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Developing biomedical nano-grained beta-type titanium alloys using high pressure torsion for improved cell adherence

机译:使用高压扭转开发生物医学纳米晶粒β型钛合金,以改善细胞粘附

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摘要

Proper surface characteristics for a titanium implant are crucial for the formation of different cellular protrusions known as filopodia and lamellipodia, both of which have a significant impact on cell attachment, spreading, migration, and proliferation. Microstructural features such as grain boundaries and defects of implant surface can modulate the cellular components and structure at the leading edge of cells. Here, a nano-grained Ti-29Nb-13Ta-4.6Zr (NG TNTZ) substrate was produced by high-pressure torsion (HPT) for improved biofunctionality. Cellular response of human osteoblast cells on nano-grained TNTZ substrates is evaluated and compared with the cellular response of those on coarse-grained TNTZ. High wettability, which depends on high internal energy due to the nano-sized grains that are full of boundaries, interfaces, and high dislocation density, influenced the hOBs cells on NG TNTZ to form highly developed cellular protrusions. Large number of filopodia protrusions resulted in excellent cell attachment as consistent with high level of vinculin and superior cell proliferation. This study demonstrates the advantages of nanocrystalline surface modification using HPT for processingmetallic biomaterials that are proper for orthopedic implants.
机译:钛植入物的适当表面特征对于形成不同的细胞突起,称为氟葡萄显赤症和层状绦虫的形成至关重要,这两者都对细胞附着,扩散,迁移和增殖具有显着影响。诸如植入物表面的晶界和缺陷的微观结构特征可以调节细胞前缘的细胞部件和结构。这里,通过高压扭转(HPT)制备纳米颗粒Ti-29NB-13TA-4.6ZR(Ng TNTZ)底物,以改善生物抗uncursality。评估人骨细胞对纳米粒细胞对纳米粒细胞的细胞响应,并与粗粒TNTZ上的细胞反应进行比较。高润湿性,这取决于纳米大小引起的高内部能量,这些颗粒具有充满界限,界面和高位错密度,影响了NG TNTZ上的滚刀细胞形成高度发达的蜂窝突起。大量氟化胶质型突起导致具有优异的细胞连接,与高水平的vinculin和优异的细胞增殖一致。本研究表明,使用HPT用于适当对整形外科植入物的处理量生物材料的HPT的纳米晶体表面改性的优点。

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  • 来源
    《RSC Advances 》 |2016年第9期| 共5页
  • 作者单位

    Yildiz Tekn Univ Dept Met &

    Mat Engn TR-34210 Istanbul Turkey;

    Izmir Katip Celebi Univ Dept Biomed Engn TR-35620 Izmir Turkey;

    Tohoku Univ Inst Mat Res Sendai Miyagi 9808577 Japan;

    Tohoku Univ Inst Mat Res Sendai Miyagi 9808577 Japan;

    Tohoku Univ Inst Mat Res Sendai Miyagi 9808577 Japan;

    Osaka Univ Grad Sch Engn Div Mat &

    Mfg Sci Osaka 5650871 Japan;

    Toyohashi Univ Technol Dept Mech Engn Toyohashi Aichi 4418580 Japan;

    Tohoku Univ Grad Sch Environm Studies Sendai Miyagi 9808579 Japan;

    Tohoku Univ Grad Sch Environm Studies Sendai Miyagi 9808579 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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