The osseointegration and stability of dental implants with different surface treatments in animal models: a network meta-analysis

Abstract Dental implants are commonly used to repair missing teeth. The implant surface plays a critical role in promoting osseointegration and implant success. However, little information is available about which implant surface treatment technology best promotes osseointegration and implant stabil...

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Main Authors: Chun-Ping Hao, Nan-Jue Cao, Yu-He Zhu, Wei Wang
Format: Article
Language:English
Published: Nature Publishing Group 2021-07-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-93307-4
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spelling doaj-565173305b37437da18d0d93566c52292021-07-11T11:30:25ZengNature Publishing GroupScientific Reports2045-23222021-07-0111111210.1038/s41598-021-93307-4The osseointegration and stability of dental implants with different surface treatments in animal models: a network meta-analysisChun-Ping Hao0Nan-Jue Cao1Yu-He Zhu2Wei Wang3Liaoning Provincial Key Laboratory of Oral Diseases, School and Hospital of Stomatology, China Medical UniversityThe Fourth Affiliated Hospital, Zhejiang University School of MedicineLiaoning Provincial Key Laboratory of Oral Diseases, School and Hospital of Stomatology, China Medical UniversityLiaoning Provincial Key Laboratory of Oral Diseases, School and Hospital of Stomatology, China Medical UniversityAbstract Dental implants are commonly used to repair missing teeth. The implant surface plays a critical role in promoting osseointegration and implant success. However, little information is available about which implant surface treatment technology best promotes osseointegration and implant stability. The aim of this network meta-analysis was to evaluate the osseointegration and stability of four commonly used dental implants (SLA, SLActive, TiUnite, and Osseotite). The protocol of the current meta-analysis is registered in PROSPERO (International Prospective Register of Systematic Reviews) under the code CRD42020190907 ( https://www.crd.york.ac.uk ). We conducted a systematic review following PRISMA and Cochrane Recommendations. Medline (PubMed), Cochrane Library, Embase, and the Web of Science databases were searched. Only randomized controlled trials were considered. Twelve studies were included in the current network meta-analysis, eleven studies were included concerning the osseointegration effect and five studies were included for stability analysis (four studies were used to assess both stability and osseointegration). Rank possibility shows that the SLActive surface best promoted bone formation at an early healing stage and TiUnite seemed to be the best surface for overall osseointegration. For stability, TiUnite seemed to be the best surface. The present network meta-analysis showed that the SLActive surface has the potential to promote osseointegration at an early stage. The TiUnite surface had the best effect on osseointegration regarding the overall healing period. The TiUnite surface also had the best effect in stability.https://doi.org/10.1038/s41598-021-93307-4
collection DOAJ
language English
format Article
sources DOAJ
author Chun-Ping Hao
Nan-Jue Cao
Yu-He Zhu
Wei Wang
spellingShingle Chun-Ping Hao
Nan-Jue Cao
Yu-He Zhu
Wei Wang
The osseointegration and stability of dental implants with different surface treatments in animal models: a network meta-analysis
Scientific Reports
author_facet Chun-Ping Hao
Nan-Jue Cao
Yu-He Zhu
Wei Wang
author_sort Chun-Ping Hao
title The osseointegration and stability of dental implants with different surface treatments in animal models: a network meta-analysis
title_short The osseointegration and stability of dental implants with different surface treatments in animal models: a network meta-analysis
title_full The osseointegration and stability of dental implants with different surface treatments in animal models: a network meta-analysis
title_fullStr The osseointegration and stability of dental implants with different surface treatments in animal models: a network meta-analysis
title_full_unstemmed The osseointegration and stability of dental implants with different surface treatments in animal models: a network meta-analysis
title_sort osseointegration and stability of dental implants with different surface treatments in animal models: a network meta-analysis
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-07-01
description Abstract Dental implants are commonly used to repair missing teeth. The implant surface plays a critical role in promoting osseointegration and implant success. However, little information is available about which implant surface treatment technology best promotes osseointegration and implant stability. The aim of this network meta-analysis was to evaluate the osseointegration and stability of four commonly used dental implants (SLA, SLActive, TiUnite, and Osseotite). The protocol of the current meta-analysis is registered in PROSPERO (International Prospective Register of Systematic Reviews) under the code CRD42020190907 ( https://www.crd.york.ac.uk ). We conducted a systematic review following PRISMA and Cochrane Recommendations. Medline (PubMed), Cochrane Library, Embase, and the Web of Science databases were searched. Only randomized controlled trials were considered. Twelve studies were included in the current network meta-analysis, eleven studies were included concerning the osseointegration effect and five studies were included for stability analysis (four studies were used to assess both stability and osseointegration). Rank possibility shows that the SLActive surface best promoted bone formation at an early healing stage and TiUnite seemed to be the best surface for overall osseointegration. For stability, TiUnite seemed to be the best surface. The present network meta-analysis showed that the SLActive surface has the potential to promote osseointegration at an early stage. The TiUnite surface had the best effect on osseointegration regarding the overall healing period. The TiUnite surface also had the best effect in stability.
url https://doi.org/10.1038/s41598-021-93307-4
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