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Published on: June 2, 2022
[Familial Mediterranean fever among the autoimmune diseases]
1Service de Médicine interne 5, Hôpital Louis Mourier, AP-HP, Colombes. philippe.vinceneux@lmr.ap-hop-paris.fr
Abstract:
During the first attacks of familial Mediterranean fever, each of the disease symptoms can suggest a series of disorders. When the disease is older, the recurrence of symptoms may simulate some systemic diseases, but mainly suggests familial Mediterranean fever, one of a group of hereditary autoinflammatory diseases. Before the gene for familial Mediterranean fever was identified, various sets of criteria were used for diagnosis. The presence of MEFV mutations confirms the diagnosis, but the clinical criteria still determine who should undergo this genetic testing. The genotype-phenotype correlations add a prognostic dimension to the mutations identified. Genotyping can also lead to the diagnosis of the other autoinflammatory diseases, which constitute the basis of the differential diagnosis of familial Mediterranean fever. The hyperimmunoglobulinemia D syndrome (HIDS) is very similar to familial Mediterranean fever in its recessive transmission and abdominal and articular symptoms. It can be distinguished by the European origin of the patients, the presence of cervical lymph nodes and the increased IgD levels. Of the diseases with dominant transmission, the TNF receptor-associated periodic syndromes (TRAPS) are suggested by periorbital edema and migrating inflammatory cellulitis. Muckle and Wells syndrome is revealed by episodes of fever with urticaria and arthralgia, complicated by deafness and amyloidosis. Mutations in the same gene are responsible for two disorders, both appearing in childhood: familial cold urticaria syndrome (FCUS) and chronic infantile neurocutaneous articular syndrome (CINC). The pathogenesis of familial Mediterranean fever is still unclear. Pyrin/marenostrin, the protein produced by the MEFV gene, appears to hae a physiological antiinflammatory effect that inhibits proinflammatory cytokines. Mutation of the gene may eliminate this feedback mechanism and expose the patient to flares from any inflammatory stimulus, even minimal. Amyloid is produced by the serum amyloid A protein (SAA), and its occurrence is influenced by the type of MEFV mutation, but also the genotype of the gene producing SAA.
Insights
Familial Mediterranean fever (FMF) diagnosis relies on clinical criteria and MEFV gene mutations. Genetic testing aids in differentiating FMF from other autoinflammatory diseases like HIDS and TRAPS.
Area of Science:
- Genetics and immunology, focusing on autoinflammatory diseases.
- Molecular biology and clinical diagnostics of hereditary inflammatory disorders.
Context:
- Familial Mediterranean fever (FMF) symptoms can mimic other conditions, complicating early diagnosis.
- Diagnostic criteria for FMF have evolved with genetic advancements.
- Understanding FMF's differential diagnosis is crucial for accurate patient management.
Purpose:
- To clarify the diagnostic process for FMF, incorporating genetic testing.
- To highlight the importance of genotype-phenotype correlations in FMF prognosis.
- To differentiate FMF from other autoinflammatory diseases such as HIDS, TRAPS, Muckle and Wells syndrome, FCUS, and CINC.
Summary:
- MEFV gene mutations confirm FMF diagnosis, while clinical criteria guide genetic testing.
- Genotyping facilitates the diagnosis of other autoinflammatory diseases, aiding in FMF's differential diagnosis.
- The pathogenesis of FMF involves the MEFV gene product, pyrin/marenostrin, and its anti-inflammatory role, with SAA protein influencing amyloidosis.
Impact:
- Improved diagnostic accuracy for FMF and related autoinflammatory conditions.
- Enhanced prognostic capabilities through genotype-phenotype correlations.
- Potential for targeted therapies based on a deeper understanding of FMF pathogenesis.
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