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Grafting bioactive polymers onto titanium implants by UV irradiation

机译:通过UV辐射将生物活性聚合物接枝到钛植入物上

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The anchorage failure of titanium implants in the human body is mainly due to biointegration problems. The use of bioactive polymers bearing anionic groups (such as sulfonates) in combination with titanium-based materials has been shown to be an excellent solution. In this paper, we report the grafting of an ionic polymer poly(sodium styrene sulfonate) (polyNaSS), in a two-step reaction procedure using UV irradiation. First, the titanium surfaces were chemically oxidized to allow the formation of titanium hydroxide and titanium peroxide. Then, titanium samples were immersed in a solution of sodium styrene sulfonate (NaSS) and were placed under UV irradiation to induce the decomposition of titanium peroxides with the formation of radicals capable of initiating the polymerization of the monomer NaSS. Various parameters, such as polymerization time, monomer concentration and lamp power were studied in order to optimize the yield of polyNaSS grafting. Fourier-transform infrared spectra recorded in attenuated total reflection mode (ATR-FTIR), scanning electron microscopy with Oxford energy dispersive spectroscopy (SEM-EDS) and contact angle measurements were applied to characterize the poly(NaSS) grafting. The amount of poly(NaSS) grafted onto the titanium surfaces was determined by the toluidine blue colorimetric method.
机译:人体中钛植入物的锚固失效主要是由于生物整容问题。已经显示出与钛基材料组合轴承阴离子基团(如磺酸盐)的生物活性聚合物的使用是优异的溶液。在本文中,我们在使用紫外线照射中报告了在两步反应程序中的离子聚合物聚(苯乙烯磺酸钠)(多元酸钠)的接枝。首先,将钛表面化学氧化以允许形成氢氧化钛和过氧化钛。然后,将钛样品浸入苯乙烯磺酸钠(NASS)的溶液中,并在UV辐射下置于诱导过氧化物的分解,形成能够引发单体NAS的聚合的基团。研究了各种参数,例如聚合时间,单体浓度和灯功率,以优化多元嫁接的产率。傅里叶变换在衰减的总反射模式(ATR-FTIR)中记录的红外光谱,扫描电子显微镜与牛津能量分散光谱(SEM-EDS)和接触角测量以表征聚(NASS)接枝。接枝在钛表面上的聚(NASS)的量由甲苯胺蓝色比色法测定。

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