首页> 美国卫生研究院文献>International Journal of Nanomedicine >3D printed zirconia ceramic hip joint with precise structure and broad-spectrum antibacterial properties
【2h】

3D printed zirconia ceramic hip joint with precise structure and broad-spectrum antibacterial properties

机译:具有精确结构和广谱抗菌特性的3D打印氧化锆陶瓷髋关节

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

>Background: Nowadays, zirconia ceramic implants are widely used as a kind of hip prosthesis material because of their excellent biocompatibility and long-term wear resistance. However, the hip joint is one of the major joints with complex 3D morphological structure and greatly individual differences, which usually causes great material waste during the process of surgical selection of prosthesis.>Methods: In this paper, by combining ceramic 3D printing technology with antibacterial nano-modification, zirconia ceramic implant material was obtained with precise 3D structure and effective antibacterial properties. Among which, two technical problems (fragile and sintering induced irregular shrinkage) of 3D printed ceramics were effectively minimized by optimizing the reaction conditions and selective area inversing compensation. Through in vivo and in vitro experiments, it was confirmed that the as prepared hip prosthesis could precisely matched the corresponding parts, which also exhibited good biocompatibility and impressive antibacterial activities.>Results: 1) Two inherent technical problems (fragile and sintering induced irregular shrinkage) of 3D printed ceramics were effectively minimized by optimizing the reaction conditions and selective area inversing compensation. 2) It could be seen that the surface of the ZrO2 material was covered with a layer of ZnO nano-particles. A universal testing machine was used to measure the tensile, bending and compression experiments of ceramic samples. It could be found that the proposed ZnO modification had no significant effect on the mechanical properties of ZrO2 ceramics. 3) According to the plate counting results, ceramics modified with ZnO exhibited significantly higher antibacterial efficiency than pure ZrO2 ceramics, the ZrO2-ZnO ceramics had a significant killing effect 8 hours. 4) The removed implants and the tissue surrounding the implant were subjected to HE staining. For ZrO2-ZnO ceramics, inflammation was slight, while for pure ZrO2 ceramics, the inflammatory response could be seen that the antibacterial rate of the ZrO2-ZnO ceramics was significantly better than that of the pure ZrO2 ceramics group. 5) It could be seen that the cytotoxicity did not increase proportionally with the increase of concentration, all of viability were still above 80%. This suggested that our materials were safe and could be applied as a type of potential biomaterial in the future. 6) Further animal studies demonstrated that the implant was in good position without dislocation. This resulted implied that the proposed method can achieve accurate 3D printing preparation of ceramic joints. In addition, the femurs and surrounding muscles around the implant were then sectioned and HE stained. Results of muscle tissue sections further showed no significant tissue abnormalities, and the growth of new bone tissue was observed in the sections of bone tissue.>Conclusion: 1) The ceramic 3D printing technology combined with antibacterial nano-modification can quickly customize the ideal implant material with precise structure, wear-resistant and effective antibacterial properties. 2) Two inherent technical problems (fragile and sintering induced irregular shrinkage) of 3D printed ceramics were effectively minimized by optimizing the reaction conditions and selective area inversing compensation. 3) ZnO nano-materials were modified on the ceramic surface, which could effectively killing pathogenic bacteria.
机译:>背景:如今,氧化锆陶瓷植入物因其出色的生物相容性和长期耐磨性而被广泛用作一种髋关节假体材料。但是,髋关节是3D形态结构复杂且个体差异很大的主要关节之一,通常在假体的手术选择过程中会造成巨大的材料浪费。>方法:将陶瓷3D打印技术与抗菌纳米改性相结合,获得了具有精确3D结构和有效抗菌性能的氧化锆陶瓷植入材料。其中,通过优化反应条件和选择性面积反转补偿,有效地减少了3D打印陶瓷的两个技术问题(易碎和烧结引起的不规则收缩)。通过体内和体外实验,证实所制备的髋关节假体可以精确匹配相应的部位,还具有良好的生物相容性和令人印象深刻的抗菌活性。>结果: 1)两个固有的技术问题(通过优化反应条件和选择性面积反转补偿,有效地最小化了3D打印陶瓷的易碎和烧结引起的不规则收缩。 2)可以看出,ZrO 2材料的表面覆盖有一层ZnO纳米颗粒。使用通用测试机来测量陶瓷样品的拉伸,弯曲和压缩实验。可以发现,所提出的ZnO改性对ZrO2陶瓷的机械性能没有显着影响。 3)根据板计数结果,用ZnO改性的陶瓷比纯ZrO2陶瓷表现出明显更高的抗菌效率,ZrO2-ZnO陶瓷在8小时内具有明显的杀灭作用。 4)对取出的植入物和植入物周围的组织进行HE染色。对于ZrO2-ZnO陶瓷,发炎很小,而对于纯ZrO2陶瓷,发炎反应可以看出,ZrO2-ZnO陶瓷的抗菌率明显优于纯ZrO2陶瓷组。 5)可以看出,随着浓度的增加,细胞毒性并没有成比例地增加,所有的存活率仍在80%以上。这表明我们的材料是安全的,将来可以用作一种潜在的生物材料。 6)进一步的动物研究表明,植入物处于良好位置,无错位。结果表明,所提出的方法可以实现陶瓷接缝的精确3D打印制备。此外,然后将植入物周围的股骨和周围的肌肉切成薄片并进行HE染色。肌肉组织切片结果进一步显示无明显组织异常,并且在骨组织切片中观察到新的骨组织的生长。>结论: 1)陶瓷3D打印技术结合抗菌纳米改性可以快速定制具有精确结构,耐磨和有效抗菌特性的理想植入材料。 2)通过优化反应条件和选择性面积反转补偿,有效地减少了3D打印陶瓷的两个固有技术问题(易碎和烧结引起的不规则收缩)。 3)在陶瓷表面修饰了ZnO纳米材料,可以有效杀死病原菌。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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