Liu Jiantao, Wang Kao, Li Xingyuan, Zhang Xiwei, Gong Xi, Zhu Yihan, Ren Zhiwei, Zhang Bin, Cheng Jun
Department of Orthopedics, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, Shaanxi, China.
Xi'an Jiaotong University, Xi'an, Shaanxi, China.
Front Bioeng Biotechnol. 2023 Feb 10;11:1127929. doi: 10.3389/fbioe.2023.1127929. eCollection 2023.
Ti6Al4V titanium alloy is widely used in producing orthopedic and maxillofacial implants, but drawbacks include high elastic modulus, poor osseointegration performance, and toxic elements. A new medical titanium alloy material with better comprehensive performance is urgently needed in the clinic. Ti10Mo6Zr4Sn3Nb titanium alloy (referred to as Ti-B12) is a unique medical titanium alloy material developed by us. The mechanical properties of Ti-B12 depict that it has advantages, such as high strength, low elastic modulus, and fatigue resistance. In our study, the biocompatibility and osseointegration properties of Ti-B12 titanium alloy are further studied to provide theoretical guidance for its clinical transformation. The titanium alloy Ti-B12 displays no significant effect on MC3T3-E1 cell morphology, proliferation, or apoptosis . Neither Ti-B12 titanium alloy nor Ti6Al4V titanium alloy depicts a significant difference ( > 0.05); Ti-B12 material extract injected into the abdominal cavity of mice does not cause acute systemic toxicity. The skin irritation test and intradermal irritation test reveal that Ti-B12 does not cause skin allergic reactions in rabbits. Compared to Ti6Al4V, Ti-B12 titanium alloy material has more advantages in promoting osteoblast adhesion and ALP secretion ( < 0.05). Although there is no significant difference in OCN and Runx2 gene expression between the three groups on the 7th and 14th days of differentiation induction ( > 0.05), the expression of Ti-B12 group is higher than that of Ti6Al4V group and blank control group. Furthermore, the rabbit test present that 3 months after the material is implanted in the lateral epicondyle of the rabbit femur, the Ti-B12 material fuses with the surrounding bone without connective tissue wrapping. This study confirms that the new β-titanium alloy Ti-B12 not only has low toxicity and does not cause rejection reaction but also has better osseointegration performance than the traditional titanium alloy Ti6Al4V. Therefore, Ti-B12 material is expected to be further promoted in clinical practice.
Ti6Al4V钛合金广泛应用于骨科和颌面植入物的生产,但其缺点包括弹性模量高、骨整合性能差以及含有有毒元素。临床上迫切需要一种综合性能更好的新型医用钛合金材料。Ti10Mo6Zr4Sn3Nb钛合金(简称Ti-B12)是我们研发的一种独特的医用钛合金材料。Ti-B12的力学性能表明它具有高强度、低弹性模量和抗疲劳等优点。在我们的研究中,进一步研究了Ti-B12钛合金的生物相容性和骨整合性能,为其临床转化提供理论指导。Ti-B12钛合金对MC3T3-E1细胞的形态、增殖或凋亡均无显著影响。Ti-B12钛合金和Ti6Al4V钛合金均无显著差异(>0.05);注入小鼠腹腔的Ti-B12材料提取物不会引起急性全身毒性。皮肤刺激性试验和皮内刺激性试验表明,Ti-B12不会引起家兔皮肤过敏反应。与Ti6Al4V相比,Ti-B12钛合金材料在促进成骨细胞黏附及碱性磷酸酶分泌方面具有更多优势(<0.05)。虽然在分化诱导的第7天和第14天,三组之间骨钙素(OCN)和Runx2基因表达无显著差异(>0.05),但Ti-B12组的表达高于Ti6Al4V组和空白对照组。此外,家兔试验表明,将材料植入兔股骨外侧髁3个月后,Ti-B12材料与周围骨融合,无结缔组织包裹。本研究证实,新型β钛合金Ti-B12不仅毒性低,不会引起排斥反应,而且骨整合性能优于传统钛合金Ti6Al4V。因此,Ti-B12材料有望在临床实践中得到进一步推广。