Shedding light (... electrons) on human bone ultrastructure with correlative on-axis electron tomography and energy dispersive X-ray spectroscopy tomography
Micheletti, C.; Shah, F. A.; Palmquist, A.; Grandfield, K.
Show abstract
Mineralized collagen fibrils are the building block units of bone at the nanoscale. While it is known that collagen fibrils are mineralized both inside their gap zones (intra-fibrillar mineralization) and on their outer surfaces (extra-fibrillar mineralization), a clear visualization of this architecture in three dimensions (3D), combining structural and compositional information over large volumes, but without compromising the resolution, remains challenging. In this study, we demonstrate the use of on-axis Z-contrast electron tomography (ET) with correlative energy-dispersive X-ray spectroscopy (EDX) tomography to examine rod-shaped samples with a diameter up to 700 nm prepared from individual osteonal lamellae in the human femur. Our work mainly focuses on two aspects: i) low-contrast nanosized circular spaces ("holes") observed in sections of bone oriented perpendicular to the long axis of a long bone; and ii) extra-fibrillar mineral, especially in terms of morphology and spatial relationship with respect to intra-fibrillar mineral and collagen fibrils. From our analyses, it emerges quite clearly that most "holes" are cross-sectional views of collagen fibrils. While this had been postulated before, our 3D reconstructions and reslicing along meaningful two-dimensional (2D) cross-sections provide a direct visual confirmation. Extra-fibrillar mineral appears composed of thin plates that are interconnected and span over several collagen fibrils, confirming that mineralization is cross-fibrillar, at least for the extra-fibrillar phase. EDX tomography shows mineral signature (Ca and P) within the gap zones, but the signal appears weaker than that associated to the extra-fibrillar mineral, pointing towards the existence of dissimilarities between the two types of mineralization.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- 3D nanoscale analysis of bone healing around degrading Mg implants studied by X-ray scattering tensor tomography 96%
- Morphogenesis of the diamond-type stereom microlattice and the origin of saddle-shaped minimal surfaces in the echinoderm skeleton 95%
- Preserving Tissue Integrity Under the Beam: High-Energy, Low-Dose Synchrotron CT for in situ Imaging of Bovine Intervertebral Discs 93%
Similar papers in this journal
- Bridging the light-electron resolution gap with correlative cryo-SRRF and dual-axis cryo-STEM tomography 93%
- Dual-axis Volta phase plate cryo-electron tomography of Ebola virus-like particles reveals actin-VP40 interactions 93%
- Ice thickness control and measurement in the VitroJet for time-efficient single particle structure determination 91%
Similar papers in this journal
- Logistics of Bone Mineralization in the Chick Embryo Studied by 3D Cryo FIB-SEM Imaging 97%
- Single-cell metabolic imaging and digital scoring of fat tissue remodeling by label-free metabolic imaging 89%
- High-throughput, label-free and slide-free histological imaging by computational microscopy and unsupervised learning 88%
Similar papers in this journal
Similar papers in this journal
- A workflow integrating organ-on-chip culture and correlative 3D light and electron microscopy for microtissue analysis 93%
- Unsupervised determination of lung tumor margin with widefield polarimetric second-harmonic generation microscopy 91%
- Machine learning-enabled cancer diagnostics with widefield polarimetric second-harmonic generation microscopy 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.