在氨基功能化钛表面改善初始成骨细胞功能

Barbara Nebe , Birgit Finke , Frank Lüthen , Claudia Bergemann , Karsten Schröder , Joachim Rychly , Klaus Liefeith , Andreas Ohl
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引用次数: 84

摘要

细胞在生物材料上的粘附和扩散是整合素介导的过程。但最近的研究结果表明,细胞膜相关基质物质透明质酸(HA)在界面相互作用中起关键作用。由于透明质酸是一种带负电荷的分子,我们假设带有相反电荷的生物材料表面可以促进细胞与表面的第一次接触。将抛光后的cp钛(Ra = 0.19 μm)包覆一层含氨基等离子体聚合物(Ti PPA)。为此,使用了微波激发、脉冲、低压等离子体。此外,用聚乙二醇二酸(PEG-DA)固定胶原蛋白,以碳二亚胺(CDI)催化。采用XPS、FT-IR、水接触角和ζ电位等理化表面分析技术验证了烯丙胺前驱体结构的保留。在无血清Dulbecco's modified Eagle培养基(DMEM)中培养人成骨细胞。流式细胞术计算黏附和细胞周期相。共聚焦显微镜观察细胞扩散和肌动蛋白骨架。采用实时RT-PCR检测成骨标志物的基因表达。在细胞接触表面的最初几个小时内,Ti PPA在初始粘附和扩散方面具有显著的优势。成骨细胞的增殖受到积极影响。分化标记骨唾液蛋白的基因表达在24 h后上调。我们的研究结果表明,带正电荷的氨基功能化钛足以显著改善细胞与材料表面接触的初始步骤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved initial osteoblast functions on amino-functionalized titanium surfaces

Adhesion and spreading of cells on biomaterials are integrin-mediated processes. But recent findings indicate a key role of the cell membrane associated matrix substance hyaluronan (HA) in interface interactions. Because HA is a negatively charged molecule we assume that a biomaterial surface with an opposed charge could boost the first contact of the cell to the surface. Polished cp titanium (Ra = 0.19 μm) was coated with an amino-group containing plasma polymer (Ti PPA). For this purpose, a microwave excited, pulsed, low-pressure plasma was used. Additionally, collagen was immobilized on Ti PPA with polyethylene glycol diacid (PEG-DA), catalyzed by carbodiimide (CDI). The physico-chemical surface analytical techniques like XPS, FT-IR, water contact angle and zeta-potential verified the retention of the allylamine precursor structure. Human osteoblasts were cultured in serum-free Dulbecco's modified Eagle medium (DMEM). Adhesion and cell cycle phases were calculated by flow cytometry. Spreading and actin cytoskeleton were visualized by confocal microscopy. Gene expression of osteogenic markers was detected by real-time RT-PCR. Ti PPA is significantly advantageous concerning initial adhesion and spreading during the first hours of the cell contact to the surface. The proliferation of osteoblasts is positively influenced. Gene expression of the differentiation marker bone sialoprotein was upregulated after 24 h.

Our results demonstrate that functionalization of titanium with positively charged amino-groups is sufficiently enough to significantly improve initial steps of the cellular contact to the material surface.

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