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{{Infobox medical condition | {{SI}} | ||
| name | {{Infobox medical condition | ||
| name = Familial Mediterranean fever | |||
| image | | image = [[File:autorecessive.svg|200px]] | ||
| caption | | caption = Familial Mediterranean fever is inherited in an [[autosomal recessive]] pattern. | ||
| field = [[Rheumatology]] | |||
| field | | symptoms = [[Recurrent fever]], [[abdominal pain]], [[chest pain]], [[arthritis]], [[rash]] | ||
| symptoms | | complications = [[Amyloidosis]], [[renal failure]] | ||
| complications = [[Amyloidosis]], [[ | | onset = Childhood | ||
| onset | | duration = Lifelong | ||
| duration | | types = Type 1, Type 2 | ||
| types | | causes = Mutations in the [[MEFV gene]] | ||
| causes | | risks = [[Ethnic groups]] such as [[Armenians]], [[Turks]], [[Arabs]], [[Jews]] | ||
| risks | | diagnosis = [[Genetic testing]], [[clinical evaluation]] | ||
| diagnosis | | differential = [[Systemic lupus erythematosus]], [[Crohn's disease]], [[Rheumatoid arthritis]] | ||
| differential | | treatment = [[Colchicine]], [[NSAIDs]], [[biologic therapy]] | ||
| medication = [[Colchicine]] | |||
| treatment | | prognosis = Good with treatment | ||
| frequency = 1 in 200 to 1 in 1,000 in high-risk populations | |||
| prognosis | |||
| frequency | |||
}} | }} | ||
[[File:Erysipeloid skin rashes in Familial Mediterranean Fever.jpg|thumb|600px|Erysipeloid skin rashes in Familial Mediterranean Fever]] | [[File:Erysipeloid skin rashes in Familial Mediterranean Fever.jpg|left|thumb|600px|Erysipeloid skin rashes in Familial Mediterranean Fever]] | ||
'''Familial Mediterranean fever''' ('''FMF''') is a [[genetic disorder|hereditary]] [[inflammation|inflammatory]] disorder. FMF is an autoinflammatory disease caused by mutations in [[MEFV|Mediterranean fever]] gene, which encodes a 781–amino acid protein called [[pyrin]]. While all ethnic groups are susceptible to FMF, it usually occurs in people of [[Mediterranean Sea|Mediterranean]] origin‚Äîincluding [[Sephardic Jews]], [[Mizrahi Jews]], [[Ashkenazi Jews]], [[Armenians]], [[Azerbaijanis]], [[Arab]]s, [[Kurds]], [[Greeks]], [[Turkish people|Turks]], and [[Italians]]. | |||
'''Familial Mediterranean fever''' ('''FMF''') is a [[genetic disorder|hereditary]] [[inflammation|inflammatory]] disorder. FMF is an autoinflammatory disease caused by mutations in [[MEFV|Mediterranean fever]] gene, which encodes a 781–amino acid protein called [[pyrin]]. While all ethnic groups are susceptible to FMF, it usually occurs in people of [[Mediterranean Sea|Mediterranean]] | |||
The disorder has been given various names, including familial paroxysmal polyserositis, periodic [[peritonitis]], recurrent polyserositis, benign paroxysmal peritonitis, periodic disease or periodic fever, Reimann periodic disease or Reimann syndrome, Siegal-Cattan-Mamou disease, and Wolff periodic disease.Note that "periodic fever" can also refer to any of the [[periodic fever syndrome]]s. | The disorder has been given various names, including familial paroxysmal polyserositis, periodic [[peritonitis]], recurrent polyserositis, benign paroxysmal peritonitis, periodic disease or periodic fever, Reimann periodic disease or Reimann syndrome, Siegal-Cattan-Mamou disease, and Wolff periodic disease.Note that "periodic fever" can also refer to any of the [[periodic fever syndrome]]s. | ||
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==Signs and symptoms== | ==Signs and symptoms== | ||
===Attacks=== | ===Attacks=== | ||
There are seven types of attacks. Ninety percent of all patients have their first attack before they are 18 years old. All develop over 2–4 hours and last anywhere from 6 hours to 4 days. Most attacks involve [[fever]]. | There are seven types of attacks. Ninety percent of all patients have their first attack before they are 18 years old. All develop over 2–4 hours and last anywhere from 6 hours to 4 days. Most attacks involve [[fever]]. | ||
