首页> 外文期刊>International Journal of Pharmaceutics >Preparation and in vivo efficient anti-infection property of GTR/GBR implant made by metronidazole loaded electrospun polycaprolactone nanofiber membrane
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Preparation and in vivo efficient anti-infection property of GTR/GBR implant made by metronidazole loaded electrospun polycaprolactone nanofiber membrane

机译:甲硝唑负载电纺聚己内酯纳米纤维膜制备的GTR / GBR植入物的制备及体内高效抗感染性能

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Infection is the major reason of GTR/GBR membrane failure in clinical application. In this work, we developed GTR/GBR nanofiber membranes with localized drug delivery function to prevent infection. Metronidazole (MNA), an antibiotic, was successfully incorporated into electrospun polycaprolactone (PCL) nanofibers at different concentrations (0, 1, 5, 10, 20, 30, and 40wt% polymer). To obtain the optimum anti-infection membrane, we systematically investigated the physical-chemical and mechanical properties of the nanofiber membranes with different drug contents. The interaction between PCL and MNA was identified by molecular dynamics simulation. MNA released in a controlled, sustained manner over 2 weeks and the antibacterial activity of the released MNA remained. The incorporation of MNA improved the hydrophilicity and in vitro biodegradation rate of PCL nanofibers. The nanofiber membranes allowed cells to adhere to and proliferate on them and showed excellent barrier function. The membrane loaded with 30% MNA had the best comprehensive properties. Analysis of subcutaneous implants demonstrated that MNA-loaded nanofibers evoked a less severe inflammatory response than pure PCL nanofibers. These results demonstrate the potential of MNA-loaded nanofiber membranes as GTR/GBR membrane with antibacterial and anti-inflammatory function for extensive biomedical applications.
机译:感染是临床应用中GTR / GBR膜衰竭的主要原因。在这项工作中,我们开发了具有局部药物输送功能以防止感染的GTR / GBR纳米纤维膜。甲硝唑(MNA)是一种抗生素,已成功地以不同的浓度(聚合物的0、1、5、10、20、30和40wt%)掺入电纺聚己内酯(PCL)纳米纤维中。为了获得最佳的抗感染膜,我们系统地研究了具有不同药物含量的纳米纤维膜的物理化学和机械性能。通过分子动力学模拟鉴定了PCL和MNA之间的相互作用。 MNA在2周内以受控,持续的方式释放,并且所释放的MNA的抗菌活性得以保持。 MNA的加入提高了PCL纳米纤维的亲水性和体外生物降解率。纳米纤维膜使细胞粘附并在其上增殖,并表现出出色的屏障功能。负载了30%MNA的膜具有最佳的综合性能。皮下植入物的分析表明,与纯PCL纳米纤维相比,装有MNA的纳米纤维引起的炎症反应较轻。这些结果证明,装载MNA的纳米纤维膜作为具有抗菌和消炎功能的GTR / GBR膜具有广泛的生物医学应用潜力。

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