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Preparation and Characterization of PVA Films with Magnetic Nanoparticles: The Effect of Particle Loading on Drug Release Behavior

机译:具有磁性纳米粒子的PVA薄膜的制备和表征:粒子负载对药物释放行为的影响

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This article deals with the drug release behavior of theophylline (Th) from poly(vinyl alcohol) (PVA) hydrogels, prepared with magnetic nanoparticles at different particle loadings. These biocompatible matrices were obtained by incorporating different amounts of an aqueous ferrofluid into PVA hydrogels, loaded with Th as a marker for drug-delivery studies. PVA films with magnetic particles proved to be magnetic field-responsive materials as the drug release decreased through the application of a relative low and uniform magnetic field for particle concentrations of 0.9% w/w or higher. Moreover, the percentage of restriction of drug release is found to be correlated with particle loading. The in vitro release profiles were analyzed by applying a semiempirical power law to obtain the kinetic parameters. The value of the release exponent was found to be in the range 0.54-0.56 in all experiments, which thus indicates a predominant diffusional mechanism for drug release from these smart magnetic hydrogels. This effect suggests the possibility of modulating the release behavior by controlling the particle content in the preparation of the composites.
机译:本文探讨了茶碱(Th)从聚(乙烯醇)(PVA)水凝胶中释放的行为,该水凝胶是用磁性纳米颗粒以不同的颗粒负载量制备的。这些生物相容性基质是通过将不同量的水性铁磁流体掺入PVA水凝胶中获得的,其中负载有Th作为药物递送研究的标记。带有磁性粒子的PVA膜被证明是磁场响应材料,因为对于0.9%w / w或更高的粒子浓度,通过施加相对较低且均匀的磁场,药物释放会降低。此外,发现药物释放的限制百分数与颗粒载量相关。通过应用半经验幂定律分析体外释放曲线以获得动力学参数。在所有实验中,释放指数的值都在0.54-0.56范围内,这表明药物从这些智能磁性水凝胶中释放的主要扩散机制。这种效果表明通过控制复合材料制备过程中的颗粒含量来调节释放行为的可能性。

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