Zilberman Meital, Kraitzer Amir, Grinberg Orly, Elsner Jonathan J
Dept. of Biomedical Engineering, Faculty of Engineering, Tel-Aviv University, Tel-Aviv 69978, Israel.
Handb Exp Pharmacol. 2010(197):299-341. doi: 10.1007/978-3-642-00477-3_11.
Drug-eluting medical implants are actually active implants that induce healing effects, in addition to their regular task of support. This effect is achieved by controlled release of active pharmaceutical ingredients (API) into the surrounding tissue. In this chapter we focus on three types of drug-eluting devices: drug-eluting vascular stents, drug-eluting wound dressings and protein-eluting scaffolds for tissue regeneration, thus describing both internal and external implants. Each of these drug-eluting devices also presents an approach for solving the drug release issue. Most drug-eluting vascular stents are loaded with water-insoluble antiproliferative agents, and their diffusion from the device to the surrounding tissue is relatively slow. In contrast, most drug-eluting wound dressings are loaded with highly water-soluble antibacterial agents and the issue of fast release must therefore be addressed. Growth factor release from scaffolds for tissue regeneration offers a new approach of incorporating high-molecular-weight bioactive agents which are very sensitive to process conditions and preserve their activity during the preparation stage. The drug-eluting medical implants are described here in terms of matrix formats and polymers, incorporated drugs and their release profiles from the implants, and implant functioning. Basic elements, such as new composite core/shell fibers and structured films, can be used to build new antibiotic-eluting devices. As presented in this chapter, the effect of the processing parameters on the microstructure and the resulting drug release profiles, mechanical and physical properties, and other relevant properties, must be elucidated in order to achieve the desired properties. Newly developed implants and novel modifications of previously developed approaches have enhanced the tools available for creating clinically important biomedical applications.
药物洗脱医疗植入物实际上是除了具有常规支撑任务外还能诱导愈合效果的活性植入物。这种效果是通过将活性药物成分(API)可控地释放到周围组织中来实现的。在本章中,我们重点关注三种类型的药物洗脱装置:药物洗脱血管支架、药物洗脱伤口敷料和用于组织再生的蛋白质洗脱支架,从而描述内部和外部植入物。这些药物洗脱装置中的每一种也都提出了解决药物释放问题的方法。大多数药物洗脱血管支架装载的是水不溶性抗增殖剂,其从装置扩散到周围组织的速度相对较慢。相比之下,大多数药物洗脱伤口敷料装载的是高水溶性抗菌剂,因此必须解决快速释放的问题。从用于组织再生的支架中释放生长因子提供了一种纳入对加工条件非常敏感且在制备阶段保持其活性的高分子量生物活性剂的新方法。这里从基质形式和聚合物、所含药物及其从植入物中的释放曲线以及植入物功能方面描述了药物洗脱医疗植入物。基本元件,如新型复合核/壳纤维和结构化薄膜,可用于构建新的抗生素洗脱装置。如本章所述,为了获得所需性能,必须阐明加工参数对微观结构以及由此产生的药物释放曲线、机械和物理性能及其他相关性能的影响。新开发的植入物和对先前开发方法的新颖改进增强了用于创建具有临床重要性的生物医学应用的工具。