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钛表面形貌和表面润湿性对成纤维细胞中粘着斑激酶介导信号传导的作用

Role of Titanium Surface Topography and Surface Wettability on Focal Adhesion Kinase Mediated Signaling in Fibroblasts.

作者信息

Oates Christine J, Wen Weiyan, Hamilton Douglas W

机构信息

Graduate Program of Biomedical Engineering, The University of Western Ontario, London, N6A 5B9 Ontario, Canada.

Division of Oral Biology, Schulich School of Medicine and Dentistry, The University of Western Ontario, London, Ontario N6A 5C1, Canada.

出版信息

Materials (Basel). 2011 May 9;4(5):893-907. doi: 10.3390/ma4050893.

Abstract

Changes of titanium surface roughness and surface free energy may influence protein absorption that increases cell differentiation through activation of focal adhesion kinase related pathways. However, the influence of titanium surface roughness and hydrophilicity on fibroblast behavior is not well understood. The aim of this study was to investigate the influence of topography and hydrophilicity on fibroblast attachment, spreading, morphology, intracellular signaling, proliferation, and collagen I mRNA levels. Using a cellular FAK knockout (FAK) model and wild-type (WT) controls, we also investigated the contribution of adhesion in fibroblasts cultured on smooth (PT), sand-blasted, large grit, acid-etched (SLA) and hydrophilic SLA topographies. Loss of FAK did not significantly affect fibroblast attachment to any surface, but SLA and hydrophilic SLA surface attenuated spreading of WT cells significantly more than FAK fibroblasts. Both FAK and WT cells formed numerous focal adhesions on PT surfaces, but significantly less on SLA and hydrophilic SLA surfaces. In WT cells, phosphorylation levels of FAK were lower on SLA and hydrophilic SLA in comparison with PT 24 h post seeding. Labeling of cells with antibodies to cortactin showed that FAKcells contained significantly more cortactin-rich focal adhesion in comparison with WT cells on PT surfaces, but not on SLA or hydrophilic SLA. ERK 1/2 phosphorylation was highest in WT cells on all surfaces which correlated with collagen I expression levels. We conclude that fibroblasts are sensitive to changes in surface roughness and hydrophilicity, with adhesive interactions mediated through FAK, an important modulator of fibroblast response.

摘要

钛表面粗糙度和表面自由能的变化可能会影响蛋白质吸附,而蛋白质吸附通过激活黏着斑激酶相关途径增加细胞分化。然而,钛表面粗糙度和亲水性对成纤维细胞行为的影响尚未完全了解。本研究的目的是探讨形貌和亲水性对成纤维细胞附着、铺展、形态、细胞内信号传导、增殖以及I型胶原蛋白mRNA水平的影响。使用细胞黏着斑激酶基因敲除(FAK)模型和野生型(WT)对照,我们还研究了在光滑(PT)、喷砂大颗粒酸蚀(SLA)和亲水性SLA形貌上培养的成纤维细胞中黏附的作用。FAK的缺失对成纤维细胞附着于任何表面均无显著影响,但SLA和亲水性SLA表面对WT细胞铺展的抑制作用明显大于FAK成纤维细胞。FAK细胞和WT细胞在PT表面均形成大量黏着斑,但在SLA和亲水性SLA表面形成的黏着斑明显较少。在WT细胞中,接种24小时后,与PT相比,SLA和亲水性SLA上FAK的磷酸化水平较低。用抗皮层肌动蛋白抗体标记细胞表明,与PT表面的WT细胞相比,FAK细胞在PT表面含有明显更多富含皮层肌动蛋白的黏着斑,但在SLA或亲水性SLA表面则不然。在所有表面上,WT细胞中ERK 1/2的磷酸化水平最高,这与I型胶原蛋白的表达水平相关。我们得出结论,成纤维细胞对表面粗糙度和亲水性的变化敏感,其黏附相互作用由FAK介导,FAK是成纤维细胞反应的重要调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/992c/5448591/a34953e21696/materials-04-00893-g001.jpg

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