Imaging of Skeletal Disorders Caused by Fibroblast Growth Factor Receptor Gene Mutations

Kiran M Sargar1, Achint K Singh1, Simon C Kao1

  • 1From the Mallinckrodt Institute of Radiology, Washington University School of Medicine, 510 S Kingshighway Blvd, Campus Box 8131, St Louis, MO 63110 (K.M.S.); Department of Radiology, University of Texas Health Science Center San Antonio, San Antonio, Tex (A.K.S.); and Department of Radiology, University of Iowa College of Medicine, Iowa City, Iowa (S.C.K.).

Insights

Fibroblast growth factor receptors (FGFRs) are vital for skeletal development. Mutations in FGFR1-3 cause skeletal dysplasias and craniosynostosis syndromes, often diagnosed using imaging and clinical findings.

Area of Science:

  • Genetics and Developmental Biology
  • Skeletal Biology
  • Medical Imaging

Background:

  • Fibroblast growth factors and their receptors (FGFRs) are critical for human axial and craniofacial skeletal development.
  • FGFR1, FGFR2, and FGFR3 are essential for both chondrogenesis and osteogenesis.
  • Mutations in FGFR genes lead to skeletal dysplasias and craniosynostosis syndromes, frequently seen in pediatric populations and posing diagnostic challenges.

Purpose of the Study:

  • To classify skeletal disorders based on affected FGFR type.
  • To highlight the role of imaging in diagnosing FGFR-related skeletal conditions.
  • To correlate specific clinical and imaging findings with distinct syndromes.

Main Methods:

  • Classification of skeletal disorders by affected FGFR type (1, 2, or 3).
  • Review of characteristic clinical features associated with specific FGFR mutations.
  • Emphasis on the diagnostic utility of medical imaging in identifying these conditions.

Main Results:

  • FGFR1 mutations are linked to Pfeiffer syndrome and osteoglophonic dysplasia.
  • FGFR2 mutations are associated with Crouzon syndrome, Apert syndrome, and Pfeiffer syndrome.
  • FGFR3 mutations are implicated in achondroplasia, hypochondroplasia, thanatophoric dysplasia, and Muenke syndrome, among others.

Conclusions:

  • Accurate diagnosis of FGFR-related skeletal disorders relies on understanding characteristic clinical and imaging findings.
  • Imaging plays a pivotal role in confirming diagnoses and guiding molecular genetic testing.
  • These gain-of-function mutations are typically inherited in an autosomal dominant manner.

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