首页> 外文期刊>Journal of solid state electrochemistry >The importance of the film structure during self-powered ibuprofen salicylate drug release from polypyrrole electrodeposited on AZ31 Mg
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The importance of the film structure during self-powered ibuprofen salicylate drug release from polypyrrole electrodeposited on AZ31 Mg

机译:自供电布洛芬水杨酸酯从电沉积在AZ31镁上的聚吡咯释放过程中膜结构的重要性

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摘要

Therapeutic drugs uploaded into conjugated conductive polymer matrices deposited on active magnesium alloys serve as controlled-dose, self-powered drug-delivery systems. Preferentially, drugs are added into polymer films in the largest amount possible, mostly to prevent long-term treatments. However, added drugs can interact with the polymer matrix affecting either the structure or the final mechanical properties of the polymer film. In this work, polypyrrole films (PPy) electrodeposited on an AZ31 Mg alloy in ibuprofen and salicylate-containing solutions are investigated in terms of their uploading capacity, surface morphology and mechanical properties. The techniques used to investigate the uploaded PPy films include cyclic voltammetry (CV), scanning electron microscopy (SEM), EDS, and depth-sensing indentation (DSI). A maximum ibuprofen concentration of 440 +/- 40 mu g cm(-2) was obtained in PPy films in the presence of sodium salicylate. The release fraction of ibuprofen as a function of time is fitted to Avrami's equation. The hardness and reduced modulus decreased by 54 and 40 %, respectively, when the PPy films are prepared in the presence of sodium ibuprofen compared with those prepared in sodium salicylate only, indicating a more plastic film with ibuprofen.
机译:上传到沉积在活性镁合金上的共轭导电聚合物基质中的治疗药物用作控制剂量,自供电的药物递送系统。优选地,将药物尽可能多地添加到聚合物膜中,主要是为了防止长期治疗。然而,添加的药物可以与聚合物基质相互作用,从而影响聚合物膜的结构或最终的机械性能。在这项工作中,研究了在布洛芬和含水杨酸盐的溶液中电沉积在AZ31 Mg合金上的聚吡咯膜(PPy)的上载量,表面形态和机械性能。用于研究上载的PPy膜的技术包括循环伏安法(CV),扫描电子显微镜(SEM),EDS和深度感应压痕(DSI)。在水杨酸钠存在的情况下,PPy膜中布洛芬的最大浓度为440 +/- 40μg cm(-2)。布洛芬的释放分数随时间的变化适合于Avrami方程。与仅在水杨酸钠中制备的PPy薄膜相比,在布洛芬钠存在下制备的PPy薄膜的硬度和降低的模量分别降低了54%和40%,这表明与布洛芬相比,薄膜更具塑性。

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