#Abdominal attacks, featuring [[abdominal pain]], affect the whole abdomen with all signs of [[peritonitis]] (inflammation of abdominal lining), and acute abdominal pain like [[appendicitis]]. They occur in 95% of all patients and may lead to unnecessary [[laparotomy]]. Incomplete attacks, with local tenderness and normal blood tests, have been reported. | #Abdominal attacks, featuring [[abdominal pain]], affect the whole abdomen with all signs of [[peritonitis]] (inflammation of abdominal lining), and acute abdominal pain like [[appendicitis]]. They occur in 95% of all patients and may lead to unnecessary [[laparotomy]]. Incomplete attacks, with local tenderness and normal blood tests, have been reported. | ||
#Joint attacks mainly occur in large joints, especially in the legs. Usually, only one joint is affected. 75% of all FMF patients experience joint attacks. | #Joint attacks mainly occur in large joints, especially in the legs. Usually, only one joint is affected. 75% of all FMF patients experience joint attacks. | ||
| Line 50: | Line 41: | ||
#[[Myalgia]] (rare in isolation) | #[[Myalgia]] (rare in isolation) | ||
#[[Erysipelas|Erysipeloid]] (a skin reaction on the legs that can mimic [[cellulitis]], rare in isolation) | #[[Erysipelas|Erysipeloid]] (a skin reaction on the legs that can mimic [[cellulitis]], rare in isolation) | ||
#Fever without any of the other symptoms listed above (25%). Fever may be the only symptom during the childhood. It may vary from a mild fever to 38–40 | #Fever without any of the other symptoms listed above (25%). Fever may be the only symptom during the childhood. It may vary from a mild fever to 38–40 ¬∞C. It nearly always accompanies to episodes. | ||
===Complications=== | ===Complications=== | ||
[[AA-amyloidosis]] with [[kidney failure]] is a complication and may develop without overt crises. AA amyloid protein is produced in very large quantities during attacks, and at a low rate between them, and accumulates mainly in the [[kidney]], as well as the [[heart]], [[spleen]], [[Human gastrointestinal tract|gastrointestinal tract]], and [[thyroid]]. | [[AA-amyloidosis]] with [[kidney failure]] is a complication and may develop without overt crises. AA amyloid protein is produced in very large quantities during attacks, and at a low rate between them, and accumulates mainly in the [[kidney]], as well as the [[heart]], [[spleen]], [[Human gastrointestinal tract|gastrointestinal tract]], and [[thyroid]]. | ||
There appears to be an increase in the risk for developing particular [[vasculitis]]-related diseases (e.g. [[Henoch–Schönlein purpura]]), [[spondylarthropathy]], prolonged [[arthritis]] of certain joints and protracted myalgia. | There appears to be an increase in the risk for developing particular [[vasculitis]]-related diseases (e.g. [[Henoch–Schönlein purpura]]), [[spondylarthropathy]], prolonged [[arthritis]] of certain joints and protracted myalgia. | ||
==Genetics== | ==Genetics== | ||
The ''[[MEFV]]'' gene is located on the short arm of [[chromosome 16 (human)|chromosome 16]] (16p13). Many different mutations of the ''[[MEFV]]'' gene can cause the disorder. Having one mutation is unlikely to cause the condition. Having two mutations either a copy from both parents, or two different mutations, one from each parent is the threshold for a genetic diagnosis of FMF. However, most individuals who comply with the genetic diagnosis of FMF remain asymptomatic or undiagnosed. Whether this is due to modifier genes or environmental factors remains to be established. | The ''[[MEFV]]'' gene is located on the short arm of [[chromosome 16 (human)|chromosome 16]] (16p13). Many different mutations of the ''[[MEFV]]'' gene can cause the disorder. Having one mutation is unlikely to cause the condition. Having two mutations either a copy from both parents, or two different mutations, one from each parent is the threshold for a genetic diagnosis of FMF. However, most individuals who comply with the genetic diagnosis of FMF remain asymptomatic or undiagnosed. Whether this is due to modifier genes or environmental factors remains to be established. | ||
