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Surface Modifications of Dental Ceramic Implants with Different Glass Solder Matrices: In Vitro Analyses with Human Primary Osteoblasts and Epithelial Cells

机译:不同玻璃焊料基质的牙科陶瓷植入物的表面修饰:人类原代成骨细胞和上皮细胞的体外分析。

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摘要

Ceramic materials show excellent esthetic behavior, along with an absence of hypersensitivity, making them a possible alternative implant material in dental surgery. However, their surface properties enable only limited osseointegration compared to titanium implants. Within this study, a novel surface coating technique for enhanced osseointegration was investigated biologically and mechanically. Specimens of tetragonal zirconia polycrystal (TZP) and aluminum toughened zirconia (ATZ) were modified with glass solder matrices in two configurations which mainly consisted of SiO2, Al2O3, K2O, and Na2O. The influence on human osteoblastic and epithelial cell viability was examined by means of a WST-1 assay as well as live/dead staining. A C1CP-ELISA was carried out to verify procollagen type I production. Uncoated/sandblasted ceramic specimens and sandblasted titanium surfaces were investigated as a reference. Furthermore, mechanical investigations of bilaterally coated pellets were conducted with respect to surface roughness and adhesive strength of the different coatings. These tests could demonstrate a mechanically stable implant coating with glass solder matrices. The coated ceramic specimens show enhanced osteoblastic and partly epithelial viability and matrix production compared to the titanium control. Hence, the new glass solder matrix coating could improve bone cell growth as a prerequisite for enhanced osseointegration of ceramic implants.
机译:陶瓷材料表现出出色的美学行为,并且不存在超敏性,使其成为牙科手术中可能的替代植入材料。然而,与钛植入物相比,它们的表面性质仅能实现有限的骨整合。在这项研究中,从生物学和机械角度研究了一种新型的表面涂层技术,用于增强骨整合。用玻璃焊料基体对主要由SiO2,Al2O3,K2O和Na2O组成的两种结构的四方氧化锆多晶(TZP)和铝增韧氧化锆(ATZ)的样品进行了改性。通过WST-1测定以及活/死染色检查对人成骨细胞和上皮细胞生存力的影响。进行了C1CP-ELISA,以验证I型胶原原的产生。以未涂层/喷砂陶瓷样品和喷砂钛表面为参考。此外,就不同涂层的表面粗糙度和粘合强度进行了双边涂覆的粒料的机械研究。这些测试可以证明具有玻璃焊料基质的机械稳定的植入物涂层。与钛对照相比,涂覆的陶瓷样品显示出增强的成骨细胞和部分上皮生存能力以及基质产生。因此,新的玻璃焊料基体涂层可以改善骨细胞的生长,这是增强陶瓷植入物骨整合的前提。

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