Surface modifications by gas plasma control osteogenic differentiation of MC3T3-E1 cells

被引:37
作者
Barradas, Ana M. C. [1 ]
Lachmann, Kristina [2 ]
Hlawacek, Gregor [3 ]
Frielink, Cathelijne [4 ]
Truckenmoller, Roman [1 ]
Boerman, Otto C. [4 ]
van Gastel, Raoul [3 ]
Garritsen, Henk [5 ,6 ]
Thomas, Michael [2 ]
Moroni, Lorenzo [1 ]
van Blitterswijk, Clemens [1 ]
de Boer, Jan [1 ]
机构
[1] Univ Twente, MIRA Inst Biomed Res & Tech Med, Dept Tissue Regenerat, NL-7500 AE Enschede, Netherlands
[2] Fraunhofer Inst Surface Engn & Thin Films IST, D-38108 Braunschweig, Germany
[3] Univ Twente, MESA Inst Nanotechnol, NL-7500 AE Enschede, Netherlands
[4] Radboud Univ Nijmegen, Med Ctr, Dept Nucl Med, NL-6525 GA Nijmegen, Netherlands
[5] Helmholtz Ctr Infect Res GmbH, D-38124 Braunschweig, Germany
[6] Stadt Klinikum, Dept Transfus Med, D-38114 Braunschweig, Germany
关键词
Biomaterials; Surface characterization; Protein adsorption; Cell adhesion; Osteogenic differentiation; IN-VITRO; PROTEIN ADSORPTION; INTEGRIN BINDING; BONE-FORMATION; PHENOTYPE; POLYMERS; BIOMATERIALS; SPECIFICITY; TISSUE; MODEL;
D O I
10.1016/j.actbio.2012.04.021
中图分类号
R318 [生物医学工程];
学科分类号
100103 [病原生物学];
摘要
Numerous studies have shown that the physicochemical properties of biomaterials can control cell activity. Cell adhesion, proliferation, differentiation as well as tissue formation in vivo can be tuned by properties such as the porosity, surface micro- and nanoscale topography and chemical composition of biomaterials. This concept is very appealing for tissue engineering since instructive properties in bioactive materials can be more economical and time efficient than traditional strategies of cell pre-differentiation in vitro prior to implantation. The biomaterial surface, which is easy to modify due to its accessibility, may provide the necessary signals to elicit a certain cellular behavior. Here, we used gas plasma technology at atmospheric pressure to modify the physicochemical properties of polylactic acid and analyzed how this influenced pre-osteoblast proliferation and differentiation. Tetramethylsilane and 3-aminopropyl-trimethoxysilane with helium as a carrier gas or a mixture of nitrogen and hydrogen were discharged to polylactic acid discs to create different surface chemical compositions, hydrophobicity and microscale topographies. Such modifications influenced protein adsorption and pre-osteoblast cell adhesion, proliferation and osteogenic differentiation. Furthermore polylactic acid treated with tetramethylsilane enhanced osteogenic differentiation compared to the other surfaces. This promising surface modification could be further explored for potential development of bone graft substitutes. (c) 2012 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:2969 / 2977
页数:9
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