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Osteogenesis is the fundamental process by which bones are formed, maintained and regenerated. The osteoblasts deposit the bone mineralized matrix by secreting large amounts of extracellular proteins and by allowing the biochemical conditions for the nucleation of hydroxyapatite crystals. Normal bone formation requires a tight control of osteoblastic activity, and therefore, osteoblasts represent a major focus of interest in biomedical research. Several crucial features of osteogenesis can be readily recapitulated using murine, avian and fish primary and immortalized osteoblastic cultures. Here, we describe a novel and straightforward in vitro culture of primary osteoblasts from the amphibian Xenopus tropicalis, a major vertebrate model organism. X. tropicalis osteoblasts can readily be extracted from the frontoparietal bone of pre-metamorphosing tadpole skulls by series of gentle protease treatments. Such primary cultures efficiently proliferate and can conveniently be grown at room temperature, in the absence of CO2, on a variety of substrates. X. tropicalis primary osteoblasts express well-characterized genes known to be active during osteogenesis of teleost fish, chick, mouse and human. Upon differentiation, such cultures mineralize and activate DMP1, an osteocyte-specific gene. Importantly, X. tropicalis primary osteoblasts can be efficiently transfected and respond to the forced activation of the bone morphogenetic protein pathway by increasing their nuclear levels of phospho-Smad. Therefore, this novel primary culture is amenable to experimental manipulations and represents a valuable tool for improving our understanding of the complex network of molecular interactions that govern vertebrate bone formation.
Abzhanov,
Regulation of skeletogenic differentiation in cranial dermal bone.
2007, Pubmed
Abzhanov,
Regulation of skeletogenic differentiation in cranial dermal bone.
2007,
Pubmed
Albertson,
Molecular pedomorphism underlies craniofacial skeletal evolution in Antarctic notothenioid fishes.
2010,
Pubmed
Aldea,
Evolution of the vertebrate bone matrix: an expression analysis of the network forming collagen paralogues in amphibian osteoblasts.
2013,
Pubmed
,
Xenbase
Amin,
Proteomic profiling of cardiac tissue by isolation of nuclei tagged in specific cell types (INTACT).
2014,
Pubmed
,
Xenbase
Baron,
WNT signaling in bone homeostasis and disease: from human mutations to treatments.
2013,
Pubmed
Bar-Shavit,
The osteoclast: a multinucleated, hematopoietic-origin, bone-resorbing osteoimmune cell.
2007,
Pubmed
Bedell,
In vivo genome editing using a high-efficiency TALEN system.
2012,
Pubmed
Bellido,
Osteocyte-driven bone remodeling.
2014,
Pubmed
Blitz,
Germ layers to organs: using Xenopus to study "later" development.
2006,
Pubmed
,
Xenbase
Blitz,
Biallelic genome modification in F(0) Xenopus tropicalis embryos using the CRISPR/Cas system.
2013,
Pubmed
,
Xenbase
Chan,
Conservation of core gene expression in vertebrate tissues.
2009,
Pubmed
,
Xenbase
Chesneau,
Transgenesis procedures in Xenopus.
2008,
Pubmed
,
Xenbase
Close,
Recommendations for euthanasia of experimental animals: Part 1. DGXI of the European Commission.
1996,
Pubmed
Dutton,
Use of adenovirus for ectopic gene expression in Xenopus.
2009,
Pubmed
,
Xenbase
Eames,
Evolution of the osteoblast: skeletogenesis in gar and zebrafish.
2012,
Pubmed
Espinoza,
Two families of Xenopus tropicalis skeletal genes display well-conserved expression patterns with mammals in spite of their highly divergent regulatory regions.
2010,
Pubmed
,
Xenbase
Ferron,
Osteocalcin differentially regulates beta cell and adipocyte gene expression and affects the development of metabolic diseases in wild-type mice.
2008,
Pubmed
Flores,
A hierarchy of Runx transcription factors modulate the onset of chondrogenesis in craniofacial endochondral bones in zebrafish.
2006,
Pubmed
Franceschi,
Effects of ascorbic acid on collagen matrix formation and osteoblast differentiation in murine MC3T3-E1 cells.
1994,
Pubmed
Gavaia,
Osteocalcin and matrix Gla protein in zebrafish (Danio rerio) and Senegal sole (Solea senegalensis): comparative gene and protein expression during larval development through adulthood.
2006,
Pubmed
Geurtzen,
Mature osteoblasts dedifferentiate in response to traumatic bone injury in the zebrafish fin and skull.
2014,
Pubmed
Harland,
Xenopus research: metamorphosed by genetics and genomics.
2011,
Pubmed
,
Xenbase
Hellsten,
The genome of the Western clawed frog Xenopus tropicalis.
2010,
Pubmed
,
Xenbase
Hilton,
Tamoxifen-inducible gene deletion reveals a distinct cell type associated with trabecular bone, and direct regulation of PTHrP expression and chondrocyte morphology by Ihh in growth region cartilage.
2007,
Pubmed
Hunzelmann,
BM-40 (osteonectin, SPARC) is expressed both in the epidermal and in the dermal compartment of adult human skin.
1998,
Pubmed
Huycke,
Hedgehog-dependent proliferation drives modular growth during morphogenesis of a dermal bone.
2012,
Pubmed
Igwe,
Neuropeptide Y is expressed by osteocytes and can inhibit osteoblastic activity.
