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用于新一代肋骨内固定假体的电子束表面改性复合多孔-整体式钛镍材料

Combined Porous-Monolithic TiNi Materials Surface-Modified with Electron Beam for New-Generation Rib Endoprostheses.

作者信息

Shabalina Anastasiia V, Anikeev Sergey G, Kulinich Sergei A, Artyukhova Nadezhda V, Vlasov Vitaly A, Kaftaranova Maria I, Hodorenko Valentina N, Yakovlev Evgeny V, Pesterev Evgeny A, Lukyanenko Anna V, Volochaev Mikhail N, Pakholkina Sofiya, Mamazakirov Oibek, Stolyarov Victor V, Mokshin Anatolii V, Gunther Victor E

机构信息

Laboratory of Medical Materials Science, Tomsk State University, 634050 Tomsk, Russia.

Institute of Physics, Kazan Federal University, 420008 Kazan, Russia.

出版信息

J Funct Biomater. 2023 May 15;14(5):277. doi: 10.3390/jfb14050277.

Abstract

TiNi alloys are very widely used materials in implant fabrication. When applied in rib replacement, they are required to be manufactured as combined porous-monolithic structures, ideally with a thin, porous part well-adhered to its monolithic substrate. Additionally, good biocompatibility, high corrosion resistance and mechanical durability are also highly demanded. So far, all these parameters have not been achieved in one material, which is why an active search in the field is still underway. In the present study, we prepared new porous-monolithic TiNi materials by sintering a TiNi powder (0-100 µm) on monolithic TiNi plates, followed by surface modification with a high-current pulsed electron beam. The obtained materials were evaluated by a set of surface and phase analysis methods, after which their corrosion resistance and biocompatibility (hemolysis, cytotoxicity, and cell viability) were evaluated. Finally, cell growth tests were conducted. In comparison with flat TiNi monoliths, the newly developed materials were found to have better corrosion resistance, also demonstrating good biocompatibility and potential for cell growth on their surface. Thus, the newly developed porous-on-monolith TiNi materials with different surface porosity and morphology showed promise as potential new-generation implants for use in rib endoprostheses.

摘要

钛镍合金是植入物制造中应用非常广泛的材料。当应用于肋骨置换时,它们需要制造成多孔 - 整体式组合结构,理想情况下是一个薄的多孔部分与整体基板良好粘附。此外,还对良好的生物相容性、高耐腐蚀性和机械耐久性有很高要求。到目前为止,尚未有一种材料能同时满足所有这些参数,这就是该领域仍在积极探索的原因。在本研究中,我们通过在整体式钛镍板上烧结钛镍粉末(0 - 100微米),然后用强流脉冲电子束进行表面改性,制备了新型多孔 - 整体式钛镍材料。通过一系列表面和相分析方法对所得材料进行评估,之后评估其耐腐蚀性和生物相容性(溶血、细胞毒性和细胞活力)。最后进行细胞生长测试。与扁平的整体式钛镍材料相比,新开发的材料具有更好的耐腐蚀性,还表现出良好的生物相容性以及表面细胞生长的潜力。因此,新开发的具有不同表面孔隙率和形态的整体式多孔钛镍材料有望成为用于肋骨假体的新一代潜在植入物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/746e/10219054/ab59a09e7110/jfb-14-00277-g001.jpg

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