Cell Adhesion and in Vivo Osseointegration of Sandblasted/Acid Etched/Anodized Dental Implants

The authors describe a new type of titanium (Ti) implant as a Modi-anodized (ANO) Ti implant, the surface of which was treated by sandblasting, acid etching (SLA), and anodized techniques. The aim of the present study was to evaluate the adhesion of MG-63 cells to Modi-ANO surface treated Ti in vitr...

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Main Authors: Mu-Hyon Kim, Kyeongsoon Park, Kyung-Hee Choi, Soo-Hong Kim, Se Eun Kim, Chang-Mo Jeong, Jung-Bo Huh
Format: Article
Language:English
Published: MDPI AG 2015-05-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:http://www.mdpi.com/1422-0067/16/5/10324
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spelling doaj-50236a8388c247db855b60733b62e3942020-11-24T21:48:17ZengMDPI AGInternational Journal of Molecular Sciences1422-00672015-05-01165103241033610.3390/ijms160510324ijms160510324Cell Adhesion and in Vivo Osseointegration of Sandblasted/Acid Etched/Anodized Dental ImplantsMu-Hyon Kim0Kyeongsoon Park1Kyung-Hee Choi2Soo-Hong Kim3Se Eun Kim4Chang-Mo Jeong5Jung-Bo Huh6Department of Prosthodontics, Dental Research Institute, Biomedical Research Institute, School of Dentistry, Pusan National University, Yangsan 676-870, KoreaDivision of Bioimaging, Chuncheon Center, Korea Basic Science Institute, Gangwon-do 200-701, KoreaResearch Development Institute, Cowellmedi Co., Ltd., Busan 617-801, KoreaResearch Development Institute, Cowellmedi Co., Ltd., Busan 617-801, KoreaDepartment of Veterinary Surgery, College of Veterinary Medicine, Chonnam National University, Gwangju 500-757, KoreaDepartment of Prosthodontics, Dental Research Institute, Biomedical Research Institute, School of Dentistry, Pusan National University, Yangsan 676-870, KoreaDepartment of Prosthodontics, Dental Research Institute, Biomedical Research Institute, School of Dentistry, Pusan National University, Yangsan 676-870, KoreaThe authors describe a new type of titanium (Ti) implant as a Modi-anodized (ANO) Ti implant, the surface of which was treated by sandblasting, acid etching (SLA), and anodized techniques. The aim of the present study was to evaluate the adhesion of MG-63 cells to Modi-ANO surface treated Ti in vitro and to investigate its osseointegration characteristics in vivo. Four different types of Ti implants were examined, that is, machined Ti (control), SLA, anodized, and Modi-ANO Ti. In the cell adhesion study, Modi-ANO Ti showed higher initial MG-63 cell adhesion and induced greater filopodia growth than other groups. In vivo study in a beagle model revealed the bone-to-implant contact (BIC) of Modi-ANO Ti (74.20% ± 10.89%) was much greater than those of machined (33.58% ± 8.63%), SLA (58.47% ± 12.89), or ANO Ti (59.62% ± 18.30%). In conclusion, this study demonstrates that Modi-ANO Ti implants produced by sandblasting, acid etching, and anodizing improve cell adhesion and bone ongrowth as compared with machined, SLA, or ANO Ti implants. These findings suggest that the application of Modi-ANO surface treatment could improve the osseointegration of dental implant.http://www.mdpi.com/1422-0067/16/5/10324titanium implantsandblasting and acid etchinganodizationosteoblastosseointegration
collection DOAJ
language English
format Article
sources DOAJ
author Mu-Hyon Kim
Kyeongsoon Park
Kyung-Hee Choi
Soo-Hong Kim
Se Eun Kim
Chang-Mo Jeong
Jung-Bo Huh
spellingShingle Mu-Hyon Kim
Kyeongsoon Park
Kyung-Hee Choi
Soo-Hong Kim
Se Eun Kim
Chang-Mo Jeong
Jung-Bo Huh
Cell Adhesion and in Vivo Osseointegration of Sandblasted/Acid Etched/Anodized Dental Implants
International Journal of Molecular Sciences
titanium implant
sandblasting and acid etching
anodization
osteoblast
osseointegration
author_facet Mu-Hyon Kim
Kyeongsoon Park
Kyung-Hee Choi
Soo-Hong Kim
Se Eun Kim
Chang-Mo Jeong
Jung-Bo Huh
author_sort Mu-Hyon Kim
title Cell Adhesion and in Vivo Osseointegration of Sandblasted/Acid Etched/Anodized Dental Implants
title_short Cell Adhesion and in Vivo Osseointegration of Sandblasted/Acid Etched/Anodized Dental Implants
title_full Cell Adhesion and in Vivo Osseointegration of Sandblasted/Acid Etched/Anodized Dental Implants
title_fullStr Cell Adhesion and in Vivo Osseointegration of Sandblasted/Acid Etched/Anodized Dental Implants
title_full_unstemmed Cell Adhesion and in Vivo Osseointegration of Sandblasted/Acid Etched/Anodized Dental Implants
title_sort cell adhesion and in vivo osseointegration of sandblasted/acid etched/anodized dental implants
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1422-0067
publishDate 2015-05-01
description The authors describe a new type of titanium (Ti) implant as a Modi-anodized (ANO) Ti implant, the surface of which was treated by sandblasting, acid etching (SLA), and anodized techniques. The aim of the present study was to evaluate the adhesion of MG-63 cells to Modi-ANO surface treated Ti in vitro and to investigate its osseointegration characteristics in vivo. Four different types of Ti implants were examined, that is, machined Ti (control), SLA, anodized, and Modi-ANO Ti. In the cell adhesion study, Modi-ANO Ti showed higher initial MG-63 cell adhesion and induced greater filopodia growth than other groups. In vivo study in a beagle model revealed the bone-to-implant contact (BIC) of Modi-ANO Ti (74.20% ± 10.89%) was much greater than those of machined (33.58% ± 8.63%), SLA (58.47% ± 12.89), or ANO Ti (59.62% ± 18.30%). In conclusion, this study demonstrates that Modi-ANO Ti implants produced by sandblasting, acid etching, and anodizing improve cell adhesion and bone ongrowth as compared with machined, SLA, or ANO Ti implants. These findings suggest that the application of Modi-ANO surface treatment could improve the osseointegration of dental implant.
topic titanium implant
sandblasting and acid etching
anodization
osteoblast
osseointegration
url http://www.mdpi.com/1422-0067/16/5/10324
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