The journey of MEFV heterozygous children: with or without colchicine
Mustafa Çakan1, Ayşenur Alkaya2, Lütfiye Koru3
1Department of Pediatric Rheumatology, Zeynep Kamil Women and Children's Diseases Training and Research Hospital, Dr Burhanettin Üstünel Cad. No 10, 34668, İstanbul, Türkiye. mustafacakan@hotmail.com.
Insights
A small percentage of familial Mediterranean fever (FMF) gene carriers develop FMF symptoms, often within 2-3 years. Routine family screening for MEFV gene carriers is not recommended unless amyloidosis or FMF-like symptoms are present.
Area of Science:
- Pediatric Rheumatology
- Clinical Genetics
- Genetic Carrier Screening
Background:
- Familial Mediterranean fever (FMF) is an autoinflammatory disorder.
- MEFV gene mutations are responsible for FMF.
- Identifying carriers and predicting disease progression is crucial.
Purpose of the Study:
- To determine the rate of colchicine use in pediatric MEFV gene carriers.
- To identify predictors for colchicine treatment necessity in this cohort.
- To evaluate the clinical significance of MEFV gene carriage.
Main Methods:
- Retrospective review of 869 children with MEFV gene carriers across 9 centers.
- Analysis of medical records with a median follow-up of 28 months.
- Statistical analysis to identify variables associated with colchicine use.
Main Results:
- Colchicine therapy was initiated in 13.9% of MEFV gene carriers.
- Predictors for colchicine use included family history of amyloidosis, MEFV gene analysis ordered by a pediatric rheumatologist, and FMF-like symptoms.
- Most carriers developing FMF symptoms did so within 2-3 years of follow-up.
Conclusions:
- A minority of MEFV gene carriers develop FMF symptoms requiring colchicine treatment.
- Targeted screening is advised for individuals with a family history of amyloidosis or those presenting with FMF-like symptoms.
- Routine MEFV gene carrier screening in families without specific risk factors is not supported by this data.
Abstract:
To investigate the rate of colchicine use in the longitudinal follow-up of familial Mediterranean fever (FMF) carriers and identify variables that could predict the necessity of colchicine treatment in this group. The study was conducted in 9 pediatric rheumatology centers. The files of children with MEFV gene carriers were retrospectively reviewed between February 2014 and May 2024. The study included 869 children with a median follow-up duration of 28 months (12-124). In most of the cases (n: 369; 43.5%), MEFV gene analysis was ordered by a pediatric rheumatologist, while in 228 children (26.2%), gene analysis was conducted at the request of a geneticist. The most common reason for ordering MEFV gene analysis was the presence of FMF-like symptoms (n: 349; 40.1%), followed by genetic screening due to a family history of FMF in relatives (n: 267; 30.7%). Colchicine therapy was initiated in 13.9% (n: 121) of the children. Variables that showed statistically significant differences in colchicine users included having a family history of amyloidosis, the MEFV gene ordered by a pediatric rheumatologist, and the presence of FMF-like symptoms. Conclusions: A small number of MEFV gene carriers develop FMF symptoms during the follow-up period, most commonly within 2-3 years. We do not recommend routine family screening for the MEFV gene after the diagnosis of an index patient unless there is a history of amyloidosis in the family or individuals having FMF-like symptoms.
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