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二氧化硅涂层增强树脂水门汀与氧化锆粘结力的有效性:一项系统评价

Effectiveness of Silica Coatings in Enhancing Resin Cement Adhesion to Zirconia: A Systematic Review.

作者信息

Lara-Hernández Laura C, Jiménez-Borrego Luis C, Roa Nelly S

机构信息

Centro de Investigaciones Odontológicas (CIO), Departamento del Sistema Dentario, Facultad de Odontología, Pontificia Universidad Javeriana, Bogotá 110231, Colombia.

Grupo de Películas Delgadas y Nanofotónica, Departamento de Física, Facultad de Ciencias, Pontificia Universidad Javeriana, Bogotá 110231, Colombia.

出版信息

Dent J (Basel). 2025 Sep 15;13(9):426. doi: 10.3390/dj13090426.

Abstract

The use of zirconia-based restorations has increased in dentistry due to their aesthetics, high strength, and biocompatibility. However, achieving durable adhesion between resin cements and zirconia remains a challenge in restorative dentistry. Adhesive failures can lead to complications ranging from dentin hypersensitivity to the loss of the restored tooth. This review evaluates the impact of surface treatments based on silica coatings as a strategy to improve the adhesion of resin cements to zirconia. : A systematic review was conducted following PRISMA guidelines. Searches were performed in Scopus, Web of Science, PubMed, EBSCO, and ScienceDirect. In vitro studies were included if they (1) evaluated silica-based coatings on zirconia surfaces; (2) measured bond strength at the zirconia-cement interface through shear tests (MPa) and reported failure type (adhesive, cohesive, mixed); (3) used ≥8 specimens per group; and (4) included an untreated zirconia control group. Data were extracted and compared for conditions before and after thermocycling in the studies that reported this procedure. : The average bond strength for silica-coated zirconia was 15 MPa without thermocycling and 11.97 MPa after thermocycling, regardless of the coating technique. These values were significantly higher than those of untreated zirconia (8.45 MPa and 6.41 MPa, respectively). Cohesive and mixed failures predominated in silica-treated groups, suggesting more effective adhesion compared to controls, which presented mainly adhesive failures. : Silica coatings, especially when combined with adhesion promoters, MDP-based primers, significantly enhance the bond strength of resin cements to zirconia. This reduces the risk of secondary caries, sensitivity, restoration debonding, and potential tooth fractures. However, the effectiveness of these coatings varies depending on the technique used, suggesting the need to standardize protocols to optimize clinical outcomes.

摘要

由于其美观性、高强度和生物相容性,基于氧化锆的修复体在牙科领域的使用有所增加。然而,在修复牙科中,实现树脂水门汀与氧化锆之间的持久粘结仍然是一项挑战。粘结失败可能导致从牙本质过敏到修复牙齿脱落等一系列并发症。本综述评估了基于二氧化硅涂层的表面处理作为提高树脂水门汀与氧化锆粘结力的一种策略的影响。:按照PRISMA指南进行了系统综述。在Scopus、科学网、PubMed、EBSCO和ScienceDirect中进行了检索。纳入的体外研究需满足以下条件:(1)评估氧化锆表面的二氧化硅基涂层;(2)通过剪切试验(MPa)测量氧化锆-水门汀界面的粘结强度并报告失败类型(粘结、内聚、混合);(3)每组使用≥8个样本;(4)包括未处理的氧化锆对照组。在报告了该程序的研究中,提取并比较了热循环前后的条件数据。:无论涂层技术如何,二氧化硅涂层氧化锆在未进行热循环时的平均粘结强度为15 MPa,热循环后的平均粘结强度为11.97 MPa。这些值显著高于未处理的氧化锆(分别为8.45 MPa和6.41 MPa)。在二氧化硅处理组中,内聚和混合失败占主导,表明与主要表现为粘结失败的对照组相比,粘结更有效。:二氧化硅涂层,特别是与粘结促进剂、基于MDP的底漆结合使用时,可显著提高树脂水门汀与氧化锆的粘结强度。这降低了继发龋、敏感性、修复体脱粘和潜在牙齿骨折的风险。然而,这些涂层的有效性因使用的技术而异,这表明需要标准化方案以优化临床结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3738/12468174/d3038f00c8c3/dentistry-13-00426-g001.jpg

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