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Dissolution and Swelling Behaviour of Plasma-Polymerized Polyethylene Glycol-Like Hydrogel Films for use as Drug Delivery Reservoirs

机译:等离子体聚合聚乙二醇样水凝胶薄膜用作药物输送储层的溶解和溶胀行为

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Plasma-polymerized polyethylene glycol-like (PEG) thin films were deposited for use as reservoirs in drug delivery applications. Radio frequency power, reactor pressure and deposition temperature were varied in a parallel-plate plasma reactor to obtain two films with different relative crosslink densities, which were established by refractive indices. Variation of crosslink density allowed the tailoring of film swelling and chemical stability in aqueous environments. Film thicknesses and optical properties were measured with variable angle spectroscopic ellipsometry. In-situ ellipsometry dynamically monitored reversible film thickness changes in the presence of water vapor. Highly crosslinked films (deposited at elevated power and temperature and reduced pressure) swelled ~15% and relatively low crosslink density swelled ~70%. Electrophoretic immobilization tested these PEG films as storage materials for drugs. Negatively charged green fluorescent protein (GFP) was used as a model drug and fluorescence marker. Relatively highly crosslinked films showed enhanced incorporation of drifted GFP relative to incorporation by diffusion.
机译:沉积等离子体聚合的聚乙二醇样(PEG)薄膜用作药物递送应用中的储层。在平行板等离子体反应器中,射频功率,反应器压力和沉积温度变化,以获得具有不同相对交联密度的两种膜,其通过折射率建立。交联密度的变化允许粉碎薄膜溶胀和水性环境中的化学稳定性。用可变角度光谱椭圆形测量膜厚度和光学性质。原位椭圆测定法动态地监测水蒸气存在下的可逆膜厚度变化。高度交联的薄膜(沉积在升高的功率和温度和减压下)溶胀〜15%,相对低的交联密度膨胀〜70%。电泳固定化将这些PEG薄膜作为药物的储存材料测试。使用带负电的绿色荧光蛋白(GFP)作为模型药物和荧光标记物。相对于通过扩散掺入,相对高度交联的薄膜显示漂移的GFP的增强掺入。

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