Smirnov Anton, Guitián Francisco, Ramirez-Rico Joaquín, Bartolomé José F
Federal State Budgetary Educational Institution of the Higher Education Moscow State University of Technology "STANKIN", Moscow, Russian Federation.
Instituto de Materiales, iMATUS - USC, Santiago de Compostela, Spain.
J Mater Chem B. 2024 Sep 18;12(36):8919-8928. doi: 10.1039/d4tb01158a.
A biocermet made of zirconia/20 vol% tantalum (3Y-TZP/Ta) is a new composite with exceptional capabilities due to a combination of properties that are rarely achieved in conventional materials (high strength and toughness, cyclic fatigue resistance and flaw tolerance, wear resistance, corrosion resistance, electrical conductivity, ). In this study, for the first time, the biomedical performance of a 3Y-TZP/Ta biocermet was evaluated in detail. Its biocompatibility was assessed using mesenchymal stem cell culture. The effectiveness of osteointegration of the biocermet was confirmed 6 months after implantation into the proximal tibiae of New Zealand white rabbits. In addition, the possibility of using magnetic resonance imaging (MRI) for medical analysis of the considered biocermet material was studied. The 3Y-TZP/Ta composite showed no injurious effect on cell morphology, extracellular matrix production or cell proliferation. Moreover, the implanted biocermet appeared to be capable of promoting bone growth without adverse reactions. On the other hand, this biocermet demonstrates artefact-free performance in MRI biomedical image analysis studies, making it more suitable for implant applications. These findings open up possibilities for a wide range of applications of these materials in orthopedics, dentistry and other areas such as replacement of hard tissues.
由氧化锆/20体积%钽制成的生物陶瓷(3Y-TZP/Ta)是一种新型复合材料,因其具有传统材料中很少能实现的多种性能组合(高强度和韧性、抗循环疲劳和抗缺陷能力、耐磨性、耐腐蚀性、导电性)而具备卓越性能。在本研究中,首次对3Y-TZP/Ta生物陶瓷的生物医学性能进行了详细评估。使用间充质干细胞培养评估其生物相容性。将该生物陶瓷植入新西兰白兔胫骨近端6个月后,证实了其骨整合的有效性。此外,还研究了使用磁共振成像(MRI)对所考虑的生物陶瓷材料进行医学分析的可能性。3Y-TZP/Ta复合材料对细胞形态、细胞外基质产生或细胞增殖均无有害影响。此外,植入的生物陶瓷似乎能够促进骨生长且无不良反应。另一方面,这种生物陶瓷在MRI生物医学图像分析研究中表现出无伪影性能,使其更适合植入应用。这些发现为这些材料在骨科、牙科以及其他诸如硬组织替代等领域的广泛应用开辟了可能性。