Literature DB >> 30503623

In Toto Imaging of Dynamic Osteoblast Behaviors in Regenerating Skeletal Bone.

Ben D Cox1, Alessandro De Simone1, Valerie A Tornini1, Sumeet P Singh1, Stefano Di Talia2, Kenneth D Poss3.   

Abstract

Osteoblasts are matrix-depositing cells that can divide and heal bone injuries. Their deep-tissue location and the slow progression of bone regeneration challenge attempts to capture osteoblast behaviors in live tissue at high spatiotemporal resolution. Here, we have developed an imaging platform to monitor and quantify individual and collective behaviors of osteoblasts in adult zebrafish scales, skeletal body armor discs that regenerate rapidly after loss. Using a panel of transgenic lines that visualize and manipulate osteoblasts, we find that a founder pool of osteoblasts emerges through de novo differentiation within one day of scale plucking. These osteoblasts undergo division events that are largely uniform in frequency and orientation to establish a primordium. Osteoblast proliferation dynamics diversify across the primordium by two days after injury, with cell divisions focused near, and with orientations parallel to, the scale periphery, occurring coincident with dynamic localization of fgf20a gene expression. In posterior scale regions, cell elongation events initiate in areas soon occupied by mineralized grooves called radii, beginning approximately 2 days post injury, with patterned osteoblast death events accompanying maturation of these radii. By imaging at single-cell resolution, we detail acquisition of spatiotemporally distinct cell division, motility, and death dynamics within a founder osteoblast pool as bone regenerates.
Copyright © 2018 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  bone; differentiation; fibroblast growth factor; live imaging; osteoblast; proliferation; regeneration; scale; zebrafish

Mesh:

Year:  2018        PMID: 30503623      PMCID: PMC6298855          DOI: 10.1016/j.cub.2018.10.052

Source DB:  PubMed          Journal:  Curr Biol        ISSN: 0960-9822            Impact factor:   10.834


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