2009,
Pubmed
Kalajzic,
Expression profile of osteoblast lineage at defined stages of differentiation.
2005,
Pubmed
Karsenty,
The contribution of bone to whole-organism physiology.
2012,
Pubmed
Kramer,
Osteocyte Wnt/beta-catenin signaling is required for normal bone homeostasis.
2010,
Pubmed
Le Jeune,
Identification of four alternatively spliced transcripts of the Ucma/GRP gene, encoding a new Gla-containing protein.
2010,
Pubmed
Li,
Expression and function of Dlx genes in the osteoblast lineage.
2008,
Pubmed
Li,
Tracking gene expression during zebrafish osteoblast differentiation.
2009,
Pubmed
Lieschke,
Animal models of human disease: zebrafish swim into view.
2007,
Pubmed
Long,
Building strong bones: molecular regulation of the osteoblast lineage.
2011,
Pubmed
Loots,
Genomic deletion of a long-range bone enhancer misregulates sclerostin in Van Buchem disease.
2005,
Pubmed
Makareeva,
Chaperoning osteogenesis: new protein-folding disease paradigms.
2011,
Pubmed
Marcellini,
Control of osteogenesis by the canonical Wnt and BMP pathways in vivo: cooperation and antagonism between the canonical Wnt and BMP pathways as cells differentiate from osteochondroprogenitors to osteoblasts and osteocytes.
2012,
Pubmed
Matheny,
Disease mutations in RUNX1 and RUNX2 create nonfunctional, dominant-negative, or hypomorphic alleles.
2007,
Pubmed
Miraoui,
Pivotal role of Twist in skeletal biology and pathology.
2010,
Pubmed
Miura,
Skeletogenesis in Xenopus tropicalis: characteristic bone development in an anuran amphibian.
2008,
Pubmed
,
Xenbase
Moriishi,
Expression profile of Xenopus banded hedgehog, a homolog of mouse Indian hedgehog, is related to the late development of endochondral ossification in Xenopus laevis.
2005,
Pubmed
,
Xenbase
Nakayama,
Simple and efficient CRISPR/Cas9-mediated targeted mutagenesis in Xenopus tropicalis.
2013,
Pubmed
,
Xenbase
Neacsu,
Ucmaa (Grp-2) is required for zebrafish skeletal development. Evidence for a functional role of its glutamate γ-carboxylation.
2011,
Pubmed
Noble,
The osteocyte lineage.
2008,
Pubmed
Ogino,
Resources and transgenesis techniques for functional genomics in Xenopus.
2009,
Pubmed
,
Xenbase
Ramlochansingh,
Efficacy of tricaine methanesulfonate (MS-222) as an anesthetic agent for blocking sensory-motor responses in Xenopus laevis tadpoles.
2014,
Pubmed
,
Xenbase
Rankin,
Improved cre reporter transgenic Xenopus.
2009,
Pubmed
,
Xenbase
Renn,
Dynamic expression of sparc precedes formation of skeletal elements in the Medaka (Oryzias latipes).
2006,
Pubmed
Rhee,
Parathyroid hormone receptor signaling in osteocytes increases the expression of fibroblast growth factor-23 in vitro and in vivo.
2011,
Pubmed
Schaffler,
Osteocytes: master orchestrators of bone.
2014,
Pubmed
Sinzelle,
Characterization of a novel Xenopus tropicalis cell line as a model for in vitro studies.
2012,
Pubmed
,
Xenbase
Strober,
Trypan blue exclusion test of cell viability.
2001,
Pubmed
Ting,
EphA4 as an effector of Twist1 in the guidance of osteogenic precursor cells during calvarial bone growth and in craniosynostosis.
2009,
Pubmed
Tran,
Role of canonical Wnt signaling/ß-catenin via Dermo1 in cranial dermal cell development.
2010,
Pubmed
Viegas,
Gla-rich protein (GRP), a new vitamin K-dependent protein identified from sturgeon cartilage and highly conserved in vertebrates.
2008,
Pubmed
Vijayakumar,
Development of an in vitro cell system from zebrafish suitable to study bone cell differentiation and extracellular matrix mineralization.
2013,
Pubmed
Wang,
Isolation and characterization of MC3T3-E1 preosteoblast subclones with distinct in vitro and in vivo differentiation/mineralization potential.
1999,
Pubmed
Wheeler,
Simple vertebrate models for chemical genetics and drug discovery screens: lessons from zebrafish and Xenopus.
2009,
Pubmed
,
Xenbase
Wheeler,
Inducible gene expression in transgenic Xenopus embryos.
2000,
Pubmed
,
Xenbase
Yan,
Axin2 controls bone remodeling through the beta-catenin-BMP signaling pathway in adult mice.
2009,
Pubmed
Yang,
Twist controls skeletal development and dorsoventral patterning by regulating runx2 in zebrafish.
2011,
Pubmed
Yokoyama,
Different requirement for Wnt/β-catenin signaling in limb regeneration of larval and adult Xenopus.
2011,
Pubmed
,
Xenbase
Yonekura,
Identification, characterization, and expression of dentin matrix protein 1 gene in Xenopus laevis.
2013,
Pubmed
,
Xenbase
Yoshiko,
A subset of osteoblasts expressing high endogenous levels of PPARgamma switches fate to adipocytes in the rat calvaria cell culture model.
2010,
Pubmed