The role of embryonic origins and suture proximity in repair of cranial bone
Doro, D.; Liu, A.; Lau, J. S.; Rajendran, A. K.; Healy, C.; Grigoriadis, A. E.; Iseki, S.; Liu, K. J.
Show abstract
The cranial sutures are proposed to be a stem cell niche, harbouring skeletal stem cells (SSCs) that are directly involved in development, homeostasis, and healing. Like the craniofacial bones, the sutures are formed from both mesoderm and neural crest. During cranial repair, neural crest cells have been proposed to be key players; however, neural crest contributions to the sutures are not well defined, and the relative importance of suture proximity is unclear. Here, we combine calvarial wounding experiments with genetically labelled mouse models to demonstrate that suture proximity predicts the efficiency of cranial repair. Furthermore, we define the neural crest-mesoderm boundary within the sutures and demonstrate that Gli1+ and Axin2+ SSCs are present in all calvarial sutures examined. We propose that the position of the defect determines the availability of neural crest-derived progenitors, which appear to be a key element in the repair of calvarial defects. Summary statementThis study provides a new examination of the embryonic origins of cranial sutures in mouse. Using genetic lineage labelling, we identify specific contributions of neural crest cells and associated skeletal stem cells during repair of calvarial wounds. This is extremely relevant considering recent findings regarding the role of suture-residing stem cells.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Control of Craniofacial Development by the Collagen Receptor, Discoidin Domain Receptor 2 97%
- A dysmorphic mouse model reveals developmental interactions of chondrocranium and dermatocranium 95%
- High Resolution Imaging of the Osteogenic and Angiogenic Interface at the Site of Cranial Bone Defect Repair via Multiphoton Microscopy 93%
Similar papers in this journal
- Apical expansion of calvarial osteoblasts and suture patency is dependent on graded fibronectin cues 93%
- Mesenchymal Wnts are required for morphogenetic movements of calvarial osteoblasts during apical expansion 93%
- Ciliopathic micrognathia is caused by aberrant skeletal differentiation and remodeling 93%
Similar papers in this journal
- Cellular and molecular mechanisms of frontal bone development in spotted gar (Lepisosteus oculatus) 95%
- Knockout of the gene encoding the extracellular matrix protein SNED1 results in early neonatal lethality and craniofacial malformations 94%
- Deletion of Fibroblast growth factor 9 globally and in skeletal muscle results in enlarged tuberosities at sites of deltoid tendon attachments 93%
Similar papers in this journal
- Mechanical loading of cranial joints minimizes the craniofacial phenotype in Crouzon syndrome 97%
- Individualized cyclic mechanical loading improves callus properties during the remodelling phase of fracture healing in mice as assessed from time-lapsed in vivo imaging 93%
- Canonical and noncanonical TGF-β signaling regulate fibrous tissue differentiation in the axial skeleton 92%
Similar papers in this journal
- Control of alveolar bone development, homeostasis, and socket healing by salt inducible kinases 95%
- Bone pain in Fibrous dysplasia does not rely on aberrant sensory nerve sprouting or neuroma formation 94%
- Osteocyte death and bone overgrowth in mice lacking Fibroblast Growth Factor Receptors 1 and 2 in mature osteoblasts and osteocytes 93%
"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.