TiO2 nanotubes as an antibacterial nanotextured surface for dental implants: Systematic review and meta-analysis

IF 4.6 1区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Dental Materials Pub Date : 2024-06-01 DOI:10.1016/j.dental.2024.04.009
Marcel F. Kunrath , Georgia Farina , Luiza B.S. Sturmer , Eduardo R. Teixeira
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Abstract

Objectives

Nanotechnology is constantly advancing in dental science, progressing several features aimed at improving dental implants. An alternative for surface treatment of dental implants is electrochemical anodization, which may generate a nanotubular surface (TiO2 nanotubes) with antibacterial potential and osteoinductive features. This systematic review and meta-analysis aims to elucidate the possible antibacterial properties of the surface in question compared to the untreated titanium surface.

Sources

For that purpose, was performed a systematic search on the bases PubMed, Lilacs, Embase, Web Of Science, Cinahl, and Cochrane Central, as well as, manual searches and gray literature.

Study selection

The searches resulted in 742 articles, of which 156 followed for full-text reading. Then, 37 were included in the systematic review and 8 were included in meta-analysis.

Results

Fifteen studies revealed significant antibacterial protection using TiO2 nanotube surfaces, while 15 studies found no statistical difference between control and nanotextured surfaces. Meta-analysis of in vitro studies demonstrated relevant bacterial reduction only for studies investigating Staphylococcus aureus in a period of 6 h. Meta-analysis of in vivo studies revealed three times lower bacterial adhesion and proliferation on TiO2 nanotube surfaces.

Conclusions

TiO2 nanotube topography as a surface for dental implants in preclinical research has demonstrated a positive relationship with antibacterial properties, nevertheless, factors such as anodization protocols, bacteria strains, and mono-culture methods should be taken into consideration, consequently, further studies are necessary to promote clinical translatability.

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将 TiO2 纳米管作为牙科植入物的抗菌纳米表面:系统综述和荟萃分析。
目的:纳米技术在牙科科学中的应用正在不断进步,其多项功能旨在改善牙科植入物。电化学阳极氧化法是牙科植入物表面处理的一种替代方法,可产生具有抗菌潜力和骨诱导特性的纳米管表面(TiO2 纳米管)。本系统综述和荟萃分析旨在阐明与未经处理的钛表面相比,该表面可能具有的抗菌特性:为此,我们在 PubMed、Lilacs、Embase、Web Of Science、Cinahl 和 Cochrane Central 等数据库中进行了系统性检索,并进行了人工检索和灰色文献检索:研究选择:通过检索获得了 742 篇文章,其中 156 篇进行了全文阅读。研究结果:15 项研究显示,该药物具有显著的抗菌作用:结果:15 项研究显示,TiO2 纳米管表面具有显著的抗菌保护作用,而 15 项研究发现,对照组和纳米纹理表面之间没有统计学差异。对体外研究进行的元分析表明,只有对金黄色葡萄球菌进行了 6 小时调查的研究才能减少细菌数量。对体内研究进行的元分析表明,TiO2 纳米管表面的细菌粘附和增殖能力比对照组低三倍:结论:在临床前研究中,TiO2 纳米管表面形貌作为牙科植入物的表面与抗菌性能有积极的关系,但应考虑阳极氧化方案、细菌菌株和单一培养方法等因素,因此有必要开展进一步的研究,以促进临床转化。
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来源期刊
Dental Materials
Dental Materials 工程技术-材料科学:生物材料
CiteScore
9.80
自引率
10.00%
发文量
290
审稿时长
67 days
期刊介绍: Dental Materials publishes original research, review articles, and short communications. Academy of Dental Materials members click here to register for free access to Dental Materials online. The principal aim of Dental Materials is to promote rapid communication of scientific information between academia, industry, and the dental practitioner. Original Manuscripts on clinical and laboratory research of basic and applied character which focus on the properties or performance of dental materials or the reaction of host tissues to materials are given priority publication. Other acceptable topics include application technology in clinical dentistry and dental laboratory technology. Comprehensive reviews and editorial commentaries on pertinent subjects will be considered.
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