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Polydopamine-Lysophosphatidate-Functionalised Titanium: A Novel Hybrid Surface Finish for Bone Regenerative Applications

机译:聚二甘氨酸 - 溶血磷酸化官能化钛:用于骨再生应用的新型杂化表面饰面

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摘要

Aseptic loosening of total joint replacements (TJRs) continues to be the main cause of implant failures. The socioeconomic impact of surgical revisions is hugely significant; in the United Kingdom alone, it is estimated that £135m is spent annually on revision arthroplasties. Enhancing the longevity of titanium implants will help reduce the incidence and overall cost of failed devices. In realising the development of a superior titanium (Ti) technology, we took inspiration from the growing interest in reactive polydopamine thin films for biomaterial surface functionalisations. Adopting a “one-pot” approach, we exposed medical-grade titanium to a mildly alkaline solution of dopamine hydrochloride (DHC) supplemented with (3S)1-fluoro-3-hydroxy-4-(oleoyloxy)butyl-1-phosphonate (FHBP), a phosphatase-resistant analogue of lysophosphatidic acid (LPA). Importantly, LPA and selected LPA analogues like FHBP synergistically cooperate with calcitriol to promote human osteoblast formation and maturation. Herein, we provide evidence that simply immersing Ti in aqueous solutions of DHC-FHBP afforded a surface that was superior to FHBP-Ti at enhancing osteoblast maturation. The facile step we have taken to modify Ti and the biological performance of the final surface finish are appealing properties that may attract the attention of implant manufacturers in the future.
机译:全关节置换(TJRs)的无菌性松动仍然是植入物失败的主要原因。手术修订的社会经济影响是巨大的显著;在英国独自一人,据估计,£135米是在修订置换术每年用于。加强钛种植体的寿命将有助于降低发病率和故障设备的总成本。在实现卓越的钛(Ti)技术的发展,我们采取的灵感来自于反应的聚多巴胺薄膜的生物材料表面functionalisations越来越大的兴趣。采用“一釜”的方法,我们暴露医用级钛,以盐酸多巴胺(DHC),补充有(3S)弱碱性溶液1-氟-3-羟基-4-(油酰)丁基-1-膦酸酯( FHBP),溶血磷脂酸(LPA)的抗磷酸酶类似物。重要的是,LPA和选定的类似物LPA等FHBP协同三醇配合以促进人成骨细胞的形成和成熟。在此,我们提供的证据表明,只需在DHC-FHBP的水溶液浸泡钛得到的表面,这是在增强成骨细胞的成熟优于FHBP钛。我们已经采取措施来修改钛轻便步骤和最终的表面光洁度的生物性能的吸引力,可能会吸引的植入物制造商的关注,在未来的属性。

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