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骨模拟定向胶原/磷灰石基质结构的定量调控取决于成骨细胞在定向胶原底物上的排列程度。

Quantitative regulation of bone-mimetic, oriented collagen/apatite matrix structure depends on the degree of osteoblast alignment on oriented collagen substrates.

作者信息

Matsugaki Aira, Isobe Yoshihiro, Saku Taro, Nakano Takayoshi

机构信息

Department of Materials Science and Engineering Graduate School of Engineering, Osaka University, 2-1, Yamada-Oka, Suita, Osaka, 565-0871, Japan.

出版信息

J Biomed Mater Res A. 2015 Feb;103(2):489-99. doi: 10.1002/jbm.a.35189. Epub 2014 Apr 25.

Abstract

Bone tissue has a specific anisotropic morphology derived from collagen fiber alignment and the related apatite crystal orientation as a bone quality index. However, the precise mechanism of cellular regulation of the crystallographic orientation of apatite has not been clarified. In this study, anisotropic construction of cell-produced mineralized matrix in vitro was established by initiating organized cellular alignment and subsequent oriented bone-like matrix (collagen/apatite) production. The oriented collagen substrates with three anisotropic levels were prepared by a hydrodynamic method. Primary osteoblasts were cultured on the fabricated substrates until mineralized matrix formation is confirmed. Osteoblast alignment was successfully regulated by the level of substrate collagen orientation, with preferential alignment along the direction of the collagen fibers. Notably, both fibrous orientation of newly synthesized collagen matrix and c-axis of produced apatite crystals showed preferential orientation along the cell direction. Because the degree of anisotropy of the deposited apatite crystals showed dependency on the directional distribution of osteoblasts cultured on the oriented collagen substrates, the cell orientation determines the crystallographic anisotropy of produced apatite crystals. To the best of our knowledge, this is the first report demonstrating that bone tissue anisotropy, even the alignment of apatite crystals, is controllable by varying the degree of osteoblast alignment via regulating the level of substrate orientation.

摘要

骨组织具有特定的各向异性形态,这种形态源于胶原纤维排列以及相关磷灰石晶体取向,可作为骨质量指标。然而,细胞对磷灰石晶体取向的精确调控机制尚未阐明。在本研究中,通过启动有组织的细胞排列以及随后定向生成类骨基质(胶原/磷灰石),在体外建立了细胞产生的矿化基质的各向异性构建。采用流体动力学方法制备了具有三种各向异性水平的定向胶原底物。将原代成骨细胞培养在制备好的底物上,直至确认矿化基质形成。成骨细胞排列成功地受到底物胶原取向水平的调控,优先沿胶原纤维方向排列。值得注意的是,新合成胶原基质的纤维取向和所生成磷灰石晶体的c轴均优先沿细胞方向取向。由于沉积磷灰石晶体的各向异性程度依赖于在定向胶原底物上培养的成骨细胞的方向分布,因此细胞取向决定了所生成磷灰石晶体的晶体学各向异性。据我们所知,这是第一份表明通过调节底物取向水平来改变成骨细胞排列程度,骨组织各向异性甚至磷灰石晶体排列是可控的报告。

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