Association between Intraosseous Vasculature and Bone Matrix Anisotropy Analyzed with a Novel Visualization Method

IF 0.5 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING
A. Sekita, Aira Matsugaki, Ryosuke Ozasa, T. Nakano
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引用次数: 0

Abstract

Bone tissue has a highly anisotropic microstructure derived from collagen matrix alignment and the crystallographic orientation of apatite. Bone is also a highly vascularized tissue; intraosseous vascularization and bone formation are intimately coupled. Mean -while, the structural relations between intraosseous vascular networks and bone microstructure are as yet unknown, partially due to technical difficulties in visualizing precise intraosseous vasculatures. The aim of this study is to develop a visualization method suitable for the structural analysis of intraosseous vascular networks and to reveal the relations between bone microstructure and the arrangement patterns of intraosseous vasculatures both in intact and metastasized bones. Three - dimensional vascular networks were successfully visualized, and region - dependent arrangement patterns of blood vessels were clarified using fluorescent dye - conjugated lectin. Interestingly, the anisotropic structural correlation between bone matrix and the vascular system in a region specific manner was clarified. In addition, the impaired anisotropic vascular networks in metastasized bone was clarified. The obtained results indicate the molecular interactions between the vascular system and bone tissue as a novel contributor for realiza tion of anisotropic bone matrix construct. ] ( )
一种新的可视化方法分析骨内血管系统与骨基质各向异性之间的关系
骨组织具有高度各向异性的微观结构,来源于胶原基质的排列和磷灰石的晶体取向。骨也是一种高度血管化的组织;骨内血管形成与骨形成密切相关。同时,骨内血管网络和骨微结构之间的结构关系尚不清楚,部分原因是在可视化精确的骨内血管系统方面存在技术困难。本研究的目的是开发一种适合于骨内血管网络结构分析的可视化方法,揭示完整骨和转移骨中骨内血管网络的排列模式与骨微结构之间的关系。利用荧光染料偶联凝集素成功地实现了三维血管网络的可视化,并阐明了血管的区域依赖性排列模式。有趣的是,骨基质和血管系统在特定区域的各向异性结构相关性得到了澄清。此外,转移骨中受损的各向异性血管网络也得到了澄清。研究结果表明,血管系统与骨组织之间的分子相互作用是实现各向异性骨基质构建的新途径。] ( )
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来源期刊
Journal of The Japan Institute of Metals
Journal of The Japan Institute of Metals 工程技术-冶金工程
CiteScore
0.70
自引率
0.00%
发文量
27
审稿时长
6-12 weeks
期刊介绍: Information not localized
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