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Maintenance of a bone collagen phenotype by osteoblast-like cells in 3D periodic porous titanium (Ti-6Al-4 V) structures fabricated by selective electron beam melting

机译:通过选择性电子束熔化制备的3D周期性多孔钛(Ti-6Al-4 V)结构中的成骨细胞样细胞维持骨胶原表型

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摘要

Regular 3D periodic porous Ti-6Al-4 V structures were fabricated by the selective electron beam melting method (EBM) over a range of relative densities (0.17–0.40) and pore sizes (500–1500 μm). Structures were seeded with human osteoblast-like cells (SAOS-2) and cultured for four weeks. Cells multiplied within these structures and extracellular matrix collagen content increased. Type I and type V collagens typically synthesized by osteoblasts were deposited in the newly formed matrix with time in culture. High magnification scanning electron microscopy revealed cells attached to surfaces on the interior of the structures with an increasingly fibrous matrix. The in-vitro results demonstrate that the novel EBM-processed porous structures, designed to address the effect of stress-shielding, are conducive to osteoblast attachment, proliferation and deposition of a collagenous matrix characteristic of bone.
机译:通过选择性电子束熔化法(EBM)在相对密度(0.17-0.40)和孔径(500-1500μm)的范围内制造了规则的3D周期性多孔Ti-6Al-4 V结构。用人成骨细胞样细胞(SAOS-2)播种结构,并培养4周。细胞在这些结构内倍增,细胞外基质胶原含量增加。随着时间的流逝,通常由成骨细胞合成的I型和V型胶原蛋白沉积在新形成的基质中。高倍扫描电子显微镜显示,细胞附着在结构内部表面的纤维越来越多。体外结果表明,新颖的EBM处理的多孔结构旨在解决应力屏蔽的影响,有利于成骨细胞的附着,骨骼特征性胶原基质的增殖和沉积。

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