Combined Application of Er:YAG and Nd:YAG Lasers Enhances Osseointegration at Dental Bone-Implant Interface

被引:1
作者
Zhao, Tianyuan [1 ]
Li, Meihua [1 ]
机构
[1] Second Hosp Jilin Univ, Dept Stomatol, Changchun, Peoples R China
关键词
osseointegration; bone-implant interface; dental implant; micro CT; Er; YAG laser; Nd; ER-YAG LASER; PERI-IMPLANTITIS; PROLIFERATION; TITANIUM; SURFACE; DIFFERENTIATION; COAGULATION; OSTEOBLASTS; TEMPERATURE; MC3T3-E1;
D O I
10.3389/fmats.2022.828838
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The combination of a bone and an implant surface is a dynamic biological process. By improving the osseointegration efficiency of the bone tissue around the implant surface, the implant can obtain long-term stability. In this study, we have investigated the potential applications of dual-wavelength lasers (Er:YAG laser and Nd:YAG laser) in implantations and observed their possible efficacy in promoting tissue repair around the implant. The animal experimental model of a rabbit femoral defect implant was used to simulate the process of tissue reconstruction around the implant in humans. The results indicated that by micro-CT observation, it was obvious that the bone mineral density (BMD) values of the dual-wavelength laser group were significantly higher than those of other groups. Furthermore, VG staining clearly showed that there was no obvious physiological gap detected between the implant and the surrounding bone tissues in the dual-wavelength laser group. HE staining further revealed that no significant influx of inflammatory cells was observed around the implants. Immunohistochemical staining of OCN and VEGF showed that the positive area percentages of the dual-wavelength laser group were significantly higher than other groups at the same time point. Therefore, the application of a dual-wavelength laser in implantations can exhibit a positive effect on promoting the reconstruction of bone tissues.
引用
收藏
页数:10
相关论文
共 35 条
[1]   On osseointegration in relation to implant surfaces [J].
Albrektsson, Tomas ;
Wennerberg, Ann .
CLINICAL IMPLANT DENTISTRY AND RELATED RESEARCH, 2019, 21 :4-7
[2]  
Ali S, 2020, Research Journal of Pharmacy and Technology, V13, P3311, DOI [10.5958/0974-360x.2020.00587.9, 10.5958/0974-360X.2020.00587.9, DOI 10.5958/0974-360X.2020.00587.9]
[3]  
Alsaadi G, 2006, INT J ORAL MAX IMPL, V21, P270
[4]   Effects of Low-Level Laser Therapy on Proliferation and Differentiation of Murine Bone Marrow Cells Into Osteoblasts and Osteoclasts [J].
Bouvet-Gerbettaz, Sebastien ;
Merigo, Elisabetta ;
Rocca, Jean-Paul ;
Carle, Georges F. ;
Rochet, Nathalie .
LASERS IN SURGERY AND MEDICINE, 2009, 41 (04) :291-297
[5]   Evaluation of Blood Cell Attachment on Er:Yag Laser Applied Root Surface Using Scanning Electron Microscopy [J].
Cekici, Ali ;
Maden, Ilay ;
Yildiz, Sercan ;
San, Tangul ;
Isik, Gulden .
INTERNATIONAL JOURNAL OF MEDICAL SCIENCES, 2013, 10 (05) :560-566
[6]  
Chang Po-Chun, 2012, Int J Periodontics Restorative Dent, V32, pe147
[7]   Effect of Laser Radiation on Infected Sites for the Immediate Placement of Dental Implants [J].
Crippa, Rolando ;
Aiuto, Riccardo ;
Guardincerri, Marco ;
Diago, Miguel Penarrocha ;
Angiero, Francesca .
PHOTOBIOMODULATION PHOTOMEDICINE AND LASER SURGERY, 2020, 38 (03) :186-192
[8]   Underwater Nd:YAG laser coagulation of blood vessels in a rat model [J].
Evrard, VAC ;
Deprest, JA ;
VanBallaer, P ;
Lerut, TE ;
Vandenberghe, K ;
Brosens, IA .
FETAL DIAGNOSIS AND THERAPY, 1996, 11 (06) :422-426
[9]   Nd:YAG laser radiation (1.064nm) accelerates differentiation of osteoblasts to osteocytes on smooth and rough titanium surfaces invitro [J].
Karoussis, Ioannis K. ;
Kyriakidou, Kyriaki ;
Psarros, Costas ;
Lang, Niklaus P. ;
Vrotsos, Ioannis A. .
CLINICAL ORAL IMPLANTS RESEARCH, 2017, 28 (07) :785-790
[10]   Antimicrobial peptides on calcium phosphate-coated titanium for the prevention of implant-associated infections [J].
Kazemzadeh-Narbat, Mehdi ;
Kindrachuk, Jason ;
Duan, Ke ;
Jenssen, Havard ;
Hancock, Robert E. W. ;
Wang, Rizhi .
BIOMATERIALS, 2010, 31 (36) :9519-9526