Click here to close
Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly.
We suggest using a current version of Chrome,
FireFox, or Safari.
Sci Adv
2023 Aug 02;931:eadi0482. doi: 10.1126/sciadv.adi0482.
Show Gene links
Show Anatomy links
Spatiotemporal monitoring of hard tissue development reveals unknown features of tooth and bone development.
Gonzalez Lopez M
,
Huteckova B
,
Lavicky J
,
Zezula N
,
Rakultsev V
,
Fridrichova V
,
Tuaima H
,
Nottmeier C
,
Petersen J
,
Kavkova M
,
Zikmund T
,
Kaiser J
,
Lav R
,
Star H
,
Bryja V
,
Henyš P
,
Vořechovský M
,
Tucker AS
,
Harnos J
,
Buchtova M
,
Krivanek J
.
???displayArticle.abstract???
Mineralized tissues, such as bones or teeth, are essential structures of all vertebrates. They enable rapid movement, protection, and food processing, in addition to providing physiological functions. Although the development, regeneration, and pathogenesis of teeth and bones have been intensely studied, there is currently no tool to accurately follow the dynamics of growth and healing of these vital tissues in space and time. Here, we present the BEE-ST (Bones and tEEth Spatio-Temporal growth monitoring) approach, which allows precise quantification of development, regeneration, remodeling, and healing in any type of calcified tissue across different species. Using mouse teeth as model the turnover rate of continuously growing incisors was quantified, and role of hard/soft diet on molar root growth was shown. Furthermore, the dynamics of bones and teeth growth in lizards, frogs, birds, and zebrafish was uncovered. This approach represents an effective, highly reproducible, and versatile tool that opens up diverse possibilities in developmental biology, bone and tooth healing, tissue engineering, and disease modeling.
Acar,
Deep imaging of bone marrow shows non-dividing stem cells are mainly perisinusoidal.
2015, Pubmed
Acar,
Deep imaging of bone marrow shows non-dividing stem cells are mainly perisinusoidal.
2015,
Pubmed
An,
A quiescent cell population replenishes mesenchymal stem cells to drive accelerated growth in mouse incisors.
2018,
Pubmed
Apaza Alccayhuaman,
FasL is a catabolic factor in alveolar bone homeostasis.
2023,
Pubmed
Becker,
Immunostaining, dehydration, and clearing of mouse embryos for ultramicroscopy.
2013,
Pubmed
Borodinsky,
Xenopus laevis as a Model Organism for the Study of Spinal Cord Formation, Development, Function and Regeneration.
2017,
Pubmed
,
Xenbase
Brink,
Tooth Removal in the Leopard Gecko and the de novo Formation of Replacement Teeth.
2021,
Pubmed
Dietrich,
Skeletal Biology and Disease Modeling in Zebrafish.
2021,
Pubmed
Di Rocco,
Craniosynostosis and metabolic bone disorder. A review.
2019,
Pubmed
Emken,
Characterization of short-period and long-period incremental markings in porcine enamel and dentine-Results of a fluorochrome labelling study in wild boar and domestic pigs.
2021,
Pubmed
Francillon,
[Experimental demonstration of the annual characteristic of the lines of arrest of skeletal growth in Rana esculenta (Amphibia, anura)].
1985,
Pubmed
Goldberg,
Comparative studies between mice molars and incisors are required to draw an overview of enamel structural complexity.
2014,
Pubmed
Guo,
The role of natural polymers in bone tissue engineering.
2021,
Pubmed
Gurzawska,
Pectin nanocoating of titanium implant surfaces - an experimental study in rabbits.
2017,
Pubmed
HAMBURGER,
A series of normal stages in the development of the chick embryo.
1951,
Pubmed
HARRIS,
The in vivo distribution of tetracyclines in canine bone.
1962,
Pubmed
Hong,
Calcitriol and enamel matrix derivative differentially regulated cemento-induction and mineralization in human periodontal ligament-derived cells.
2022,
Pubmed
Hong,
3D cellular visualization of intact mouse tooth using optical clearing without decalcification.
2019,
Pubmed
Jing,
Tissue Clearing and Its Application to Bone and Dental Tissues.
