Interdisciplinary Program for Bioengineering, College of Engineering, Seoul National University, Seoul 08826, South Korea.
Department of Biomedical Engineering, Seoul National University, College of Medicine, Seoul 03080, South Korea.
Mater Sci Eng C Mater Biol Appl. 2020 Apr;109:110565. doi: 10.1016/j.msec.2019.110565. Epub 2019 Dec 16.
We propose an elastic net made of a biocompatible polymer to wrap silicone implants of various sizes, which also allows for the sustained release of an anti-inflammatory drug, triamcinolone, to prevent fibrosis. For this, we first prepared a strand composed of a mixture of polyurethane and triamcinolone via electrospinning, which was then assembled to prepare the elastic drug-delivery net (DDN). The DDN was prepared to just fit for wrapping the small silicone implant sample herein, but was also able to wrap a sample 7 times as large at 72% strain due to the elastic property of polyurethane. The DDN exhibited sustained drug release for 4 weeks, the profile of which was not very different between the intact and strained DDNs. When implanted in a subcutaneous pocket in living rats, the DDN-wrapped silicone implant samples showed an obvious antifibrotic effect due to the sustained release of triamcinolone. Importantly, this effect was similar for the small and large silicone samples, both wrapped with the same DDN. Therefore, we conclude that this drug-loaded net made of an elastic, biocompatible polymer has high potential for sustained drug delivery around silicone implants manufactured in various sizes.
我们提出了一种由生物相容性聚合物制成的弹性网,用于包裹各种尺寸的硅胶植入物,同时还可以持续释放抗炎药物曲安奈德,以防止纤维化。为此,我们首先通过静电纺丝制备了由聚氨酯和曲安奈德混合物组成的纤维,然后将其组装成弹性药物输送网(DDN)。DDN 制备得刚好适合包裹本文中的小硅胶植入物样品,但由于聚氨酯的弹性,它也能够在 72%的应变下包裹 7 倍大的样品。DDN 表现出持续 4 周的药物释放,其完整和应变 DDN 之间的释放曲线没有很大差异。当植入活鼠的皮下囊中时,由于曲安奈德的持续释放,DDN 包裹的硅胶植入物样品显示出明显的抗纤维化效果。重要的是,对于用相同的 DDN 包裹的小和大硅胶样品,都观察到了这种效果。因此,我们得出结论,这种由弹性、生物相容性聚合物制成的载药网具有在各种尺寸的硅胶植入物周围持续输送药物的巨大潜力。