences between the grafted and ungrafted surfaces. The NaSS grafted surfaces showed the highest degree of cell adhesion while the MA-NaSS grafted surfaces showed the lowest degree of cell adhesion. After 4 weeks in vivo in rabbit femoral bones, bone was observed to be in direct contact with all implants. The percentage of mineralized tissue around the implants was similar for NaSS grafted and non-grafted implants (59% and 57%). The MA-NaSS grafted implant exhibited a lower amount of mineralized tissue (47%).
机译:通过两步程序将带有磺酸盐(苯乙烯磺酸钠,NaSS)和羧酸盐(甲基丙烯酸,MA)的生物活性聚合物接枝到Ti6Al4V合金表面。首先在食人鱼溶液中对Ti合金表面进行化学氧化,然后在无氧的情况下直接在70摄氏度下进行自由基聚合。通过X射线光电子能谱(XPS),飞行时间二次离子质谱(ToF-SIMS)和甲苯胺蓝比色法对接枝表面进行了表征。甲苯胺蓝的结果表明,将1-5microgcm(-2)的聚合物接枝到了氧化的Ti表面上。接枝导致来自下面的Ti基材的XPS Ti和O信号减少,以及来自聚合物层的XPS C和S信号相应增加。 S(-)和SO(-)离子的ToF-SIMS强度与XPS原子百分比S浓度线性相关,而TiO(3)H(2)(-)离子的ToF-SIMS强度与PPS线性相关。 XPS原子百分比的Ti浓度。因此,ToF-SIMS S(-),SO(-)和TiO(3)H(2)(-)的强度可用于量化接枝聚合物的组成和数量。 ToF-SIMS还检测到了更具分子分子结构特征的离子(来自NaSS的C(6)H(4)SO(3)(-)和C(8)H(7)SO(3)(-) C(4)H(5)O(2)(-来自MA),但这些峰的强度取决于聚合物的厚度和组成。用人成骨细胞样细胞进行了体外细胞培养试验,以评估接枝聚合物对细胞反应的影响。孵育30分钟后,细胞粘附表现出移植和未移植表面之间的显着差异。 NaSS接枝表面表现出最高的细胞粘附度,而MA-NaSS接枝表面表现出最低的细胞粘附度。在兔股骨体内进行4周的活检后,观察到骨与所有植入物直接接触。 NaSS移植和未移植的植入物周围矿化组织的百分比相似(分别为59%和57%)。 MA-NaSS移植植入物的矿化组织数量较少(47%)。

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