Grabow Niels, Schlun Martin, Sternberg Katrin, Hakansson Nico, Kramer Sven, Schmitz Klaus-Peter
University of Rostock, Institute for Biomedical Engineering, Ernst-Heydemann-Str 6, D-18057 Rostock, Germany.
J Biomech Eng. 2005 Feb;127(1):25-31. doi: 10.1115/1.1835349.
The development of endoluminal stents from polymeric materials requires an understanding of the basic mechanical properties of the polymer and the effects of manufacturing and sterilization on those properties.
Pure poly(L-lactide) (PLLA) and PLLA containing varying amounts of triethylcitrate (TEC) as a plasticizer (5-10-15%) were studied. The specimens were solution-cast and CO2 laser-cut. Specimen dimensions were adapted to the strut size of polymeric vascular stents. The properties of the PLLA micro-specimens were assessed before and after sterilization (EtO cold gas, H2O2-plasma, beta- and gamma-irradiation). Tensile tests, and creep and recovery tests were carried out at 37 degrees C. Additionally the thermal and thermo-mechanical characteristics were investigated using dynamic-mechanical analysis (DMA) and differential scanning calorimetry (DSC).
The results showed the dramatic influence of the plasticizer content and sterilization procedure on the mechanical properties of the material. Laser cutting had a lesser effect. Hence the effects of processing and sterilization must not be overlooked in the material selection and design phases of the development process leading to clinical use. Altogether, the results of these studies provide a clearer understanding of the complex interaction between the laser machining process and terminal sterilization on the primary mechanical properties of PLLA and PLLA plasticized with TEC.
由聚合材料开发腔内支架需要了解聚合物的基本力学性能以及制造和灭菌对这些性能的影响。
研究了纯聚(L-丙交酯)(PLLA)和含有不同含量柠檬酸三乙酯(TEC)作为增塑剂(5%-10%-15%)的PLLA。通过溶液浇铸和二氧化碳激光切割制备试样。试样尺寸与聚合物血管支架的支柱尺寸相适配。在灭菌(环氧乙烷冷气体、过氧化氢等离子体、β射线和γ射线辐照)前后评估PLLA微试样的性能。在37℃下进行拉伸试验、蠕变和恢复试验。此外,使用动态力学分析(DMA)和差示扫描量热法(DSC)研究热性能和热机械性能。
结果表明增塑剂含量和灭菌程序对材料的力学性能有显著影响。激光切割的影响较小。因此,在导致临床应用的开发过程的材料选择和设计阶段,加工和灭菌的影响不容忽视。总之,这些研究结果使人们对激光加工过程和终端灭菌对PLLA以及用TEC增塑的PLLA的基本力学性能之间的复杂相互作用有了更清晰的认识。