2019,
Pubmed
Jinno,
Osseointegration of surface-blasted implants made of titanium alloy and cobalt-chromium alloy in a rabbit intramedullary model.
1998,
Pubmed
Katow,
Structure and formation of ankylosis in Xenopus laevis.
1979,
Pubmed
,
Xenbase
Kim,
MicroCT for Scanning and Analysis of Mouse Bones.
2021,
Pubmed
Kobayashi,
Characteristics of mastication in the anodontic mouse.
2002,
Pubmed
Krivanek,
Dental cell type atlas reveals stem and differentiated cell types in mouse and human teeth.
2020,
Pubmed
Kubíková,
Comparison of ground sections, paraffin sections and micro-CT imaging of bone from the epiphysis of the porcine femur for morphometric evaluation.
2018,
Pubmed
Lavicky,
The Development of Dentin Microstructure Is Controlled by the Type of Adjacent Epithelium.
2022,
Pubmed
Lingner,
Osseointegrative effect of rhBMP-2 covalently bound on a titan-plasma-spray-surface after modification with chromosulfuric acid in a large animal bone gap-healing model with the Göttingen minipig.
2018,
Pubmed
Luo,
Investigation of Postnatal Craniofacial Bone Development with Tissue Clearing-Based Three-Dimensional Imaging.
2019,
Pubmed
Matsumoto,
Advanced CUBIC tissue clearing for whole-organ cell profiling.
2019,
Pubmed
Medina-Cuadra,
Xenopus, an emerging model for studying pathologies of the neural crest.
2021,
Pubmed
,
Xenbase
MILCH,
Fluorescence of tetracycline antibiotics in bone.
1958,
Pubmed
Newham,
Reptile-like physiology in Early Jurassic stem-mammals.
2020,
Pubmed
Nishikawa,
Bone repair analysis in a novel biodegradable hydroxyapatite/collagen composite implanted in bone.
2005,
Pubmed
Oralova,
Osteogenic Potential of the Transcription Factor c-MYB.
2017,
Pubmed
Paddock,
Validation of wall thickness estimates obtained with polarized light microscopy using multiple fluorochrome labels: correlation with erosion depth estimates obtained by lamellar counting.
1995,
Pubmed
Pauli,
Achondroplasia: a comprehensive clinical review.
2019,
Pubmed
Pautke,
Polychrome labeling of bone with seven different fluorochromes: enhancing fluorochrome discrimination by spectral image analysis.
2005,
Pubmed
Renier,
iDISCO: a simple, rapid method to immunolabel large tissue samples for volume imaging.
2014,
Pubmed
Rueckel,
Spatial resolution characterization of a X-ray microCT system.
2014,
Pubmed
Schmidt,
Onset and dynamics of osteosclerosis in mice induced by Reilly-Finkel-Biskis (RFB) murine leukemia virus. Increase in bone mass precedes lymphomagenesis.
1999,
Pubmed
Stuart,
Use of the fluorochromes xylenol orange, calcein green, and tetracycline to document bone deposition and remodeling in healing fractures in chickens.
1992,
Pubmed
Takumida,
Polychromatic labeling of otoconia for the investigation of calcium turnover.
1997,
Pubmed
Tomer,
Advanced CLARITY for rapid and high-resolution imaging of intact tissues.
2014,
Pubmed
van Gaalen,
Use of fluorochrome labels in in vivo bone tissue engineering research.
2010,
Pubmed
Wang,
Pharmaceutical electrospinning and 3D printing scaffold design for bone regeneration.
2021,
Pubmed
Wang,
Essential Roles of Bone Morphogenetic Protein-1 and Mammalian Tolloid-like 1 in Postnatal Root Dentin Formation.
2017,
Pubmed
Witzel,
The pay-off of hypsodonty - timing and dynamics of crown growth and wear in molars of Soay sheep.
2018,
Pubmed
Yi,
3-dimensional visualization of implant-tissue interface with the polyethylene glycol associated solvent system tissue clearing method.
2019,
Pubmed
Zhao,
Resonance in the mouse tibia as a predictor of frequencies and locations of loading-induced bone formation.
2014,
Pubmed