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In vitro and Mechanism Study of Poly(ethylene-co-vinyl acetate)-Based Implant for Sustained Release of Vitamin B12

机译:聚(乙烯-乙酸乙烯酯)基植入物用于维生素B12持续释放的体外及机理研究

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摘要

A polymer-vitamin B12 implant system has been developed to overcome the disadvantages of traditional vitamin B12 administration to sheep. The ethylene/vinyl acetate (EVAc) copolymer was pre-blended with crystalline vitamin B12. The blends were then extruded at 100 °C at a constant pressure and rate using a piston extruder to form a polymer-vitamin B12 composite cord. The final implant was a cylinder 2 mm in diameter and 4 mm in length. Determination of the rate of vitamin B12 release from the implant into a pH7.4 phosphate buffer at 37 °C showed that the release rate was strongly dependent on the feed concentration, size and shape of vitamin B12 crystals. The well-known Korsmeyer-Peppas exponential equation was applied to and the release mechanism was found to be a typical anomalous transport mechanism with a strong diffusion-controlled feature between pure diffusion-controlled and Case-II transport mechanisms because the n values obtained were between 0.45 and 0.51 for most polymer-vitamin B12 cylindrical implant systems.
机译:已经开发出一种聚合物-维生素B12植入系统,以克服传统维生素B12对绵羊给药的缺点。乙烯/乙酸乙烯酯(EVAc)共聚物与晶体维生素B12预混合。然后使用活塞挤出机在100°C下以恒压和恒定速率挤出共混物,以形成聚合物-维生素B12复合帘线。最终的植入物是直径2 mm,长度4 mm的圆柱体。在37°C下测定从植入物释放到pH7.4磷酸盐缓冲液中的维生素B12的释放速率,表明释放速率强烈取决于维生素B12晶体的进料浓度,大小和形状。应用著名的Korsmeyer-Peppas指数方程,发现释放机制是典型的异常传输机制,在纯扩散控制和Case-II传输机制之间具有很强的扩散控制特征,因为获得的n值介于对于大多数聚合物-维生素B12圆柱植入系统,分别为0.45和0.51。

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