Real-Life Data From the Largest Pediatric Familial Mediterranean Fever Cohort

Kübra Öztürk1, Taner Coşkuner2, Esra Baglan3

  • 1Istanbul Medeniyet University, Göztepe Prof. Dr. Süleyman Yalçın City Hospital, Istanbul, Turkey.

Frontiers in Pediatrics
|February 7, 2022
PubMed

Insights

Familial Mediterranean fever (FMF) in children is linked to MEFV gene mutations, especially in exon 10. Homozygous M694V mutations indicate earlier onset and more severe disease, though amyloidosis is rare.

Area of Science:

  • Pediatric Rheumatology
  • Genetics
  • Autoinflammatory Diseases

Background:

  • Familial Mediterranean fever (FMF) is the most common monogenic autoinflammatory disease.
  • FMF diagnosis is clinical, supported by MEFV gene mutation analysis, but phenotype-genotype correlations require clarification.
  • Understanding these correlations is crucial for managing FMF in children.

Purpose of the Study:

  • To investigate clinical findings, phenotype-genotype correlations, and treatment outcomes in a large pediatric FMF cohort.
  • To analyze MEFV gene variants in children diagnosed with FMF.
  • To establish clearer genotype-phenotype relationships in pediatric FMF.

Main Methods:

  • Retrospective review of medical charts from 3,454 children with FMF across eight pediatric rheumatology units.
  • Sequence variant analysis of exons 2, 3, 5, and 10 of the MEFV gene.
  • Exclusion of patients with no mutations or polymorphisms like R202Q.

Main Results:

  • The most common symptoms included abdominal pain (88.2%) and fever (86.7%).
  • Homozygous and heterozygous exon 10 mutations were most frequent (32.5% and 29.9%). Homozygous M694V was found in 28.1% of patients.
  • Children with homozygous/compound heterozygous exon 10 mutations showed earlier onset (4.6 years) and more frequent attacks (11.1/year).
  • Colchicine resistance occurred in 4.2%; M694V homozygosity was linked to amyloidosis in 9 patients.
  • E148Q was identified as a disease-causing mutation in this cohort.

Conclusions:

  • Exon 10 mutations, particularly homozygous M694V, are associated with earlier FMF onset, increased attack frequency, and higher rates of colchicine resistance in children.
  • While amyloidosis is rare in pediatric FMF, M694V homozygosity was noted in affected cases.
  • E148Q, often considered a polymorphism, functions as a disease-causing mutation in this cohort, highlighting the complexity of MEFV mutations.

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