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Published on: September 8, 2023
The clinical manifestations, molecular mechanisms and treatment of craniosynostosis
Eloise Stanton1,2, Mark Urata3, Jian-Fu Chen1
1Center for Craniofacial Molecular Biology, University of Southern California, Los Angeles, CA 90033, USA.
Insights
Craniosynostosis, a birth defect causing skull fusion, needs new treatments. Loss of mesenchymal stem cells in cranial sutures drives this condition, suggesting stem cell regeneration as a promising therapy.
Area of Science:
- Craniofacial development
- Regenerative medicine
- Congenital disorders
Background:
- Craniosynostosis is a congenital disorder involving premature fusion of cranial sutures.
- Severe cases lead to impairments in hearing, vision, intracranial pressure, and neurocognition.
- Current surgical treatments have limitations and risks like re-fusion.
Purpose of the Study:
- To provide a comprehensive review of craniosynostosis.
- To explore the pathogenesis, focusing on stem cell mechanisms.
- To evaluate emerging therapies, particularly stem cell-based regeneration.
Main Methods:
- Review of current literature on craniosynostosis.
- Analysis of animal model studies to understand pathogenesis.
- Evaluation of potential therapeutic strategies.
Main Results:
- Craniosynostosis pathogenesis involves genetic and environmental factors.
- Loss of postnatal suture mesenchymal stem cells is an emerging disease mechanism.
- Mesenchymal stem cell-based suture regeneration shows therapeutic potential.
Conclusions:
- There is a significant unmet need for novel craniosynostosis therapies.
- Understanding stem cell loss is key to craniosynostosis pathogenesis.
- Stem cell regeneration offers a promising future treatment avenue.
Abstract:
Craniosynostosis is a major congenital craniofacial disorder characterized by the premature fusion of cranial suture(s). Patients with severe craniosynostosis often have impairments in hearing, vision, intracranial pressure and/or neurocognitive functions. Craniosynostosis can result from mutations, chromosomal abnormalities or adverse environmental effects, and can occur in isolation or in association with numerous syndromes. To date, surgical correction remains the primary treatment for craniosynostosis, but it is associated with complications and with the potential for re-synostosis. There is, therefore, a strong unmet need for new therapies. Here, we provide a comprehensive review of our current understanding of craniosynostosis, including typical craniosynostosis types, their clinical manifestations, cranial suture development, and genetic and environmental causes. Based on studies from animal models, we present a framework for understanding the pathogenesis of craniosynostosis, with an emphasis on the loss of postnatal suture mesenchymal stem cells as an emerging disease-driving mechanism. We evaluate emerging treatment options and highlight the potential of mesenchymal stem cell-based suture regeneration as a therapeutic approach for craniosynostosis.
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