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Covalent coupling of polymers as drug coatings on silicone surfaces for future applications

机译:聚合物的共价偶联作为未来应用硅树脂表面上的药物涂料

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摘要

Insertion of a cochlear implant (CI) into the scala tympani evokes electrode insertion trauma that can result in mechanical damage of the lateral and medial wall and causes ingrowth of fibrous tissue on the implant surface. In consequence, it is of great clinical interest to modify the silicone surface of CI electrodes in order to inhibit and minimize the overgrowth by connective tissue. In this case, the covalent coupling of bifunctional polymers on common CI silicone surfaces is a versatile method to influence the implant cell interaction, but is still a challenge due to the chemically unreactive properties of silicone. We present a sophisticated method to apply a biodegradable polymer coating, such as polylactide or polyhydroxybutyrate, on silicone surfaces to generate a drug delivery system using a covalently bound intermediate layer. The adhesive coatings were applied via spincoating processes with different adherence to the intermediate layer. Changes in surface morphology were investigated by comparison of pure silicone and coated silicone. Specific polymer bands of the infrared spectra were detected by IR spectroscopy. Results indicate a complete coating with polylactide or polyhydroxybutyrate. The presented method is a versatile tool for the coating of silicone CI electrodes with degradable polymer layers.
机译:耳蜗植入物(CI)的插入所述鼓阶唤起电极插入创伤,可能导致在外侧和内侧的壁机械损伤和原因向内生长植入物表面上的纤维组织。结果,这是很大的临床意义修改CI电极的硅表面,以抑制和减少由结缔组织过度生长。在这种情况下,共价的双官能聚合物在共同CI硅氧烷联接表面是影响植入物细胞相互作用的通用方法,但仍是一个挑战,因为有机硅的化学惰性性质。我们提出了一个复杂的方法来应用的可生物降解的聚合物涂层,如聚交酯或聚羟基丁酸酯,聚硅氧烷表面以使用共价结合的中间层的药物递送系统。粘合剂涂层通过与不同的附着到中间层旋涂工艺施加。由纯有机硅和有机硅涂布的比较中表面形貌的变化进行了研究。红外光谱的特定聚合物条带通过IR光谱法检测。结果表明与聚交酯或聚羟基丁酸酯的完整涂层。所提出的方法是用于硅氧烷CI电极具有可降解的聚合物层的涂层的多功能工具。

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