THE ROLE OF SURFACE MICROTOPOGRAPHY IN THE MODULATION OF OSTEOBLAST DIFFERENTIATION

被引:0
|
作者
Hayes, J. S. [1 ,2 ]
Khan, I. M. [2 ]
Archer, C. W. [2 ]
Richards, R. G. [1 ,2 ]
机构
[1] AO Res Inst Davos, CH-7270 Davos, Switzerland
[2] Cardiff Univ, Cardiff Sch Biosci, Cardiff, S Glam, Wales
关键词
Titanium; gene expression; surface modification; osteoblast differentiation; cell morphology; BONE SIALOPROTEIN EXPRESSION; IN-VIVO EVALUATION; GENE-EXPRESSION; TITANIUM SURFACES; HYDROXYAPATITE FORMATION; NANOSCALE TOPOGRAPHY; FIBROBLAST RESPONSE; PROTEIN-SYNTHESIS; CELLS MG63; ROUGHNESS;
D O I
暂无
中图分类号
Q813 [细胞工程];
学科分类号
摘要
The osteoinductive and conductive capabilities of commercially pure titanium and its alloys is well documented, as is their ability to provide long-term stability for permanent implantable devices. Fracture fixation in paediatric and trauma patients generally requires transient fixation after which the implant becomes redundant and requires removal. Removal can be complicated due to excessive bony over-growth which is encouraged by the standard micro-rough implant surface. We have shown in vivo that removal related morbidity can be significantly reduced with surface polishing, a technique which reduces the micro-roughness of clinically available materials. However, tissue integration at the bone-implant interface requires activation of key regulatory pathways which influences osteoblastic differentiation and maturation therefore we do not believe this effect to be purely mechanical. To elucidate potential mechanisms by which surface polishing exerts its effect on bone regeneration this study assessed in vitro the effect of surface polishing commercially pure titanium on cell growth, morphology and on the regulation of core binding factor 1, osterix, collagen 1, alkaline phosphatase, bone sialoprotein and osteocalcin for primary rat calvarial osteoblasts. Results indicate that polishing differentially influences osteoblast differentiation in a surface dependent manner and that these changes are potentially linked to surface dependent morphology, but not to differences in cell proliferation.
引用
收藏
页码:98 / 108
页数:11
相关论文
共 50 条
  • [21] Role of Cbfa1 in osteoblast differentiation and function
    Karsenty, G
    SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2000, 11 (05) : 343 - 346
  • [22] Role of Metformin on Osteoblast Differentiation in Type 2 Diabetes
    Lin Jiating
    Ji Buyun
    Zhang Yinchang
    BIOMED RESEARCH INTERNATIONAL, 2019, 2019
  • [23] Surface microtopography of sudoite
    Jige, M
    Kitagawa, R
    Zaykov, VV
    Sinyakovskaya, I
    CLAY MINERALS, 2003, 38 (03) : 375 - 382
  • [24] The role of matrix mineralisation during osteoblast to osteocyte differentiation
    Prideaux, M.
    Pitsillides, A.
    Loveridge, N.
    Farquharson, C.
    INTERNATIONAL JOURNAL OF EXPERIMENTAL PATHOLOGY, 2010, 91 (06) : A41 - A41
  • [25] WHATS NEW IN THE ROLE OF CYTOKINES ON OSTEOBLAST PROLIFERATION AND DIFFERENTIATION
    ZHENG, MH
    WOOD, DJ
    PAPADIMITRIOU, JM
    PATHOLOGY RESEARCH AND PRACTICE, 1992, 188 (08) : 1104 - 1121
  • [26] MEASUREMENT OF SURFACE MICROTOPOGRAPHY
    WALL, SD
    FARR, TG
    MULLER, JP
    LEWIS, P
    LEBERL, FW
    PHOTOGRAMMETRIC ENGINEERING AND REMOTE SENSING, 1991, 57 (08): : 1075 - 1078
  • [27] The Role of FIP200 in Osteoblast Differentiation.
    Liu, F.
    Gan, B.
    Guan, J.
    JOURNAL OF BONE AND MINERAL RESEARCH, 2008, 23 : S396 - S396
  • [28] Osteoblast Differentiation: the Role of Adhesive Interactions of Cells with the Substrate
    Gloushankova, N. A.
    Shtansky, D. V.
    BIOLOGICHESKIE MEMBRANY, 2013, 30 (02): : 136 - 141
  • [29] Lysosomal Acid Lipase and Its Role in Osteoblast Differentiation
    Rendina-Ruedy, Elizabeth
    Duta-Mare, Madalina-Cristina
    Kratky, Dagmar
    Rosen, Clifford
    JOURNAL OF BONE AND MINERAL RESEARCH, 2018, 33 : 346 - 346
  • [30] The role of apolipoprotein E in fracture healing and osteoblast differentiation
    Zong, Xiaohua
    Nadesan, Puviindran
    White, James
    White, Phillip
    Baht, Gurpreet
    JOURNAL OF BONE AND MINERAL RESEARCH, 2018, 33 : 9 - 9