School of Stomatology, Lanzhou University, Lanzhou, Gansu, PR China.
Center for Biomedical Materials and Tissue Engineering, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing, PR China.
Sci Rep. 2019 Mar 20;9(1):4916. doi: 10.1038/s41598-019-41471-z.
Dental implantation has been the primary method for the treatment of tooth loss, but longer than 3 months healing times are generally required. Because immediate load implants are suitable only for certain categories of implant patients, it has value to develop a novel method to facilitate the implant-bone osseointegration process. Cylindrical titanium implants were implanted in the tooth sockets of beagles, and microelectrode stimulation of the sympathetic nerves in the infraorbital nerve was performed after implantation for 1 week. The authors found that one-sided nerve stimulation was shown to evoke consistent electric potential changes in both sides of the infraorbital nerves. Moreover, after 4 weeks of implantation, more new bone was clearly observed around the implants in the beagles that received electrical stimulation treatment than was observed in the control animals. Furthermore, a higher mineralization density was measured in the new peri-implant bone tissues of the stimulated beagles when compared to controls. These results demonstrate that the simple and safe physical method of microelectrode stimulation to sympathetic nerves can promote the formation of new bone and the osseointegration of implants. This technique is worth promoting and has the potential to reduce the healing time of dental implantation in future clinical cases.
牙种植术是治疗牙齿缺失的主要方法,但一般需要 3 个月以上的愈合时间。由于即刻负荷种植体仅适用于某些类别的种植体患者,因此开发一种新的方法来促进种植体-骨的骨整合过程具有一定的价值。将圆柱形钛种植体植入比格犬的牙槽窝中,在植入后第 1 周对眶下神经中的交感神经进行微电极刺激。作者发现,单侧神经刺激可引起眶下神经两侧一致的电势变化。此外,在植入后 4 周时,与对照组相比,接受电刺激治疗的比格犬的种植体周围明显观察到更多的新骨。此外,与对照组相比,刺激的比格犬的新种植体骨组织中的矿化密度更高。这些结果表明,交感神经微电极刺激这种简单、安全的物理方法可以促进新骨形成和种植体的骨整合。这项技术值得推广,并有潜力减少未来临床病例中牙种植的愈合时间。