==Pathophysiology== | ==Pathophysiology== | ||
Virtually all cases are due to a mutation in the ''Mediterranean Fever (MEFV)'' gene on the [[Chromosome 16 (human)|sixteenth chromosome]], which codes for a protein called ''pyrin'' or ''marenostrin''. Various mutations of this gene lead to FMF, although some mutations cause a more severe picture than others. Mutations occur mainly in [[exon]]s 2, 3, 5 and 10. | Virtually all cases are due to a mutation in the ''Mediterranean Fever (MEFV)'' gene on the [[Chromosome 16 (human)|sixteenth chromosome]], which codes for a protein called ''pyrin'' or ''marenostrin''. Various mutations of this gene lead to FMF, although some mutations cause a more severe picture than others. Mutations occur mainly in [[exon]]s 2, 3, 5 and 10. | ||
The function of pyrin has not been completely elucidated, but in short, it is a protein that binds to the adaptor ASC and the pro form of the enzyme caspase-1 to generate multiprotein complexes called inflammasomes in response to certain infections. In healthy individuals, pyrin-mediated inflammasome assembly (which leads to the caspase 1) dependent processing and secretion of the pro-inflammatory cytokines (such as interleukin-18 (IL-18) and IL-1β) is a response to enterotoxins from certain bacteria.The gain-of-function mutations in the MEFV gene render Pyrin hyperactive, and subsequently, the formation of the inflammasomes becomes more frequent.It is not conclusively known what exactly sets off the attacks, and why overproduction of IL-1 would lead to particular symptoms in particular organs (e.g. joints or the peritoneal cavity). | The function of pyrin has not been completely elucidated, but in short, it is a protein that binds to the adaptor ASC and the pro form of the enzyme caspase-1 to generate multiprotein complexes called inflammasomes in response to certain infections. In healthy individuals, pyrin-mediated inflammasome assembly (which leads to the caspase 1) dependent processing and secretion of the pro-inflammatory cytokines (such as interleukin-18 (IL-18) and IL-1β) is a response to enterotoxins from certain bacteria.The gain-of-function mutations in the MEFV gene render Pyrin hyperactive, and subsequently, the formation of the inflammasomes becomes more frequent.It is not conclusively known what exactly sets off the attacks, and why overproduction of IL-1 would lead to particular symptoms in particular organs (e.g. joints or the peritoneal cavity). | ||
==Diagnosis== | ==Diagnosis== | ||
The diagnosis is clinically made on the basis of the history of typical attacks, especially in patients from the ethnic groups in which FMF is more highly prevalent. An [[acute phase response]] is present during attacks, with high [[C-reactive protein]] levels, an elevated [[white blood cell]] count and other markers of [[inflammation]]. In patients with a long history of attacks, monitoring the [[kidney function]] is of importance in predicting [[chronic kidney failure]]. | The diagnosis is clinically made on the basis of the history of typical attacks, especially in patients from the ethnic groups in which FMF is more highly prevalent. An [[acute phase response]] is present during attacks, with high [[C-reactive protein]] levels, an elevated [[white blood cell]] count and other markers of [[inflammation]]. In patients with a long history of attacks, monitoring the [[kidney function]] is of importance in predicting [[chronic kidney failure]]. | ||
A genetic test is also available to detect mutations in the ''MEFV'' gene. Sequencing of exons 2, 3, 5, and 10 of this gene detects an estimated 97% of all known mutations. | A genetic test is also available to detect mutations in the ''MEFV'' gene. Sequencing of exons 2, 3, 5, and 10 of this gene detects an estimated 97% of all known mutations. | ||
