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Disruption of Hedgehog Signaling by Vismodegib Leads to Cleft Palate and Delayed Osteogenesis in Experimental Design
Shixian Zhang1, Chengyong Wang, Changfu Xie
1*School and Hospital of Stomatology †Department of Oral and Maxillofacial Surgery, Union Hospital, Fujian Medical University ‡Fujian biological Materials Engineering and Technology Center of Stomatology, Fuzhou, China.
Abstract:
The function of hedgehog signaling has previously been shown to be crucial for craniofacial development. In this study, we treated C57/BL6J mice with the hedgehog pathway inhibitor vismodegib by oral gavage to establish a stable vismodegib-induced cleft palate model. At E10.5 and E12.5, mice in the experimental group were treated with 100 mg/kg of vismodegib, whereas mice in the control group were treated with solvent. The treated pregnant mice were sacrificed on E13.5, E14.5, E15.5, and E16.5. Palatal shelf growth was evaluated via histological and immunohistochemical analyses as well as palatal organ culture. Immunohistochemical staining was performed to examine the expression of osteogenic proteins in the palatal tissue. A high proportion of the mice administered 2 doses of 100 mg/kg of vismodegib displayed a cleft palate. Histologic examination revealed severely retarded palatal shelf growth and thickened epithelium in the experimental group. Vismodegib exposure induced complete cleft palate, which was attributed to a reduced cell proliferation rate in the palatal mesenchyme along the anterior-posterior axis. Moreover, this model also showed delayed ossification in the region of palatine bone with downregulation of Indian hedgehog (Ihh) protein. Our results suggest that vismodegib can be used to inhibit hedgehog signaling to affect palatal morphogenesis. Under treatment with this exogenous inhibitor, the cell proliferation rate of the palatal shelves and the osteogenic potential of the hard palate were decreased, which likely contributed to the complete cleft palate.
Insights
Hedgehog signaling inhibition with vismodegib in mice caused cleft palate by reducing cell proliferation and delaying bone ossification. This study establishes a new model for investigating craniofacial development defects.
Area of Science:
- Developmental biology
- Craniofacial development
- Pharmacology
Background:
- Hedgehog signaling is vital for craniofacial development.
- Cleft palate is a common birth defect with complex etiology.
- Understanding molecular pathways involved is key to prevention and treatment.
Purpose of the Study:
- To establish a mouse model of cleft palate using the hedgehog pathway inhibitor vismodegib.
- To investigate the effects of vismodegib on palatal shelf growth and ossification.
- To elucidate the role of hedgehog signaling in palatal morphogenesis.
Main Methods:
- C57/BL6J mice were treated with vismodegib or solvent during gestation.
- Palatal shelf growth was assessed using histological and immunohistochemical analyses.
- Organ cultures and osteogenic protein expression were evaluated.
Main Results:
- Vismodegib administration induced a high incidence of complete cleft palate.
- Retarded palatal shelf growth, thickened epithelium, and reduced mesenchymal cell proliferation were observed.
- Delayed ossification and downregulation of Indian hedgehog (Ihh) protein were noted.
Conclusions:
- Vismodegib effectively inhibits hedgehog signaling, creating a reliable cleft palate model.
- Inhibition disrupts palatal shelf growth and osteogenesis, leading to cleft palate.
- This model aids research into craniofacial development and therapeutic interventions.
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