Human bone ultrastructure in 3D: Multimodal correlative study combining nanoscale X-ray computed tomography and quantitative polarized Raman spectroscopy

相关 材料科学 纳米尺度 拉曼光谱 X射线 超微结构 断层摄影术 计算机断层摄影术 X射线显微断层摄影术 生物医学工程 光谱学 光学 核磁共振 纳米技术 放射科 解剖 物理 医学 量子力学 哲学 语言学
作者
Tatiana Kochetkova,Tatiana Kormilina,Silvan Englisch,Dominik Drobek,Benjamin Apeleo Zubiri,Oliver Braun,Michel Calame,Stefan Remund,Beat Neuenschwander,Johann Michler,Philippe K. Zysset,Erdmann Spiecker,Jakob Schwiedrzik
出处
期刊:Acta Biomaterialia [Elsevier BV]
卷期号:198: 302-318 被引量:6
标识
DOI:10.1016/j.actbio.2025.03.045
摘要

voxel size resolves not only the lacuno-canalicular network but also the mineral ellipsoids associated with mineralized collagen fibrils (MCF). Site-matching 3D data with quantitative polarized Raman spectroscopy provides, in turn, complementary information on relative mineral and organic composition, while both techniques allow to quantify the MCF orientation. Bone matrix composition and lacuna-canalicular network organization are shown to vary between the osteonal and interstitial zones. Both plywood and gradual oscillating motifs of bone lamellation are observed, in line with existing theories. By combining these two methods, future studies can concentrate on other bone ultrastructural units of interest like interlamellar and cement interfaces, the structure of MCF around lacunae and near Haversian channels, as well as the influence of metabolic diseases on bone ultrastructure. STATEMENT OF SIGNIFICANCE: This study provides new insights into bone hierarchical organization, revealing local composition and lacuno-canalicular network organization within osteonal and interstitial bone zones, as well as their mineralized collagen fiber (MCF) orientation within the lamella. Synchrotron-like resolution was achieved on a laboratory-based nano-CT by exposing the volumes of interest from the bulk sample and applying machine learning segmentation algorithms. Site-matched analysis with quantitative Polarized Raman spectroscopy (qPRS) provided indirect access to relative mineral and organic composition variations and local MCF out-of-plane angle, with good agreement between the two methods. The proposed correlative experiment workflow greatly facilitates the characterization of bone ultrastructure and can be applied to other fields dealing with ordered hierarchical materials of similar feature sizes.
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