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Influence of Different Three-Dimensional Open Porous Titanium Scaffold Designs on Human Osteoblasts Behavior in Static and Dynamic Cell Investigations

机译:在静态和动态细胞研究中不同的三维开放式多孔钛支架设计对人类成骨细胞行为的影响

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摘要

In the treatment of osseous defects micro-structured three-dimensional materials for bone replacement serve as leading structure for cell migration, proliferation and bone formation. The scaffold design and culture conditions are crucial for the limited diffusion distance of nutrients and oxygen. In static culture, decreased cell activity and irregular distribution occur within the scaffold. Dynamic conditions entail physical stimulation and constant medium perfusion imitating physiological nutrient supply and metabolite disposal. Therefore, we investigated the influence of different scaffold configurations and cultivation methods on human osteoblasts. Cells were seeded on three-dimensional porous Ti-6Al-4V scaffolds manufactured with selective laser melting (SLM) or electron beam melting (EBM) varying in porosity, pore size and basic structure (cubic, diagonal, pyramidal) and cultured under static and dynamic conditions. Cell viability, migration and matrix production were examined via mitochondrial activity assay, fluorescence staining and ELISA. All scaffolds showed an increasing cell activity and matrix production under static conditions over time. Expectations about the dynamic culture were only partially fulfilled, since it enabled proliferation alike the static one and enhanced cell migration. Overall, the SLM manufactured scaffold with the highest porosity, small pore size and pyramidal basic structure proved to be the most suitable structure for cell proliferation and migration.
机译:在骨性缺损的治疗中,用于骨置换的微结构三维材料是细胞迁移,增殖和骨形成的主要结构。支架的设计和培养条件对于限制养分和氧气的扩散距离至关重要。在静态培养中,支架内发生细胞活性降低和不规则分布。动态条件需要物理刺激和恒定的介质灌注,以模仿生理营养物的供应和代谢产物的处理。因此,我们研究了不同的支架结构和培养方法对人成骨细胞的影响。将细胞接种在三维多孔Ti-6Al-4V支架上,该支架采用选择性激光熔化(SLM)或电子束熔化(EBM)制造,其孔隙率,孔径和基本结构(立方,对角,金字塔形)各不相同,并在静态和静态条件下培养动态条件。通过线粒体活性测定,荧光染色和ELISA检查细胞活力,迁移和基质产生。随着时间的推移,所有支架在静态条件下均显示出增加的细胞活性和基质产生。对动态培养的期望只是部分实现,因为它可以像静态培养一样促进增殖并增强细胞迁移。总的来说,由SLM制造的具有最高孔隙率,小孔径和金字塔形基本结构的支架被证明是最适合细胞增殖和迁移的结构。

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