Strong binding of bioactive BMP-2 to nanocrystalline diamond by physisorption

被引:74
作者
Steinmueller-Nethl, Doris
Kloss, Frank R. [1 ]
Najam-U-Haq, Muhammed
Rainer, Matthias
Larsson, Karin
Linsmeier, Christian
Koehler, Gottfried
Fehrer, Christine
Lepperdinger, Guenter
Liu, Xianjie
Memmel, Norbert
Bertel, Erminald
Huck, Christian W.
Gassner, Robert
Bonn, Guenther
机构
[1] Univ Innsbruck, Dept Oral & Maxillofacial Surg, A-6020 Innsbruck, Austria
[2] PBeSt Coating GmbH, A-6020 Innsbruck, Austria
[3] Leopold Franzens Univ, Inst Analyt Chem & Radiochem, A-6020 Innsbruck, Austria
[4] Uppsala Univ, Dept Mat, Angstrom Lab, S-75121 Uppsala, Sweden
[5] EURATOM, Max Planck Inst Plasmaphys, D-85748 Munich, Germany
[6] Univ Vienna, Dept Biomol Struct Chem, Max F Perutz Labs, A-1030 Vienna, Austria
[7] Inst Biomed Aging Res, A-6020 Innsbruck, Austria
[8] Leopold Franzens Univ, Inst Phys Chem, A-6020 Innsbruck, Austria
基金
奥地利科学基金会;
关键词
physisorption; BMP-2; bone tissue engineering; nanocrystalline; diamond;
D O I
10.1016/j.biomaterials.2006.04.036
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Nano-crystalline diamond (NCD)-coated surfaces were efficiently functionalized with bone morphogenetic protein-2 (BMP-2) by means of physisorption. Due to their randomly oriented texture, NCD-coated surfaces appear to bind complex molecules firmly. Applying various highly sensitive analytical methods, the interaction was found extremely stable. The strength of the experimentally measured adherence between BMP-2 and NCD was further corroborated by theoretical calculations. Oxygen treatment rendered NCD hydrophilic by the appearance of surface oxygen containing groups. This particular NCD surface exhibited even higher binding energies towards BMP-2 than the hydrophobic surface, and this surface was also favoured by cultured cells. Most importantly in this context, bound BMP-2 was found fully active. When cultured on BMP-2-treated NCD, osteosarcoma cells strongly up-regulated alkaline phosphatase, a specific marker for osteogenic differentiation. Hence, this simple method will allow generating highly versatile surfaces with complex biomimetic coatings, essentials for novel medical devices and implants as well as for innovative scaffolds in tissue engineering. (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:4547 / 4556
页数:10
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