A specific and highly sensitive test for FMF is the "[[metaraminol]] provocative test (MPT)", whereby a single 10 mg infusion of metaraminol is administered to the patient. A positive diagnosis is made if the patient presents with a typical, albeit milder, FMF attack within 48 hours. As MPT is more specific than sensitive, it does not identify all cases of FMF, although a positive MPT can be very useful. | A specific and highly sensitive test for FMF is the "[[metaraminol]] provocative test (MPT)", whereby a single 10 mg infusion of metaraminol is administered to the patient. A positive diagnosis is made if the patient presents with a typical, albeit milder, FMF attack within 48 hours. As MPT is more specific than sensitive, it does not identify all cases of FMF, although a positive MPT can be very useful. | ||
==Treatment== | ==Treatment== | ||
Attacks are self-limiting, and require [[analgesia]] and [[non-steroidal anti-inflammatory drug|NSAID]]s (such as [[diclofenac]]). [[Colchicine]], a drug otherwise mainly used in [[gout]], decreases attack frequency in FMF patients. The exact way in which colchicine suppresses attacks is unclear. While this agent is not without side effects (such as [[abdominal pain]] and [[myalgia|muscle pains]]), it may markedly improve quality of life in patients. The dosage is typically 1–2 mg a day. Development of amyloidosis is delayed with colchicine treatment. [[Interferon]] is being studied as a therapeutic modality.Some advise discontinuation of colchicine before and during pregnancy, but the data are inconsistent, and others feel it is safe to take colchicine during pregnancy. | Attacks are self-limiting, and require [[analgesia]] and [[non-steroidal anti-inflammatory drug|NSAID]]s (such as [[diclofenac]]). [[Colchicine]], a drug otherwise mainly used in [[gout]], decreases attack frequency in FMF patients. The exact way in which colchicine suppresses attacks is unclear. While this agent is not without side effects (such as [[abdominal pain]] and [[myalgia|muscle pains]]), it may markedly improve quality of life in patients. The dosage is typically 1–2 mg a day. Development of amyloidosis is delayed with colchicine treatment. [[Interferon]] is being studied as a therapeutic modality.Some advise discontinuation of colchicine before and during pregnancy, but the data are inconsistent, and others feel it is safe to take colchicine during pregnancy. | ||
Approximately 5–10% of FMF cases are resistant to colchicine therapy alone. In these cases, adding [[anakinra]] to the daily colchicine regimen has been successful.[[Canakinumab]], an anti-interleukin-1-beta [[monoclonal antibody]], has likewise been shown to be effective in controlling and preventing flare-ups in patients with colchicine-resistant FMF and in two additional autoinflammatory recurrent fever syndromes: mevolonate kinase deficiency (hyper-[[immunoglobulin D]] syndrome, or [[Hyperimmunoglobulinemia D with recurrent fever|HIDS]]) and tumor necrosis factor receptor-associated periodic syndrome ([[TNF receptor associated periodic syndrome|TRAPS]]). | Approximately 5–10% of FMF cases are resistant to colchicine therapy alone. In these cases, adding [[anakinra]] to the daily colchicine regimen has been successful.[[Canakinumab]], an anti-interleukin-1-beta [[monoclonal antibody]], has likewise been shown to be effective in controlling and preventing flare-ups in patients with colchicine-resistant FMF and in two additional autoinflammatory recurrent fever syndromes: mevolonate kinase deficiency (hyper-[[immunoglobulin D]] syndrome, or [[Hyperimmunoglobulinemia D with recurrent fever|HIDS]]) and tumor necrosis factor receptor-associated periodic syndrome ([[TNF receptor associated periodic syndrome|TRAPS]]). | ||
==Epidemiology== | ==Epidemiology== | ||
FMF affects groups of people originating from around the Mediterranean Sea (hence its name). It is prominently present in the [[Armenians]], [[Sephardic Jews|Sephardic]] Jews (and, to a much lesser extent, [[Ashkenazi]] Jews), [[Cyprus|Cypriots]], Turks and Arabs. | FMF affects groups of people originating from around the Mediterranean Sea (hence its name). It is prominently present in the [[Armenians]], [[Sephardic Jews|Sephardic]] Jews (and, to a much lesser extent, [[Ashkenazi]] Jews), [[Cyprus|Cypriots]], Turks and Arabs. | ||
