Cellular and molecular interactions between MC3T3-E1 pre-osteoblasts and nanostructured titanium produced by high-pressure torsion

被引:186
作者
Faghihi, Shahab
Azari, Fereshteh
Zhilyaev, Alexander P.
Szpunar, Jerzy A.
Vali, Hojatollah
Tabrizian, Maryam
机构
[1] McGill Univ, Dept Biomed Engn, Montreal, PQ H3A 2B4, Canada
[2] McGill Univ, Ctr Biorecognit & Biosensors, Montreal, PQ H3A 2B2, Canada
[3] McGill Univ, Dept Anat & Cell Biol, Montreal, PQ H3A 2B2, Canada
[4] CSIS, CENIM, Dept Met Phys, Madrid 28040, Spain
[5] McGill Univ, Dept Min Met & Mat Engn, Montreal, PQ H3A 2B2, Canada
[6] McGill Univ, McGill Inst Adv Mat, Montreal, PQ H3A 2B2, Canada
[7] McGill Univ, Fac Dent, Montreal, PQ H3A 2B2, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
high pressure torsion; nanostructured titanium; cell attachment; molecular interactions; fibronectin; actin and vinculin;
D O I
10.1016/j.biomaterials.2007.05.010
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Ultra-fine surface features are commonly used to modulate cellular activity on a variety of materials. The continuing challenge for materials in contact with bone is the development of a material with both favorable surface and bulk properties to modulate not only the cell-substrate interactions, but also to ensure the long-term stability of the implant. In a combined approach involving material sciences and cell and molecular biology, the nature and mechanism of cell-substrate interaction, in particular, the molecular machinery controlling cell response to the surface of the nanostructured titanium based material produced by the high pressure torsion (HPT) process is assessed. The degree of pre-osteoblast attachment and rate of growth, which are regulated through the activity and interaction of proteins present in the extracellular matrix and associated with cytoskeleton and focal adhesion, are notably increased on the HPT-processed titanium substrates. The improved cell activity is attributed to the nanostructured feature of these substrates consisting of ultra-fine crystals (<50 nm) and a distinct surface oxide layer which provide higher degree of surface wettability. These findings demonstrate the advantages of HPT-processed titanium over the conventional and coated titanium implants, as both mechanical properties and cellular response are improved. (C) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:3887 / 3895
页数:9
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