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通过电子顺磁共振分析牙种植体的骨结合过程:一项体内研究。

Analysis of the Osseointegration Process of Dental Implants by Electron Paramagnetic Resonance: An In Vivo Study.

作者信息

Kalinnikova Elena, Sadovnikova Margarita, Rodionov Alexander, Murzakhanov Fadis, Grishin Peter

机构信息

Institute of Doctors Advanced Training of the Chuvashia Health Ministry, 27 Mikhail Sespel Str., 428018 Cheboksary, Russia.

Institute of Physics, Kazan Federal University, 18 Kremlevskaya Str., 420008 Kazan, Russia.

出版信息

Dent J (Basel). 2022 Feb 16;10(2):28. doi: 10.3390/dj10020028.

Abstract

This research work presents an analysis of the process of an implant's osseointegration to the jawbone tissue. The purpose of this work was to describe the processes of assimilation and the biochemical dynamics which occur during dental implantation using implants with different macro-microstructure surfaces at the level of stable free radicals using the electron paramagnetic resonance (EPR) method. The experimental investigation was conducted on seven Vietnamese minipigs over twelve months old and weighing up to 30 kg using implants with various macro-microstructure surfaces (SLA, RBM, and HST) and implantation systems, namely the Adin, Sunran, Biomed, and Osstem systems. The integration of the implant into the bone triggered biochemical processes with the formation of stable free radicals. The EPR method was used to identify the formed paramagnetic species and to study the dynamics of the interaction between the surface of the implant and the bone after one and two months. The concentration of carbonate surface centers increased with the time that the implant was connected to the hard tissue. The "Sunran" and "HST" were established as the most suitable implantation system and surface type, respectively, thanks to the highest rate of osseointegration (assimilation) with the bone (hard) tissue. Thus, the EPR method provides the opportunity to study implantation processes.

摘要

这项研究工作对植入物与颌骨组织的骨整合过程进行了分析。这项工作的目的是使用电子顺磁共振(EPR)方法,在稳定自由基水平上描述使用具有不同宏观 - 微观结构表面的植入物进行牙种植期间发生的同化过程和生化动力学。实验研究是在7只12个月以上、体重达30千克的越南小型猪身上进行的,使用了具有各种宏观 - 微观结构表面(SLA、RBM和HST)的植入物以及Adin、Sunran、Biomed和Osstem等植入系统。植入物与骨的整合引发了生化过程并形成了稳定自由基。EPR方法用于识别形成的顺磁物种,并研究植入物表面与骨在1个月和2个月后的相互作用动态。随着植入物与硬组织连接时间的增加,碳酸盐表面中心的浓度升高。由于与骨(硬)组织的骨整合(同化)速率最高,“Sunran”和“HST”分别被确定为最合适的植入系统和表面类型。因此,EPR方法为研究种植过程提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/500c/8871022/174da070577b/dentistry-10-00028-g001.jpg

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