Please use this identifier to cite or link to this item: https://hdl.handle.net/11499/5016
Title: Long-term in vitro analysis of limb cartilage development: involvement of Wnt signaling
Authors: Daumer, K.M.
Tufan, Ahmet Çevik.
Tuan, R.S.
Keywords: ?-catenin
Chondrocyte hypertrophy and maturation
Chondrogenesis
Frizzled
N-cadherin
Wnt signaling
frizzled protein
protein wnt 7a
unclassified drug
Wnt1 protein
Wnt5a protein
alkaline phosphatase
beta catenin
cadherin
cell surface receptor
collagen type 10
cytoskeleton protein
signal peptide
transactivator protein
Wnt protein
animal cell
article
cartilage cell
cell differentiation
cell maturation
chondrogenesis
embryo
enzyme activity
in vitro study
limb
nonhuman
priority journal
protein expression
signal transduction
animal
cartilage
chick embryo
culture technique
cytology
embryo development
limb bud
metabolism
physiology
prenatal development
Vertebrata
Alkaline Phosphatase
Animals
beta Catenin
Cadherins
Cartilage
Cell Culture Techniques
Cell Differentiation
Chick Embryo
Collagen Type X
Cytoskeletal Proteins
Embryonic Development
Intercellular Signaling Peptides and Proteins
Limb Bud
Receptors, Cell Surface
Trans-Activators
Wnt Proteins
Abstract: Endochondral skeletal development involves the condensation of mesenchymal cells, their differentiation into chondrocytes, followed by chondrocyte maturation, hypertrophy, and matrix mineralization, and replacement by osteoblasts. The Wnt family of secreted proteins have been shown to play important roles in vertebrate limb formation. To examine the role(s) of Wnt members and their transmembrane-spanning receptor(s), Frizzled (fz), we retrovirally misexpressed Wnt-5a, Wnt-7a, chicken frizzled-1 (Chfz-1), and frizzled-7 (Chfz-7) in long-term (21 day) high density, micromass cultures of stage 23/24 chick embryonic limb mesenchyme. This culture system recapitulates in vitro the entire differentiation (days 1-10), growth (days 5-12), and maturation and hypertrophy (from day 12 on) program of cartilage development. Wnt-7a misexpression severely inhibited chondrogenesis from day 7 onward. Wnt-5a misexpression resulted in a poor hypertrophic phenotype by day 14. Chfz-7 misexpression caused a slight delay of chondrocyte maturation based on histology, whereas Chfz-1 misexpression did not affect the chondrogenic phenotype. Misexpression of all Wnt members decreased collagen type X expression and alkaline phosphatase activity at day 21. Our findings implicate functional role(s) for Wnt signaling throughout embryonic cartilage development, and show the utility of the long-term in vitro limb mesenchyme culture system for such studies.
URI: https://hdl.handle.net/11499/5016
https://doi.org/10.1002/jcb.20190
ISSN: 0730-2312
Appears in Collections:PubMed İndeksli Yayınlar Koleksiyonu / PubMed Indexed Publications Collection
Scopus İndeksli Yayınlar Koleksiyonu / Scopus Indexed Publications Collection
Tıp Fakültesi Koleksiyonu

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