Radiation Technologies Laboratory, Institute of Physics and Technology, M.K. Ammosov North-Eastern Federal University, 677000 Yakutsk, Russia.
Physical Faculty, Lomonosov Moscow State University, 119991 Moscow, Russia.
Int J Mol Sci. 2023 Sep 22;24(19):14426. doi: 10.3390/ijms241914426.
The results of a comprehensive study of the patterns of structural and functional changes in bone tissue samples after combined (ozone + radiation) sterilization are presented. The study used a different approach to the sterilization process with selective ozone or radiation exposure and an integral, combined one, based on a combined ozone-oxygen treatment of bone samples at the first stage and radiation at the second. The methods of IR spectroscopy, scanning electron microscopy with a prefix for elemental analysis, atomic force microscopy, and mechanical analysis with determination of elastic-plastic properties (Vickers microhardness index) were used in the work. It is shown that the ozone exposure used at the first stage of the combined sterilization process of bone implants does not lead to negative consequences with respect to their properties and characteristics. The results obtained serve as a scientific and methodological basis for the further improvement and optimization of sterilization technologies (including combined). They also offer a comprehensive justification of the parameters of sterilization regimes to ensure the safety of using bone implants during reconstructive operations, minimizing structural and functional changes in bone matter, and creating effective health-saving technologies and the possibility of using them for various biomedical applications.
本文介绍了对经过联合(臭氧+辐射)消毒的骨组织样本的结构和功能变化模式进行全面研究的结果。该研究采用了不同的消毒方法,包括选择性臭氧或辐射暴露以及基于骨样本的臭氧-氧气联合处理和第二阶段辐射的综合联合方法。工作中使用了红外光谱、带元素分析前缀的扫描电子显微镜、原子力显微镜以及弹性-塑性特性(维氏显微硬度指数)的机械分析方法。结果表明,在骨植入物的联合消毒过程的第一阶段使用臭氧暴露不会对其性质和特性产生负面影响。所获得的结果为进一步改进和优化消毒技术(包括联合技术)提供了科学和方法学基础。它们还全面证明了消毒方案参数的合理性,以确保在重建手术中使用骨植入物的安全性,最大限度地减少骨组织的结构和功能变化,并创造有效的保健节约技术和各种生物医学应用的可能性。