深入了解牙种植体的腐蚀:从生化机制到设计耐腐蚀材料。

Q2 Dentistry Current Oral Health Reports Pub Date : 2022-01-01 Epub Date: 2022-01-29 DOI:10.1007/s40496-022-00306-z
Bruna E Nagay, Jairo M Cordeiro, Valentim A R Barao
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引用次数: 16

摘要

综述目的:尽管有先进的技术可以避免种植体的腐蚀,但金属释放的机制及其在种植体周围疾病发病中的作用仍有待研究。因此,迫切需要了解腐蚀性产品的发病机制和预防策略,以减轻表面降解的风险。本文旨在总结口腔环境中生物腐蚀的证据,并讨论当前针对种植体的改进策略,重点是表面处理和钛基合金的方法学和电化学方面。最近的发现:最近的研究表明,磨损/腐蚀产物的存在可能通过触发微生物生态失调、促炎细胞因子的释放和动物骨吸收与种植体周围炎的进展有关。此外,目前的临床证据表明,在病变组织中存在金属样颗粒,支持它们作为种植体周围炎的危险因素的可能作用。例如,为了克服钛腐蚀的缺点,研究人员主要致力于通过改变其物理化学特性来开发用于牙科植入物的耐腐蚀合金和涂层。摘要:本文综述了目前的研究现状,发现腐蚀产物在体外有效地影响生物膜毒力和炎症因子。有争议和不标准化的数据是局限性的,这使得腐蚀产物是种植体周围炎发病的必要前提。另一方面,当涉及到降低植入物腐蚀速率的策略时,很明显,化学和物理性质对植入材料的体外电化学行为至关重要。例如,可以预见的是,薄膜/涂层的形成以及在基材中掺入一些功能化合物可能会增强材料的耐腐蚀性和生物反应。然而,该领域研究的最大挑战是实现对生物组织的充分刺激而不削弱其抗腐蚀的保护行为。此外,从体外研究结果到临床研究的可翻译性仍处于起步阶段。因此,除了开发更好的方法来提高种植体的耐蚀性外,还需要进一步积累有关腐蚀产物对种植体周围组织作用的高水平证据来证实本文的研究结果。此外,这些知识可以进一步开发安全、长期的种植体康复治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Insight Into Corrosion of Dental Implants: From Biochemical Mechanisms to Designing Corrosion-Resistant Materials.

Purpose of review: Despite advanced technologies to avoid corrosion of dental implants, the mechanisms toward the release of metals and their role in the onset of peri-implant diseases are still under-investigated. Effective knowledge on the etiopathogenesis of corrosive products and preventive strategies mitigating the risks for surface degradation are thus in dire need. This review aimed to summarize evidence toward biocorrosion in the oral environment and discuss the current strategies targeting the improvement of dental implants and focusing on the methodological and electrochemical aspects of surface treatments and titanium-based alloys.

Recent findings: Recent studies suggest the existence of wear/corrosion products may correlate with peri-implantitis progress by triggering microbial dysbiosis, the release of pro-inflammatory cytokines, and animal bone resorption. Furthermore, current clinical evidence demonstrating the presence of metal-like particles in diseased tissues supports their possible role as a risk factor for peri-implantitis. For instance, to overcome the drawback of titanium corrosion, researchers are primarily focusing on developing corrosion-resistant alloys and coatings for dental implants by changing their physicochemical features.

Summary: The current state-of-art discussed in this review found corrosion products effective in affecting biofilm virulence and inflammatory factors in vitro. Controversial and unstandardized data are limitations, making the premise of corrosion products being essential for peri-implantitis onset. On the other hand, when it comes to the strategies toward reducing implant corrosion rate, it is evident that the chemical and physical properties are crucial for the in vitro electrochemical behavior of the implant material. For instance, it is foreseeable that the formation of films/coatings and the incorporation of some functional compounds into the substrate may enhance the material's corrosion resistance and biological response. Nevertheless, the utmost challenge of research in this field is to achieve adequate stimulation of the biological tissues without weakening its protective behavior against corrosion. In addition, the translatability from in vitro findings to clinical studies is still in its infancy. Therefore, further accumulation of high-level evidence on the role of corrosion products on peri-implant tissues is expected to confirm the findings of the present review besides the development of better methods to improve the corrosion resistance of dental implants. Furthermore, such knowledge could further develop safe and long-term implant rehabilitation therapy.

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来源期刊
Current Oral Health Reports
Current Oral Health Reports Immunology and Microbiology-Immunology and Microbiology (miscellaneous)
CiteScore
3.00
自引率
0.00%
发文量
20
期刊介绍: Current Oral Health Reports strives to provide state-of-the-art reviews in critical areas relevant to the study and practice of dentistry. Translational breakthroughs have their roots in the application of innovative basic science. Many of the most fruitful areas for new discoveries are at the intersection of scientific disciplines and, indeed, from quite separate scientific subject areas. The purpose of this journal is to provide readers with impactful new material in a wide range of dentally relevant disciplines that are essential to the dentally related scientist, with international authorities serving as editorial board members and section editors. Timely and current reviews of the literature, written by some of the world’s leading researchers, will address a constantly updated list of subjects that will encompass host defenses, microbiology, wound healing, systemic disease interactions, risk factors, prevention, regenerative medicine, stem cells, cancer, genetics, and aging.
期刊最新文献
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