Samenvatting
Bone is a complex natural material with a complex hierarchical multiscale organization, crucial to perform its functions. Ultrastructural analysis of bone is crucial for our understanding of cell to cell communication, the healthy or pathological composition of bone tissue, and its three-dimensional (3D) organization. A variety of techniques has been used to analyze bone tissue. This article describes a combined approach of optical, scanning electron, and transmission electron microscopy for the ultrastructural analysis of bone from the nanoscale to the macroscale, as illustrated by two pathological bone tissues. By following a top-down approach to investigate the multiscale organization of pathological bones, quantitative estimates were made in terms of calcium content, nearest neighbor distances of osteocytes, canaliculi diameter, ordering, and D-spacing of the collagen fibrils, and the orientation of intrafibrillar minerals which enable us to observe the fine structural details. We identify and discuss a series of two-dimensional (2D) and 3D imaging techniques that can be used to characterize bone tissue. By doing so we demonstrate that, while 2D imaging techniques provide comparable information from pathological bone tissues, significantly different structural details are observed upon analyzing the pathological bone tissues in 3D. Finally, particular attention is paid to sample preparation for and quantitative processing of data from electron microscopic analysis.
Originele taal-2 | Engels |
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Pagina's (van-tot) | 469-486 |
Aantal pagina's | 18 |
Tijdschrift | Microscopy Research and Technique |
Volume | 85 |
Nummer van het tijdschrift | 2 |
DOI's | |
Status | Gepubliceerd - feb. 2022 |
Bibliografische nota
Publisher Copyright:© 2021 The Authors. Microscopy Research and Technique published by Wiley Periodicals LLC.
Financiering
The authors thank the various financiers, including the Department of Chemistry and Engineering, Eindhoven University of Technology, for their financial contributions. E.D.E. was supported by the European Research Council (ERC) Advanced Investigator grant (H2020‐ERC‐2017‐ADV‐788982‐COLMIN). A.D.E. was supported by European Union's Horizon 2020 research and innovation program under the Marie Sklodowska‐Curie grant agreement No. 676338. H2020 European Research Council, Grant/Award Number: 788982; Horizon 2020 Framework Programme, Grant/Award Number: 676338 Funding information
Financiers | Financiernummer |
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European Union’s Horizon Europe research and innovation programme | 676338, 788982 |
European Research Council | |
H2020 Marie Skłodowska-Curie Actions | |
European Research Council | |
Technische Universiteit Eindhoven | |
European Union’s Horizon Europe research and innovation programme |
Vingerafdruk
Duik in de onderzoeksthema's van 'Multiscale characterization of pathological bone tissue'. Samen vormen ze een unieke vingerafdruk.Uitrusting
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Center for Multiscale Electron Microscopy (CMEM)
Friedrich, H. (Manager), Bransen, M. (Education/onderzoek medewerker), Schmit, P. (Education/onderzoek medewerker), Schreur - Piet, I. (Inhoud) & Spoelstra, A. (Education/onderzoek medewerker)
Physical ChemistryUitrusting/faciliteit: Onderzoekslaboratorium