首页> 外文期刊>Macromolecular Research >On the enhancement of thermo-mechanical properties of poly(L-lactide) by solid-state extrusion for biodegradable spinal fixation devices
【24h】

On the enhancement of thermo-mechanical properties of poly(L-lactide) by solid-state extrusion for biodegradable spinal fixation devices

机译:用于可生物降解脊柱固定装置固态挤出的聚(L-丙交酯)热力学性能的提高

获取原文
获取原文并翻译 | 示例
       

摘要

Poly(L-lactide) (PLLA) has been receiving attention as a material for bone fixation devices because of its good biocompatibility and biodegradability. However, its mechanical properties are weaker than those of natural bone. Interestingly, solid-state extrusion can enhance the mechanical properties by orienting the polymer chains, and molecular weight is one of the key factors in this process. In this study, we optimized the heating conditions for vacuum compression molding to make a PLLA block for the solid-state extrusion process. We confirmed that the molecular weight of the material decreased with increasing heating temperature and time. In the case of a low molecular weight such as 120 kDa, the heating temperature and time were optimized to 190 degrees C and 90 min, respectively. Moreover, we fabricated a plate, a rod, and a square pole of PLLA by solid-state extrusion for the development of a bone plate, a screw, and an interbody cage. PLLA plates having various molecular weights (150-250 kDa) were extruded to various draw ratios to investigate the effect of molecular weight on the solid-state extrusion process. The mechanical properties such as flexure stress and flexure modulus increased with increasing draw ratio, which in turn increased with increasing molecular weight of the polymer. In addition, we determined that the crystallinity of PLLA dramatically increased when the draw ratio was more than 4. In addition, the orientation of the crystals by solid-state extrusion was confirmed by using X-ray diffraction, and the orientation effect increased with increasing draw ratio of the extruded PLLA. PLLA plates made by solid-state extrusion could be manufactured into bone plates. Furthermore, we fabricated a PLLA rod by solid-state extrusion and vacuum compression molding. The flexural properties of the extruded rod were better than those of the molded rod. We could, therefore, fabricate a screw using the extruded PLLA rod. Finally, interbody cages were made by using poly(L,D/L-lactide) (PLDLLA), PLLA of various molecular weights (150-250 kDa), and PLLA enhanced by solid-state extrusion. The results of the compression tests indicated that PLLA was generally stronger than PLDLLA and that the extruded PLLA had the best mechanical properties. Consequently, it is possible to successfully manufacture biodegradable spinal fixation devices, including plates, screws, and interbody cages, by solidstate extrusion. Moreover, their mechanical properties could be improved by increasing the draw ratio and molecular weight.
机译:聚(L-丙交酯)(PLLA)由于其良好的生物相容性和生物降解性而受到骨固化装置的材料。然而,它的机械性能弱于天然骨骼。有趣的是,固态挤出可以通过定向聚合物链来增强机械性能,分子量是该过程中的关键因素之一。在这项研究中,我们优化了用于真空压缩成型的加热条件,使固态挤出过程的PLLA块。我们证实,材料的分子量随着加热温度和时间的增加而降低。在低分子量的情况下,例如120kDa,加热温度和时间分别优化至190℃和90分钟。此外,我们通过固态挤出来制造板,杆和PLLA的方形杆,用于开发骨板,螺钉和椎间笼。将具有各种分子量(150-250kDa)的PLLA平板挤出到各种拉伸比以研究分子量对固态挤出过程的影响。诸如挠性应力和挠曲模量的机械性能随着拉伸比的增加而增加,随着聚合物的分子量增加,又增加。另外,当拉伸比大于4时,确定PLLA的结晶度显着增加。另外,通过使用X射线衍射来确认通过固态挤出的晶体的取向,并随着增长的增加而增加挤出PLA的比例。通过固态挤出制造的PLLA板可以制造成骨板。此外,我们通过固态挤出和真空压缩成型制造了PLLA棒。挤出杆的弯曲性能优于模塑棒的弯曲性能。因此,我们可以使用挤出的PLLA棒来制造螺钉。最后,通过使用多种分子量(150-250kDa),通过固态挤出增强PLLA来制备椎间笼。压缩试验的结果表明,PLLA通常比PLDLLA强,挤出的PLLA具有最佳的机械性能。因此,可以通过固体挤出成功地制造可生物降解的脊柱固定装置,包括板,螺钉和椎间笼。此外,通过增加拉伸比和分子量可以提高它们的机械性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号