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Drug delivery systems based on polymer blends: Synthesis, characterization and application.

机译:基于聚合物共混物的药物输送系统:合成,表征和应用。

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Polymer blending is the physical mixing of two or more existing polymers. It offers an effective way to produce new polymeric materials with combined excellent properties. With this technique, non-toxic, biocompatible hydrogels can be synthesized through mixing biocompatible polymers in the absence of the toxic agents, such as crosslinking agents, initiators and residual monomers, which are inevitable in regular polymerization processes. In this regard, this project focuses on the development of new drug delivery systems based upon blending of polymers with known biocompatibility. The first part of the project was to synthesize hydrogels from blending of two hydrophilic polymers-polyvinyl alcohol (PVA) and polyvinyl pyrrolidone (PVP). The hydrogel characteristics and model drug release were evaluated. The second part of the research was to incorporate biodegradable poly (D, L-lactide-co-glycolide) microparticles (∼10μm) containing a model drug into hydrogel matrices of PVA, with the crystallites of PVA serving as the crosslinking points. The release of the drug formulated in the polymeric composite was controlled by the degradation of the microparticles and the diffusion through the hydrogel matrix. Furthermore, a multilayer approach was adopted to reduce the initial burst effect by offering additional diffusion barriers. An empirical model of drug release from the multilayer composite was developed and applied to estimate the effects of outer layer thickness and particle size on the release from the delivery system.
机译:聚合物共混是两种或多种现有聚合物的物理混合。它提供了一种生产具有优良综合性能的新型聚合物材料的有效方法。利用这种技术,可以通过在不存在常规聚合过程中不可避免的有毒试剂(例如交联剂,引发剂和残留单体)的情况下混合生物相容性聚合物来合成无毒的生物相容性水凝胶。在这方面,该项目着重于基于具有已知生物相容性的聚合物共混的新药物递送系统的开发。该项目的第一部分是从两种亲水性聚合物聚乙烯醇(PVA)和聚乙烯吡咯烷酮(PVP)的混合物中合成水凝胶。评价了水凝胶特性和模型药物释放。研究的第二部分是将含有模型药物的可生物降解的聚(D,L-丙交酯-乙交酯)微粒(〜10μm)掺入PVA的水凝胶基质中,以PVA的微晶为交联点。通过微粒的降解和通过水凝胶基质的扩散来控制配制在聚合物复合材料中的药物的释放。此外,采用多层方法以通过提供附加的扩散阻挡层来降低初始突发效应。建立了从多层复合材料释放药物的经验模型,并将其用于估算外层厚度和粒径对释放系统释放的影响。

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