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首页> 外文期刊>International Journal of Pharmaceutics >Dual drug-loaded coaxial nanofibers for the treatment of corneal abrasion
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Dual drug-loaded coaxial nanofibers for the treatment of corneal abrasion

机译:用于治疗角膜磨损的双药物加载的同轴纳米纤维

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摘要

Corneal abrasion is a scratch wound on the surface of the anterior segment of the eye, which can predispose a patient to corneal infection and scarring, particularly if the cut penetrates to the deep corneal layers. Here we investigate a novel approach to co-administer an anti-scarring agent and an antibiotic, both being incorporated into one dosage form so as to accelerate wound closure and to treat any associated infection. More specifically, we have used electrospun fibers as a means of incorporating the two drugs into distinct compartments via coaxial electrospinning. Samples were characterised using a range of imaging, spectroscopic and thermal methods, while an HPLC assay has been developed to allow measurement of the concentration of both drug components in both the initial fibers and on release. Fibers loaded with pirfenidone in the hydrophobic polymer, PLGA, as the outer layer and moxifloxacin in the hydrophilic polymer PVP as the inner layer were successfully prepared, with smooth and non-porous surfaces and a mean diameter of circa 630 nm. TEM image demonstrated clear distinctive layers (a core and a shell), suggesting the successful preparation of the drug-loaded coaxial fibers, supported by HPLC entrapment studies, while fluorescence microscopy confirmed the presence of the moxifloxacin within the fibers. The fibers were capable of extending the release of both drugs, hence raising the possibility of a single daily dose of the drug-loaded coaxial fibers for the treatment of corneal abrasion.
机译:角膜磨损是在眼睛前段的表面上缠绕的划痕,这可以使患者倾向于角膜感染和瘢痕,特别是如果切割渗透到深角膜层。在这里,我们研究了一种新的方法来共同施用抗疤痕剂和抗生素,两者都掺入一种剂型中,以加速伤口闭合并治疗任何相关的感染。更具体地,我们使用Electromun纤维作为通过同轴电纺丝将两种药物掺入不同隔室的方法。使用一系列成像,光谱和热方法表征样品,同时已经开发了HPLC测定以允许在初始纤维和释放中测量两种药物组分的浓度。作为内层的疏水聚合物,PLGA在疏水聚合物中加载疏水聚合物,PLGA的纤维,作为内层的亲水性聚合物PVP中的外层和Moxifloxacin,具有光滑且无孔的表面,平均直径为630nm。 TEM图像显示出明显的独特层(核心和壳),表明由HPLC熵研究支持的药物加载的同轴纤维的成功制备,而荧光显微镜检查证实纤维内莫西沙星的存在。纤维能够延长两种药物的释放,因此提高了单一日剂量的药物加载同轴纤维的可能性,用于治疗角膜磨损。

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