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通过激光纹理化对氧化锆或锂硅玻璃陶瓷进行表面改性,以增加义齿表面与树脂水门汀的黏附力:综合评价。

Surface modification of zirconia or lithium disilicate-reinforced glass ceramic by laser texturing to increase the adhesion of prosthetic surfaces to resin cements: an integrative review.

机构信息

Center for Microelectromechanical Systems (CMEMS), University of Minho, Campus de Azurém, 4800-058, Guimarães, Portugal.

LABBELS Associate Laboratory, University of Minho, 4710-057, Guimarães, Portugal.

出版信息

Clin Oral Investig. 2023 Jul;27(7):3331-3345. doi: 10.1007/s00784-023-05016-z. Epub 2023 Apr 17.

Abstract

OBJECTIVE

The purpose of this study was to perform an integrative review on laser texturing the inner surface of lithium disilicate-reinforced glass ceramic or zirconia to increase their bond strength to resin-matrix cements.

MATERIALS AND METHOD

A bibliographic review was performed on PubMed using the following search terms: "zirconia" OR "lithium disilicate" AND "laser" AND "surface" OR "roughness" AND "bond strength" AND "luting agent" OR "resin cement." Studies published in English language until March 15, 2023, were selected regarding the purpose of this study.

RESULTS

A total of fifty-six studies were identified althoug thirteen studies were selected. The findings revealed that zirconia surfaces were significantly modified after laser irradiation resulting in macro-scale aligned retentive regions with depth values ranging from 50 to 120 µm. Average roughness values of laser-textured zirconia by Er,Cr:YSGG laser (~ 0.83 µm) were quite similar when compared to grit-blasted zirconia surfaces (~ 0.9 µm) although roughness increased up to 2.4 µm depending on the laser type and parameters. Lithium disilicate-reinforced glass ceramics textured with Er:YAG revealed an average roughness of around 3.5 µm while surfaces textured using Nd:YAG laser revealed an average roughness of 2.69 µm; that was quite similar to the roughness values recorded for etched surfaces (2.64 µm). The shear bond strength (SBS) values of zirconia surfaces textured on Nd:YVO laser irradiation were slightly higher (~ 33.5 MPa) than those recorded for grit-blasted zirconia surfaces (28 MPa). Laser-textured zirconia surfaces on CO laser revealed higher SBS values (18.1 ±0.8 MPa) than those (9.1 ± 0.56 MPa) recorded for untreated zirconia surfaces. On lithium disilicate-reinforced glass ceramics, higher SBS values to resin-matrix cements were recorded for specimens textured with a combination of fractional CO laser irradiation and HF acid etching (~ 22-24 MPa) when compared with grit-blasted specimens (12.2 MPa). Another study revealed SBS values at around 27.5 MPa for Er:YAG-textured lithium disilicate-reinforced glass ceramics to resin-matrix cements.

CONCLUSIONS

The laser irradiation at high power increases the roughness of the inner surface of lithium disilicate-reinforced glass ceramic or zirconia leading to an enhanced bond strength to resin-matrix cements. Thus, the laser type and irradiation parameters can be adjusted to enhance the macro- and micro-scale retention of zirconia and glass ceramic surfaces to resin-matrix cements.

CLINICAL RELEVANCE

Alternative methods for surface modification of lithium disilicate-reinforced glass ceramic and zirconia surfaces have been assessed to provide proper morphological aspects for enhanced adhesion to resin-matrix cements. An increase in the bond strength of glass ceramics or zirconia to resin-matrix cements can improve the long-term performance of cemented prosthetic structures in the oral cavity.

摘要

目的

本研究旨在对锂硅玻璃陶瓷或氧化锆的内表面进行激光纹理处理,以提高其与树脂基质水泥的粘结强度,对其进行综合回顾。

材料与方法

在 PubMed 上使用以下搜索词进行文献回顾:“氧化锆”或“锂硅玻璃陶瓷”和“激光”和“表面”或“粗糙度”和“粘结强度”和“黏结剂”或“树脂水泥”。选择了截至 2023 年 3 月 15 日发表在英文文献中与本研究目的相关的研究。

结果

共确定了 56 项研究,但仅选择了 13 项研究。研究结果表明,激光照射后,氧化锆表面发生显著变化,形成具有 50 至 120 µm 深度的宏观对准保留区域。Er,Cr:YSGG 激光处理的氧化锆的平均粗糙度值(约 0.83 µm)与喷砂氧化锆表面(约 0.9 µm)相当,尽管粗糙度可根据激光类型和参数增加到 2.4 µm。用 Er:YAG 激光处理的锂硅玻璃陶瓷的平均粗糙度约为 3.5 µm,而用 Nd:YAG 激光处理的表面的平均粗糙度为 2.69 µm;这与蚀刻表面记录的粗糙度值非常相似(2.64 µm)。Nd:YVO 激光照射的氧化锆表面纹理的剪切粘结强度(SBS)值略高于喷砂氧化锆表面(28 MPa)(约 33.5 MPa)。CO 激光处理的氧化锆表面的 SBS 值(18.1 ± 0.8 MPa)高于未处理的氧化锆表面(9.1 ± 0.56 MPa)。在锂硅玻璃陶瓷上,用 CO 激光进行分束处理和 HF 酸蚀刻的组合处理的试件与喷砂处理的试件(12.2 MPa)相比,记录到更高的 SBS 值(22-24 MPa)。另一项研究表明,Er:YAG 处理的锂硅玻璃陶瓷的 SBS 值约为 27.5 MPa,用于树脂基质水泥。

结论

高强度激光照射会增加锂硅玻璃陶瓷或氧化锆内表面的粗糙度,从而提高与树脂基质水泥的粘结强度。因此,可以调整激光类型和照射参数,以增强氧化锆和玻璃陶瓷表面的宏观和微观保留力与树脂基质水泥。

临床相关性

评估了锂硅玻璃陶瓷和氧化锆表面的替代表面改性方法,以提供增强与树脂基质水泥的粘附性的适当形态方面。玻璃陶瓷或氧化锆与树脂基质水泥的粘结强度增加可以提高口腔中黏合修复结构的长期性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58c7/10329582/54d62d1e43fd/784_2023_5016_Fig1_HTML.jpg

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