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Femtosecond Laser Microstructuring of Titanium Surfaces for Middle Ear Ossicular Replacement Prosthesis - Results of Preliminary Studies

机译:飞秒激光对钛合金表面进行中耳听小骨置换假体的微结构化-初步研究结果

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摘要

The objective of this study was to optimize titanium surfaces by means of Ti: Sapphire femtosecond laser to improve the attachment of human cartilage cells on titanium prosthesis in middle ear surgery. The application of microstructures on titanium samples was evaluated and the influence of these microstructures on human auricular chondrocytes was studied in-vitro. After establishing the ear chondrocyte cell culture, cells were seeded on titanium platelets with selected microstructure patterns. Whereas the phenotype of cells seeded on unstructured titanium was similar to cells grown on standard tissue culture surfaces, the morphology of chondrocytes grown on structured titanium samples was influenced by the pattern. For future titanium middle ear prosthesis structural optimizations will be developed to promote chondrocyte growth and adhesion while impeding fibrocyte proliferation to avoid scarring on implant interfaces.
机译:这项研究的目的是通过Ti:蓝宝石飞秒激光优化钛表面,以改善中耳手术中人软骨细胞在钛假体上的附着。评估了微结构在钛样品上的应用,并体外研究了这些微结构对人耳软骨细胞的影响。建立耳软骨细胞培养后,将细胞接种到具有选定微结构模式的钛血小板上。尽管接种在非结构化钛上的细胞的表型与在标准组织培养表面上生长的细胞的表型相似,但在结构化钛样品上生长的软骨细胞的形态受到该模式的影响。对于未来的钛中耳假体,将开发结构优化以促进软骨细胞生长和粘附,同时阻止纤维细胞增殖,避免在植入物界面上形成疤痕。

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