Current state and perspectives on the use of zirconium ceramic implants in traumatology and orthopaedics

Q3 Medicine Genij Ortopedii Pub Date : 2024-02-21 DOI:10.18019/1028-4427-2024-30-1-114-123
E. A. Volokitina, I. Antropova, K. A. Timofeev, R. A. Trufanenko
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Abstract

Background Ceramic materials are currently in wide demand in various fields of medicine. Zirconium ceramics demonstrate exceptional mechanical properties and biocompatibility and do not cause cytotoxic effects or allergic reactions in surrounding tissues.The objective was to present an analysis of current literature data on the use of zirconium ceramics as a bone replacement material in traumatology and orthopaedics.Materials and methods The search for publications was conducted using the databases of Scopus, PubMed and the electronic scientific library eLIBRARY in the Russian and English languages using the keywords: bioceramics, bone, bone defect, zirconate, zirconium ceramics, bone tissue engineering, implant, scaffold, augment, biointegration, bioactivity. Depth of search for scientific papers was from 2000 to 2023.Results and discussion Zirconium dioxide is the main ceramic bioinert material. The study presents the characteristics of ZrO2 as a bone replacement material and its comparison with titanium implants. Data are presented on various strategies for improving zirconium bioceramics: improving the surface of the material by physical and chemical methods, obtaining volumetric porosity, including using additive technologies, creating composite materials, and developing bioactive coatings. New methods of creating zirconium ceramics compatible with living tissues containing bioactive ions that promote both osseointegration and bone tissue regeneration have been actively studied.Conclusions Zirconium dioxide ceramics appear to be a promising alternative to titanium implants in terms of mechanical strength, biological functionality, chemical stability, osseointegration, and antibacterial properties. Future experimental and clinical studies will further improve zirconium ceramics.
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锆陶瓷植入物在创伤和矫形外科中的应用现状和前景
背景 陶瓷材料目前在医学的各个领域都有着广泛的需求。锆陶瓷具有优异的机械性能和生物相容性,不会对周围组织产生细胞毒性作用或过敏反应。本研究旨在分析目前有关锆陶瓷作为骨替代材料用于创伤学和矫形外科的文献资料。材料和方法 使用 Scopus、PubMed 和电子科学图书馆 eLIBRARY 等数据库以俄语和英语搜索出版物,关键词为:生物陶瓷、骨、骨缺损、锆酸盐、锆陶瓷、骨组织工程、植入物、支架、增量、生物整合、生物活性。科学论文的检索深度为 2000 年至 2023 年。结果与讨论 二氧化锆是主要的陶瓷生物惰性材料。本研究介绍了二氧化锆作为骨替代材料的特性及其与钛植入物的比较。研究数据介绍了改进锆生物陶瓷的各种策略:通过物理和化学方法改进材料表面、获得体积孔隙率(包括使用添加剂技术)、创建复合材料以及开发生物活性涂层。结论 二氧化锆陶瓷在机械强度、生物功能、化学稳定性、骨结合和抗菌性能等方面似乎有望成为钛植入物的替代品。未来的实验和临床研究将进一步提高锆陶瓷的性能。
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来源期刊
Genij Ortopedii
Genij Ortopedii Medicine-Surgery
CiteScore
0.70
自引率
0.00%
发文量
104
审稿时长
12 weeks
期刊介绍: Journal’s main goal is to contribute to the development of the contemporary medical science via presentation of fundamental and applied original scientific studies to the scientific and practical medical community that would widen and deepen the understanding of the most important problems in the field of traumatology, orthopaedics, and related specialties. Our journal provides a direct open access to its content which is based on the principle that the open access option promotes global exchange of knowledge and experience. Journal’s strategy: -Development of the journal as a scientific platform for researchers, doctors, post-graduates and residents -Attraction of highly-cited authors to publish their studies -Selection of manuscripts of scientific interest for readers that will impact on journal citation index in RINC -Increase in the portion of publications submitted by foreign authors and studies conducted in association with foreign scientists; growth of citations in the journals that are included into global systems of indexing and reputable databases -Improvement of the Journal’s web site in two languages for a greater accessibility by authors and readers -Introduction of the Journal into global indexing systems
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