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Design of a new type of coating for the controlled release of heparin

机译:一种新型肝素控释涂层的设计

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摘要

Thrombus formation at the surface of blood contacting devices can be prevented by local release of heparin. Preferably, the release rate should be constant for prolonged periods of time. The minimum heparin release rate to achieve thromboresistance will be different for various applications and should therefore be adjustable. In this study a new type of heparin release system is presented which may be applied as a coating for blood contacting devices. The system is based on the covalent immobilization of heparin onto porous structures via hydrolysable bonds. This approach was evaluated by the immobilization of heparin onto a porous cellulosic substrate via ester bonds. Cuprophan was used as a model substrate and N,N¿-carbonyldiimidazole as a coupling agent. Heparinized Cuprophan incubated in phosphate buffered saline showed a release of heparin due to the hydrolysis of the ester bonds between heparin and Cuprophan. The release rate could be easily adjusted by varying the amount of coupling agent used during immobilization. Cuprophan with a rather stable heparin coating (release rate: 6.1 mU/cm2·h) and Cuprophan which shows a substantial release of heparin (release rate up to 23.0 mU/cm2·h) could be prepared. Except when the release was relatively high, release rates were constant for at least 1 week. Storage of the release system at ambient conditions up to 6 months or sterilization by means of steam, ethylene oxide exposure, or gamma irradiation did not affect the release properties. It was concluded that this concept for a heparin release system is highly promising to prepare thromboresistant surfaces for various blood contacting devices.
机译:肝素的局部释放可以防止血液接触装置表面的血栓形成。优选地,释放速率应长时间保持恒定。达到血栓抗性的最小肝素释放速率因各种应用而异,因此应可调。在这项研究中,提出了一种新型的肝素释放系统,可以用作血液接触装置的涂层。该系统基于肝素通过可水解键共价固定在多孔结构上。通过将肝素通过酯键固定在多孔纤维素底物上来评估该方法。铜氨用作模型底物,N,N′-羰基二咪唑用作偶联剂。在磷酸缓冲盐溶液中温育的肝素化铜氨酚由于肝素与铜氨酚之间酯键的水解而释放出肝素。通过改变固定过程中使用的偶联剂的量,可以容易地调节释放速率。可以制备具有相当稳定的肝素涂层的Cuprophan(释放速率:6.1 mU / cm2·h)和显示出大量肝素释放的Cuprophan(释放速率高达23.0 mU / cm2·h)。除非释放相对较高,否则释放速率至少持续1周是恒定的。释放系统在环境条件下最多保存6个月或通过蒸汽,环氧乙烷暴露或伽马射线灭菌均不会影响释放性能。得出的结论是,肝素释放系统的这一概念极有希望为各种血液接触装置制备抗血栓形成的表面。

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