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Application of Retinoic Acid to Obtain Osteocytes Cultures from Primary Mouse Osteoblasts
Published on: May 13, 2014
Retinoic acid disrupts osteogenesis in pre-osteoblasts by down-regulating WNT signaling
Laury A Roa1, Marjon Bloemen1, Carine E L Carels2
1Department of Orthodontics and Craniofacial Biology, Radboud University Medical Center, Philips van Leydenlaan 25, Nijmegen, the Netherlands.
Abstract:
The skull bones are formed by osteoblasts by intramembranous ossification. WNT signaling is a regulator of bone formation. Retinoic Acid (RA) act as a teratogen affecting craniofacial development. We evaluated the effects of RA on the differentiation and mineralization of MC-3T3 cells, and on the expression of WNT components. MC-3T3 were cultured with or without 0.5 μM RA in osteogenic medium and mineralization was assessed by alizarin red staining. The expression of osteogenic marker genes and WNT genes was evaluated at several time points up to 28 days. RA significantly inhibited MC-3T3 mineralization (p < 0.01), without affecting ALP activity or Alp gene expression. Both parameters gradually increased in time. During culture, RA stimulated Runx2 expression at 14 and 28 days compared to the respective controls (p < 0.05). Also, RA significantly reduced Sp7 expression at days 14 and 21 (p < 0.05). Simultaneously, RA significantly reduced the expression of the WNT genes cMyc, Lef1, Lrp5, Lrp6 and Wnt11 compared to the controls (p < 0.05). In contrast, RA increased the expression of the WNT inhibitors Dkk1 at day 21 and Dkk2 at days 14 and 21 (p < 0.01). Our data indicate that RA disrupts osteogenic differentiation and mineralization by inhibiting WNT signaling.
Insights
Retinoic Acid (RA) inhibits osteogenic differentiation and mineralization in MC-3T3 cells by disrupting WNT signaling. This teratogen affects craniofacial development by altering key gene expressions involved in bone formation.
Area of Science:
- Craniofacial Development
- Bone Biology
- Molecular Signaling
Background:
- Skull bone development relies on osteoblasts and intramembranous ossification.
- WNT signaling pathways are crucial regulators of bone formation.
- Retinoic Acid (RA) is a known teratogen impacting craniofacial development.
Purpose of the Study:
- To investigate the effects of RA on osteogenic differentiation and mineralization of MC-3T3 cells.
- To analyze the impact of RA on the expression of WNT signaling components during osteogenesis.
Main Methods:
- MC-3T3 cells were cultured with or without RA in osteogenic medium.
- Mineralization was assessed using alizarin red staining.
- Gene expression of osteogenic markers and WNT pathway components was evaluated over 28 days.
Main Results:
- RA significantly inhibited MC-3T3 cell mineralization (p < 0.01).
- RA altered the expression of key transcription factors, stimulating Runx2 and reducing Sp7.
- RA suppressed WNT pathway genes (cMyc, Lef1, Lrp5, Lrp6, Wnt11) and increased WNT inhibitors (Dkk1, Dkk2).
Conclusions:
- Retinoic Acid disrupts osteogenic differentiation and mineralization.
- RA exerts its teratogenic effects on craniofacial development by inhibiting WNT signaling pathways.
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