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药物从多组分生物材料中的控释。

Controlled release of drugs from multi-component biomaterials.

作者信息

Zalfen A M, Nizet D, Jérôme C, Jérôme R, Frankenne F, Foidart J M, Maquet V, Lecomte F, Hubert P, Evrard B

机构信息

Center for Education and Research on Macromolecules, University of Liège, Liège 4000, Belgium.

出版信息

Acta Biomater. 2008 Nov;4(6):1788-96. doi: 10.1016/j.actbio.2008.05.021. Epub 2008 Jun 5.

Abstract

In order to control their release, drugs are encapsulated into systems which are expected to provide a certain site with a predetermined amount of drug over a well-defined period of time. Here we report on a multi-component drug delivery biomaterial that consists of a hydrogel matrix in which drug-loaded biodegradable microcarriers are dispersed, and whose potential applications could be found in the design of implantable devices with long-term activity, as required by contraceptive and hormone replacement treatments. The release profile of the drug can actually be tuned by the complex interplay of several release mechanisms, including the permeability and eventually the degradation rate of the microcarriers and the diffusion through the hydrogel. The hydrogel consisted of 2-hydroxyethyl methacrylate cross-linked by ethylene glycol dimethacrylate. The microcarriers were biodegradable poly-epsilon-caprolactone (PCL) microspheres in which active molecules, such as levonorgestrel (LNG), were encapsulated. The hydrogels were characterized by water swelling, thermal properties, LNG diffusion through drug-free and drug-depleted hydrogel membranes and LNG release from devices with drug dispersed in the hydrogel. The PCL microspheres were observed by scanning electron microscopy; their size distribution, LNG loading and release were also investigated. The hydrogel-microsphere assemblies were characterized in terms of the distribution of the microspheres within the hydrogel, water swelling and the release of the encapsulated molecules. The developed device, due to its composite structure, has the ability to combine several release mechanisms, leading to drug release obeying zero-order kinetics for most of the time.

摘要

为了控制药物释放,药物被封装在一些系统中,这些系统预期能在一段明确的时间内为特定部位提供预定剂量的药物。在此,我们报道一种多组分药物递送生物材料,它由水凝胶基质组成,其中分散有载药的可生物降解微载体,并且其潜在应用可在避孕和激素替代治疗所需的具有长期活性的可植入装置设计中找到。药物的释放曲线实际上可通过几种释放机制的复杂相互作用来调节,这些机制包括微载体的渗透性以及最终的降解速率,还有药物通过水凝胶的扩散。该水凝胶由甲基丙烯酸2 - 羟乙酯通过乙二醇二甲基丙烯酸酯交联而成。微载体是可生物降解的聚ε - 己内酯(PCL)微球,其中包封有活性分子,如左炔诺孕酮(LNG)。通过水膨胀、热性能、LNG在无药和药物耗尽的水凝胶膜中的扩散以及LNG从药物分散在水凝胶中的装置中的释放来表征水凝胶。通过扫描电子显微镜观察PCL微球;还研究了它们的尺寸分布、LNG负载量和释放情况。根据微球在水凝胶中的分布、水膨胀以及包封分子的释放来表征水凝胶 - 微球组件。所开发的装置由于其复合结构,能够结合多种释放机制,导致药物在大部分时间内遵循零级动力学释放。

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