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Cytotoxicity of Catalysed Silicone Resin Coatings for Smart Biomedical Devices : Current Directions in Biomedical Engineering

机译:智能生物医学设备用催化硅树脂涂层的细胞毒性:生物医学工程的最新方向

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Equipping medical devices with smart technologies holds great potential for the development of modern medical products. The development requires the identification of new integration strategies and the research of new material combinations due to the miniaturization of systems and increasing production figures. The realization of Smart Biomedical Devices requires a sufficient barrier effect (bioprotection) by appropriate encapsulation of the electronic components. Thinnest polymer coatings have proven to be suitable for conformal encapsulation. The aim of the study was to investigate the fundamental suitability of thin-film lacquers added with catalysts as coating materials for electronic systems with regard to their biological use. Due to long curing times of up to 14 days, eight different catalysts based on different chemical structures were added to the coating materials and their influence on a cytotoxic effect was investigated. A non-cytotoxic effect was observed for the organometallic catalysts based on tin, zirconium, titanium, bismuth, and tertiary amine. Most were resistant to steam sterilization. The curing time of the non-cytotoxic coatings could be significantly reduced by the addition of catalysts. The shortening of process times is an important economic aspect in the production of mass-produced Smart Biomedical Devices.
机译:为医疗设备配备智能技术在开发现代医疗产品方面具有巨大潜力。由于系统的小型化和产量的增加,发展需要确定新的整合策略和研究新的材料组合。智能生物医学设备的实现需要通过对电子组件进行适当的封装来实现充分的屏障作用(生物保护)。事实证明,最薄的聚合物涂层适用于保形封装。该研究的目的是就其生物用途研究添加催化剂的薄膜清漆在电子系统中的基本适用性。由于固化时间长达14天,因此将八种基于不同化学结构的催化剂添加到涂料中,并研究了它们对细胞毒性作用的影响。对于基于锡,锆,钛,铋和叔胺的有机金属催化剂,观察到无细胞毒性作用。大多数都耐蒸汽灭菌。通过添加催化剂,可以显着减少无细胞毒性涂层的固化时间。缩短处理时间是批量生产智能生物医学设备生产中的重要经济方面。

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