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New biomaterials for orthopedic implants

机译:骨科植入物的新型生物材料

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Abstract: With the increasing use of orthopedic implants worldwide, there continues to be great interest in the development of novel technologies to further improve the effective clinical performance of contemporary treatment modalities and devices. Continuing research interest also exists in developing novel bulk biomaterials (eg, polycarbonate urethanes, silicon) or novel formulations of existing but less widely used biomaterials (eg, polyaryletherketones, polyetheretherketone). There is also growing focus on customizing the material properties of bioabsorbables and composite materials with fillers such as bioactive ceramics. In terms of tissue engineering, more recent developments have focused on basic engineering and biological fundamentals to use cells, signaling factors, and the scaffold material itself to better restore tissue and organ structure and function. There has also been recent controversy with the use of injectables as a nonsurgical approach to treat joint disorders, but more attention is being directed toward the development of newer formulations with different molecular weights. The industry has also continuously sought to improve coatings to supplement the function of existing implants, with the goal of improving their osseointegrative qualities and incorporating antimicrobial properties. These include the use of bone morphogenetic protein, bisphosphonates, calcium phosphate, silicon nitride, and iodine. Due to the widespread use of bone graft materials, recent developments in synthetic graft materials have explored further development of bioactive glass, ceramic materials, and porous titanium particles. This review article provides an overview of ongoing efforts in the above research areas.
机译:【摘要】随着世界范围内骨科植入物使用的增加,人们对新技术的发展一直抱有浓厚的兴趣,以进一步改善当代治疗方法和装置的有效临床表现。在开发新颖的块状生物材料(例如,聚碳酸酯,聚氨酯,硅)或现有但使用较少的生物材料的新配方(例如,聚芳基醚酮,聚醚醚酮)方面也存在持续的研究兴趣。也越来越关注定制具有填充物的生物可吸收材料和复合材料的材料属性,例如生物活性陶瓷。在组织工程方面,最近的发展集中在利用细胞,信号传导因子和支架材料本身来更好地恢复组织和器官结构与功能的基础工程和生物学基础上。使用注射剂作为治疗关节疾病的非手术方法最近也引起争议,但更多的注意力转向了开发具有不同分子量的新型制剂。工业界还一直在寻求改善涂层以补充现有植入物的功能,目的是提高其骨结合质量并结合抗菌性能。这些措施包括使用骨形态发生蛋白,双膦酸盐,磷酸钙,氮化硅和碘。由于骨移植材料的广泛使用,合成移植材料的最新发展探索了生物活性玻璃,陶瓷材料和多孔钛颗粒的进一步发展。这篇综述文章概述了上述研究领域中正在进行的工作。

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