首页> 外文期刊>Journal of drug delivery science and technology >Electrospinning coating of nanoporous anodic alumina for controlling the drug release: Drug release study and modeling
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Electrospinning coating of nanoporous anodic alumina for controlling the drug release: Drug release study and modeling

机译:用于控制药物释放的纳米孔阳极氧化铝的静电纺丝涂层:药物释放研究和建模

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摘要

Local drug delivery system is a promising alternative to conventional methods. Recently, new implants with ordered nanoporous structure have been recommended to improve the local drug delivery performance, one of the favorites is the nanoporous anodic alumina (NAA). For controlling the drug release from NAA, we introduced a novel method by covering the NAA top surface with electrospinning nanofibers including PVDF/PEG. The film thickness and hydrophobicity properties of nanofibers are exploited to control drug release from NAA. The NAA implants were loaded with indole-3-acetic acid (IAA) as a drug model. Comparison of release characteristics of NAA samples with and without electrospinning coating revealed notable alteration in the IAA release profile. Electrospinning coating method can significantly decrease the burst release and prolong the duration of release from nanoporous structures. The behavior of IAA release from electrospinning coated NAA was described by a two-stage mechanism. The release in the first stage was modeled with the zero-order kinetics model, while in the second stage the release was modeled with the first-order kinetics model. The experimental data were fitted to the new model and an excellent agreement between the experimental data and this model was achieved.
机译:当地药物递送系统是对常规方法的有希望的替代品。最近,建议使用有序纳米多孔结构的新植入物改善局部药物递送性能,其中一个最爱是纳米多孔阳极氧化铝(NAA)。为了从NAA控制药物释放,我们通过覆盖NAA顶表面,通过静电素纳米纤维覆盖包括PVDF / PEG的NAA顶表面。纳米纤维的膜厚度和疏水性性质被利用以控制来自NAA的药物释放。将NAA植入物用吲哚-3-乙酸(IAA)作为药物模型装载。 NAA样品的释放特性与静电纺丝涂层的释放特性进行了显着的改变IAA释放曲线。静电纺丝涂布方法可以显着降低爆破释放并延长纳米多孔结构的释放持续时间。通过两阶段机制描述了IAA释放从静电纺丝涂覆NAA的行为。第一阶段中的释放是用零级动力学模型建模的,而在第二阶段中,释放用一阶动力学模型建模。实验数据适用于新模式,实验数据与该模型之间的良好协议。

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