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首页> 外文期刊>Nanobiotechnology, IET >Design, characterisation and drug release study of polymeric, drug-eluting single layer thin films on the surface of intraocular lenses
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Design, characterisation and drug release study of polymeric, drug-eluting single layer thin films on the surface of intraocular lenses

机译:聚合物,鉴别和药物释放研究在眼镜透镜表面上的单层薄膜

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摘要

To design, develop and study a novel drug delivery system for intraocular applications. The spin coating technique was applied to develop a polymeric, drug-eluting thin film consisting of a blend of organic polymers [poly (D, L lactide coglycolide) lactide: glycolide 75: 25, PLGA and polycaprolactone, PCL] and dexamethasone on the surface of intraocular lenses (IOLs). The initial durability of the IOLs during spinning was assessed. Information about the structural and optical properties of the modified IOLs was extracted using atomic force microscopy, scanning electron microscopy and spectroscopic ellipsometry. A drug release study was conducted for 8 weeks. The IOLs were durable in spinning speeds higher than the ones used to develop thin films. Single-layer thin films were successfully developed on the optics and the haptics of the lenses. The films formed nanopores with encapsulated aggregates of dexamethasone. The spectroscopic ellipsometry showed an acceptable optical transparency of the lenses regardless of the deposition of the drug-eluting films on their surface. The drug release study demonstrated gradual dexamethasone release over the selected period. In conclusion, the novel drug-eluting IOL system exhibited desired properties regarding its transparency and drug release rate. Further research is necessary to assess their suitability as an intraocular drug delivery system.
机译:设计,开发和研究一种用于眼内应用的新药输送系统。旋转涂层技术用于开发由有机聚合物的混合物组成的聚合物,药物洗脱薄膜[聚(D,L丙交酯圆锥糖苷)丙交酯:乙酰胺75:25,PLGA和聚己内酯,PCL]和地面上的地塞米松神经透镜(IOL)。评估纺丝期间IOL的初始耐久性。用原子力显微镜,扫描电子显微镜和光谱椭圆形提取有关改性IOL的结构和光学性质的信息。对药物释放研究进行了8周。 IOL在纺丝速度高于用于开发薄膜的旋转速度耐用。在光学和镜片的光学和触觉上成功开发单层薄膜。将膜形成纳米孔,其具有地塞米松的包封聚集体。光谱椭圆形测定法显示了透镜的可接受的光学透明性,无论在它们的表面上沉积药物洗脱膜。药物释放研究证明了所选时期逐渐逐渐筛选。总之,新型药物洗脱的IOL系统表现出关于其透明度和药物释放速率的所需特性。进一步的研究是评估其作为人工药物输送系统的适用性。

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