首页> 外文期刊>Journal of biomedical materials research, Part A >Human fibroblast reactions to standard and electropolished titanium and Ti-6Al-7Nb, and electropolished stainless steel.
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Human fibroblast reactions to standard and electropolished titanium and Ti-6Al-7Nb, and electropolished stainless steel.

机译:人的成纤维细胞对标准和电抛光钛和Ti-6AL-7NB的反应,以及电抛光不锈钢。

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Stainless steel (SS), titanium (cpTi), and Ti-6Al-7Nb (TAN) are frequently used metals in orthopedic internal fracture fixation. Although reactivity to SS and cpTi are noted in reference, the soft tissue compatibility of TAN has not been comprehensively studied. This study focuses on the in vitro soft tissue compatibility of TAN in comparison to SS and cpTi using a human fibroblast model. The industrial standard surface finishes of these three materials vary considerably in view of their use in similar applications. To distinguish between material parameters of topography and chemistry, we have included electropolished (e.p) counterparts of the standard preparations of cpTi and TAN in the study (standard SS is e.p). All materials were characterized using atomic force microscopy, profilometry, and scanning electron microscopy. Our findings demonstrate that cell morphology and growth rate was similar for SS, and e.p. cpTi and TAN, with cells well spread and forming a confluent monolayer by 10 days. Cell growth on standard cpTi was similar to the electropolished samples; however, they showed a less spread morphology with more filopodia and surface ruffling present. Cell morphology on standard TAN was rounded or elongated and proliferation was inhibited at all time points, with possible cell necrosis by day 10. We found evidence of endocytosis of beta-phase particles originating from the standard TAN surface. We believe that the particle uptake coupled with the characteristic surface topography contribute to the noncytocompatibility of fibroblasts on standard TAN.
机译:不锈钢(SS),钛(CPTI)和TI-6AL-7NB(TAN)经常使用矫形内部断裂固定中的金属。虽然参考了对SS和CPTI的反应性,但棕褐色的软组织相容性尚未全面研究。本研究侧重于使用人的成纤维细胞模型的SS和CPTI与SS和CPTI的体外软组织相容性。考虑到它们在类似应用中使用,这三种材料的工业标准表面饰面差异很大。为了区分地形和化学的材料参数,我们已经包括在研究中的CPTI和TAN的标准制剂的电解研(E.P)对应物(标准SS是E.P)。所有材料都是使用原子力显微镜,轮廓测定法和扫描电子显微镜的表征。我们的研究结果表明,SS和E.P的细胞形态和增长率相似。 CPTI和TAN,细胞孔涂布并在10天内通过汇合单层形成汇合单层。标准CPTI上的细胞生长类似于电力研磨样品;然而,它们表现出较少的传播形态与更多的氟化绦虫和表面褶皱存在。标准棕褐色的细胞形态是圆形的或细长的,并且在所有时间点抑制了细胞增殖,并且可能的细胞坏死第10天。我们发现源自标准棕褐色表面的β相颗粒的内吞作用。我们认为,与特征表面形貌耦合的粒子摄取有助于成纤维细胞对标准棕褐色的非胞间组相容性。

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