==See also== | ==See also== | ||
*[[List of cutaneous conditions]] | *[[List of cutaneous conditions]] | ||
Latest revision as of 16:07, 6 April 2025

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Obesity, Sleep & Internal medicine
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| Familial Mediterranean fever | |
|---|---|
| File:Autorecessive.svg | |
| Synonyms | N/A |
| Pronounce | N/A |
| Specialty | N/A |
| Symptoms | Recurrent fever, abdominal pain, chest pain, arthritis, rash |
| Complications | Amyloidosis, renal failure |
| Onset | Childhood |
| Duration | Lifelong |
| Types | Type 1, Type 2 |
| Causes | Mutations in the MEFV gene |
| Risks | Ethnic groups such as Armenians, Turks, Arabs, Jews |
| Diagnosis | Genetic testing, clinical evaluation |
| Differential diagnosis | Systemic lupus erythematosus, Crohn's disease, Rheumatoid arthritis |
| Prevention | N/A |
| Treatment | Colchicine, NSAIDs, biologic therapy |
| Medication | Colchicine |
| Prognosis | Good with treatment |
| Frequency | 1 in 200 to 1 in 1,000 in high-risk populations |
| Deaths | N/A |
Familial Mediterranean fever (FMF) is a hereditary inflammatory disorder. FMF is an autoinflammatory disease caused by mutations in Mediterranean fever gene, which encodes a 781–amino acid protein called pyrin. While all ethnic groups are susceptible to FMF, it usually occurs in people of Mediterranean origin‚Äîincluding Sephardic Jews, Mizrahi Jews, Ashkenazi Jews, Armenians, Azerbaijanis, Arabs, Kurds, Greeks, Turks, and Italians. The disorder has been given various names, including familial paroxysmal polyserositis, periodic peritonitis, recurrent polyserositis, benign paroxysmal peritonitis, periodic disease or periodic fever, Reimann periodic disease or Reimann syndrome, Siegal-Cattan-Mamou disease, and Wolff periodic disease.Note that "periodic fever" can also refer to any of the periodic fever syndromes.
Signs and symptoms[edit]
Attacks[edit]
There are seven types of attacks. Ninety percent of all patients have their first attack before they are 18 years old. All develop over 2–4 hours and last anywhere from 6 hours to 4 days. Most attacks involve fever.
- Abdominal attacks, featuring abdominal pain, affect the whole abdomen with all signs of peritonitis (inflammation of abdominal lining), and acute abdominal pain like appendicitis. They occur in 95% of all patients and may lead to unnecessary laparotomy. Incomplete attacks, with local tenderness and normal blood tests, have been reported.
- Joint attacks mainly occur in large joints, especially in the legs. Usually, only one joint is affected. 75% of all FMF patients experience joint attacks.
- Chest attacks include pleuritis (inflammation of the pleura) and pericarditis (inflammation of the pericardium). Pleuritis occurs in 40% of patients and makes it difficult to breathe or lie flat, but pericarditis is rare.
- Scrotal attacks due to inflammation of the tunica vaginalis are somewhat rare but may be mistaken for testicular torsion.
- Myalgia (rare in isolation)
- Erysipeloid (a skin reaction on the legs that can mimic cellulitis, rare in isolation)
- Fever without any of the other symptoms listed above (25%). Fever may be the only symptom during the childhood. It may vary from a mild fever to 38–40 ¬∞C. It nearly always accompanies to episodes.
Complications[edit]
AA-amyloidosis with kidney failure is a complication and may develop without overt crises. AA amyloid protein is produced in very large quantities during attacks, and at a low rate between them, and accumulates mainly in the kidney, as well as the heart, spleen, gastrointestinal tract, and thyroid. There appears to be an increase in the risk for developing particular vasculitis-related diseases (e.g. Henoch–Schönlein purpura), spondylarthropathy, prolonged arthritis of certain joints and protracted myalgia.
