Highly porous drug-eluting structures: from wound dressings to stents and scaffolds for tissue regeneration.

Biomatter Pub Date : 2012-10-01 DOI:10.4161/biom.22838
Jonathan J Elsner, Amir Kraitzer, Orly Grinberg, Meital Zilberman
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引用次数: 20

Abstract

For many biomedical applications, there is need for porous implant materials. The current article focuses on a method for preparation of drug-eluting porous structures for various biomedical applications, based on freeze drying of inverted emulsions. This fabrication process enables the incorporation of any drug, to obtain an "active implant" that releases drugs to the surrounding tissue in a controlled desired manner. Examples for porous implants based on this technique are antibiotic-eluting mesh/matrix structures used for wound healing applications, antiproliferative drug-eluting composite fibers for stent applications and local cancer treatment, and protein-eluting films for tissue regeneration applications. In the current review we focus on these systems. We show that the release profiles of both types of drugs, water-soluble and water-insoluble, are affected by the emulsion's formulation parameters. The former's release profile is affected mainly through the emulsion stability and the resulting porous microstructure, whereas the latter's release mechanism occurs via water uptake and degradation of the host polymer. Hence, appropriate selection of the formulation parameters enables to obtain desired controllable release profile of any bioactive agent, water-soluble or water-insoluble, and also fit its physical properties to the application.

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高多孔药物洗脱结构:从伤口敷料到组织再生的支架和支架。
对于许多生物医学应用,需要多孔植入材料。本文主要研究了一种基于倒置乳剂的冷冻干燥制备用于各种生物医学应用的药物洗脱多孔结构的方法。这种制造过程可以掺入任何药物,以获得一种“活性植入物”,以控制所需的方式将药物释放到周围组织。基于该技术的多孔植入物有用于伤口愈合应用的抗生素洗脱网/基质结构,用于支架应用和局部癌症治疗的抗增殖药物洗脱复合纤维,以及用于组织再生应用的蛋白质洗脱膜。在当前的审查中,我们主要关注这些系统。我们发现,两类药物(水溶性和非水溶性)的释放曲线都受到乳剂配方参数的影响。前者的释放主要受乳液稳定性和由此产生的多孔微观结构的影响,而后者的释放机制是通过吸水和宿主聚合物的降解来实现的。因此,适当选择制剂参数,可以获得水溶性或不水溶性生物活性剂所需的可控释放曲线,并使其物理性质适合应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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