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Abnormal arrangement of a collagen/apatite extracellular matrix orthogonal to osteoblast alignment is constructed by a nanoscale periodic surface structure

机译:通过纳米级周期性表面结构构建与成骨细胞对准正交的胶原/磷灰石细胞外基质的异常布置

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摘要

Morphological and directional alteration of cells is essential for structurally appropriate construction of tissues and organs. In particular, osteoblast alignment is crucial for the realization of anisotropic bone tissue microstructure. In this article, the orientation of a collagen/apatite extracellular matrix (ECM) was established by controlling osteoblast alignment using a surface geometry with nanometer-sized periodicity induced by laser ablation. Laser irradiation induced self-organized periodic structures (laser-induced periodic surface structures; LIPSS) with a spatial period equal to the wavelength of the incident laser on the surface of biomedical alloys of Ti-6Al-4V and Co-Cr-Mo. Osteoblast orientation was successfully induced parallel to the grating structure. Notably, both the fibrous orientation of the secreted collagen matrix and the c-axis of the produced apatite crystals were orientated orthogonal to the cell direction. To the best of our knowledge, this is the first report demonstrating that bone tissue anisotropy is controllable, including the characteristic organization of a collagen/apatite composite orthogonal to the osteoblast orientation, by controlling the cell alignment using periodic surface geometry. (C) 2014 Elsevier Ltd. All rights reserved.
机译:细胞的形态和定向改变对于结构上适当的组织和器官构建是必不可少的。特别地,成骨细胞对准对于实现各向异性骨组织微观结构至关重要。在本文中,通过使用通过激光烧蚀诱导的纳米尺寸的周期性来控制成骨细胞对准来建立胶原/磷灰石细胞外基质(ECM)的取向。激光照射诱导自组织的周期结构(激光诱导的周期性表面结构;唇),其空间周期等于入射激光的波长在Ti-6Al-4V和Co-Cr-Mo的生物医学合金表面上。成骨细胞取向成功地与光栅结构平行诱导。值得注意的是,分泌的胶原基质的纤维取向和所产生的磷灰石晶体的C轴的纤维取向被定向与细胞方向正交。据我们所知,这是第一份证明骨组织各向异性可控的报告,包括使用周期性表面几何形状控制细胞对准,包括与成骨细胞取向正交的胶原/磷灰石复合物的特征组织。 (c)2014年elestvier有限公司保留所有权利。

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