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Doxycycline-Eluting Core-Shell Type Nanofiber-Covered Trachea Stent for Inhibition of Cellular Metalloproteinase and Its Related Fibrotic Stenosis

机译:强力霉素洗脱核壳型纳米纤维覆盖的气管支架抑制细胞金属蛋白酶及其相关纤维化狭窄

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摘要

In this study, we fabricated a doxycycline (doxy)-eluting nanofiber-covered endotracheal stent for the prevention of stent intubation-related tissue fibrosis and re-stenosis. The nanofiber was deposited directly on the outer surface of the stent using a coaxial electrospinning method to form a doxy-eluting cover sleeve. Poly(d,l-lactide) was used as the shell-forming polymer and dedicated drug release-control membrane. Polyurethane was selected as the drug-loading core polymer. The compositional ratio of the core to shell was adjusted to 1:0, 1:2, and 1:4 by changing the electro-spray rate of each polymeric solution and microscopic observation of nanofibers using scanning electron microscopy (SEM), transmission electron microscopy (TEM), and the fluorescence microscopy proved core-shell structure of nanofibers. The in vitro release study suggested that the release of doxy could be controlled by increasing the compositional ratio of the shell. The growth of HT1080 fibrosarcoma cells was inhibited by the 10% doxy-containing nanofiber. The real-time polymerase chain reaction (PCR) in HT1080 cells and xenografted tissue models indicated that the doxy-releasing nanofiber inhibited mRNA expression of metalloproteinases (MT1-MMP, MMP-2, and MMP-9). Overall, our study demonstrates that a doxy-eluting core-shell nanofiber stent can be successfully fabricated using coaxial electrospinning and displays the potential to prevent fibrotic re-stenosis, which is the most problematic clinical complication of tracheal stent intubation.
机译:在这项研究中,我们制造了强力霉素(doxy)洗脱的纳米纤维覆盖的气管支架,以防止与支架插管相关的组织纤维化和再狭窄。使用同轴电纺丝法将纳米纤维直接沉积在支架的外表面上,以形成强力洗脱的覆盖套。聚(d,1-丙交酯)用作形成壳的聚合物和专用的药物释放控制膜。选择聚氨酯作为载药核心聚合物。通过改变每种聚合物溶液的电喷雾速率并使用扫描电子显微镜(SEM),透射电子显微镜对纳米纤维进行显微镜观察,将核壳的组成比调整为1:0、1:2和1:4 (TEM),并且荧光显微镜证明了纳米纤维的核-壳结构。体外释放研究表明,可通过增加壳的组成比来控制双氧水的释放。含10%doxy的纳米纤维抑制了HT1080纤维肉瘤细胞的生长。 HT1080细胞和异种移植组织模型中的实时聚合酶链反应(PCR)表明,释放脱氧核糖的纳米纤维抑制了金属蛋白酶(MT1-MMP,MMP-2和MMP-9)的mRNA表达。总体而言,我们的研究表明,使用同轴电纺丝可以成功制备出脱氧核糖核壳纳米纤维支架,并显示出预防纤维化再狭窄的潜力,这是气管支架插管中最成问题的临床并发症。

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