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首页> 外文期刊>Biomedizinische Technik >Implant-associated local drug delivery systems based on biodegradable polymers: customized designs for different medical applications
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Implant-associated local drug delivery systems based on biodegradable polymers: customized designs for different medical applications

机译:基于可生物降解聚合物的植入物相关局部药物输送系统:针对不同医学应用的定制设计

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摘要

Implants providing controlled, local release of active substances are of interest in different medical applications. Therefore, the focus of the present article is the development of implant-associated diffusion- or chemically controlled local drug delivery (LDD) systems based on biodegradable polymeric drug carriers. In this context, we provide new data and review our own recently published data concerning the drug release behavior of diffusion-controlled LDD systems in relation to the kind of polymer, drug content, coating mass/thickness, and layer composition. We demonstrate that polymers allow a wide range of control over the drug release characteristics. In this regard, we show that the glass transition temperature of a polymer has an impact on its drug release. Additionally, the blending of hydrophobic, semicrystalline polymers with amorphous polymers leads to an increase in the rate of drug release compared with the pure semicrystalline polymer. Moreover, the percentage loading of the embedded drug has a considerable effect on the rate and duration of drug release. Furthermore, we discuss chemically controlled LDD systems designed for the release of biomolecules, such as growth factors, as well as nanoparticle-mediated LDD systems. With our own published data on drug-elut-ing stents, microstents, and cochlear implants, we highlight exemplary implant-associated LDD systems designed to improve implant performance through the reduction of undesirable effects such as in-stent restenosis and fibrosis.
机译:提供可控的,局部释放的活性物质的植入物在不同的医学应用中受到关注。因此,本文的重点是开发基于可生物降解的聚合物药物载体的植入物相关扩散或化学控制的局部药物递送(LDD)系统。在这种情况下,我们提供了新的数据并回顾了我们自己最近发表的有关扩散控制的LDD系统的药物释放行为的数据,这些数据与聚合物的种类,药物含量,涂层质量/厚度和层组成有关。我们证明了聚合物可以对药物释放特性进行广泛的控制。在这方面,我们表明聚合物的玻璃化转变温度对其药物释放有影响。另外,与纯半结晶聚合物相比,疏水性半结晶聚合物与无定形聚合物的共混导致药物释放速率的增加。此外,包埋药物的百分含量对药物释放的速率和持续时间有相当大的影响。此外,我们讨论了设计用于释放生物分子(例如生长因子)的化学控制的LDD系统,以及纳米粒子介导的LDD系统。利用我们自己发表的有关药物洗脱支架,微支架和耳蜗植入物的数据,我们重点介绍了与示例性植入物相关的LDD系统,这些系统旨在通过减少支架内再狭窄和纤维化等不良影响来提高植入物的性能。

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