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热塑性聚氨酯聚合物上无机物理气相沉积(PVD)涂层的血液相容性

Hemocompatibility of Inorganic Physical Vapor Deposition (PVD) Coatings on Thermoplastic Polyurethane Polymers.

作者信息

Lackner Juergen M, Waldhauser Wolfgang, Hartmann Paul, Bruckert Franz, Weidenhaupt Marianne, Major Roman, Sanak Marek, Wiesinger Martin, Heim Daniel

机构信息

Joanneum Research Forschungsges.m.b.H., Institute for Surface Technologies and Photonics, Functional Surfaces, Leobner Straße 94, Niklasdorf A-8712, Austria.

Grenoble Institute of Technology, Parvis Louis Néel, 38000 Grenoble Cedex 9, France.

出版信息

J Funct Biomater. 2012 Apr 17;3(2):283-97. doi: 10.3390/jfb3020283.

Abstract

Biocompatibility improvements for blood contacting materials are of increasing interest for implanted devices and interventional tools. The current study focuses on inorganic (titanium, titanium nitride, titanium oxide) as well as diamond-like carbon (DLC) coating materials on polymer surfaces (thermoplastic polyurethane), deposited by magnetron sputtering und pulsed laser deposition at room temperature. DLC was used pure (a-C:H) as well as doped with silicon, titanium, and nitrogen + titanium (a-C:H:Si, a-C:H:Ti, a-C:H:N:Ti). In-vitro testing of the hemocompatibility requires mandatory dynamic test conditions to simulate in-vivo conditions, e.g., realized by a cone-and-plate analyzer. In such tests, titanium- and nitrogen-doped DLC and titanium nitride were found to be optimally anti-thrombotic and better than state-of-the-art polyurethane polymers. This is mainly due to the low tendency to platelet microparticle formation, a high content of remaining platelets in the whole blood after testing and low concentration of platelet activation and aggregation markers. Comparing this result to shear-flow induced cell motility tests with e.g., Dictostelium discoideum cell model organism reveals similar tendencies for the investigated materials.

摘要

对于植入式设备和介入工具而言,提高与血液接触材料的生物相容性越来越受到关注。当前的研究聚焦于通过磁控溅射和脉冲激光沉积在室温下沉积于聚合物表面(热塑性聚氨酯)的无机材料(钛、氮化钛、氧化钛)以及类金刚石碳(DLC)涂层材料。DLC既使用了纯的(a-C:H),也使用了掺杂硅、钛和氮+钛的(a-C:H:Si、a-C:H:Ti、a-C:H:N:Ti)。血液相容性的体外测试需要强制采用动态测试条件来模拟体内情况,例如通过锥板分析仪来实现。在这类测试中,发现钛掺杂和氮掺杂的DLC以及氮化钛具有最佳的抗血栓形成性能,优于目前最先进的聚氨酯聚合物。这主要是由于血小板微粒形成的倾向较低、测试后全血中剩余血小板的含量较高以及血小板活化和聚集标志物的浓度较低。将这一结果与例如使用盘基网柄菌细胞模型生物进行的剪切流诱导细胞运动性测试相比较,发现所研究材料具有相似的趋势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/066e/4047937/9e042a2fd49e/jfb-03-00283-g001.jpg

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