Genetics[edit]
The MEFV gene is located on the short arm of chromosome 16 (16p13). Many different mutations of the MEFV gene can cause the disorder. Having one mutation is unlikely to cause the condition. Having two mutations either a copy from both parents, or two different mutations, one from each parent is the threshold for a genetic diagnosis of FMF. However, most individuals who comply with the genetic diagnosis of FMF remain asymptomatic or undiagnosed. Whether this is due to modifier genes or environmental factors remains to be established.
Pathophysiology[edit]
Virtually all cases are due to a mutation in the Mediterranean Fever (MEFV) gene on the sixteenth chromosome, which codes for a protein called pyrin or marenostrin. Various mutations of this gene lead to FMF, although some mutations cause a more severe picture than others. Mutations occur mainly in exons 2, 3, 5 and 10. The function of pyrin has not been completely elucidated, but in short, it is a protein that binds to the adaptor ASC and the pro form of the enzyme caspase-1 to generate multiprotein complexes called inflammasomes in response to certain infections. In healthy individuals, pyrin-mediated inflammasome assembly (which leads to the caspase 1) dependent processing and secretion of the pro-inflammatory cytokines (such as interleukin-18 (IL-18) and IL-1β) is a response to enterotoxins from certain bacteria.The gain-of-function mutations in the MEFV gene render Pyrin hyperactive, and subsequently, the formation of the inflammasomes becomes more frequent.It is not conclusively known what exactly sets off the attacks, and why overproduction of IL-1 would lead to particular symptoms in particular organs (e.g. joints or the peritoneal cavity).
Diagnosis[edit]
The diagnosis is clinically made on the basis of the history of typical attacks, especially in patients from the ethnic groups in which FMF is more highly prevalent. An acute phase response is present during attacks, with high C-reactive protein levels, an elevated white blood cell count and other markers of inflammation. In patients with a long history of attacks, monitoring the kidney function is of importance in predicting chronic kidney failure. A genetic test is also available to detect mutations in the MEFV gene. Sequencing of exons 2, 3, 5, and 10 of this gene detects an estimated 97% of all known mutations. A specific and highly sensitive test for FMF is the "metaraminol provocative test (MPT)", whereby a single 10 mg infusion of metaraminol is administered to the patient. A positive diagnosis is made if the patient presents with a typical, albeit milder, FMF attack within 48 hours. As MPT is more specific than sensitive, it does not identify all cases of FMF, although a positive MPT can be very useful.
Treatment[edit]
Attacks are self-limiting, and require analgesia and NSAIDs (such as diclofenac). Colchicine, a drug otherwise mainly used in gout, decreases attack frequency in FMF patients. The exact way in which colchicine suppresses attacks is unclear. While this agent is not without side effects (such as abdominal pain and muscle pains), it may markedly improve quality of life in patients. The dosage is typically 1–2 mg a day. Development of amyloidosis is delayed with colchicine treatment. Interferon is being studied as a therapeutic modality.Some advise discontinuation of colchicine before and during pregnancy, but the data are inconsistent, and others feel it is safe to take colchicine during pregnancy. Approximately 5–10% of FMF cases are resistant to colchicine therapy alone. In these cases, adding anakinra to the daily colchicine regimen has been successful.Canakinumab, an anti-interleukin-1-beta monoclonal antibody, has likewise been shown to be effective in controlling and preventing flare-ups in patients with colchicine-resistant FMF and in two additional autoinflammatory recurrent fever syndromes: mevolonate kinase deficiency (hyper-immunoglobulin D syndrome, or HIDS) and tumor necrosis factor receptor-associated periodic syndrome (TRAPS).
Epidemiology[edit]
FMF affects groups of people originating from around the Mediterranean Sea (hence its name). It is prominently present in the Armenians, Sephardic Jews (and, to a much lesser extent, Ashkenazi Jews), Cypriots, Turks and Arabs.
See also[edit]
| Amyloidosis | ||||||
|---|---|---|---|---|---|---|
|


