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Restrictive cardiomyopathy

MedGen UID:
40111
Concept ID:
C0007196
Disease or Syndrome
Synonyms: Cardiomyopathies, Restrictive; Cardiomyopathy, Restrictive; Familial Restrictive Cardiomyopathy; Restrictive Cardiomyopathies; Restrictive Cardiomyopathy
SNOMED CT: Primary restrictive cardiomyopathy (90828009); Restrictive cardiomyopathy (415295002); Constrictive cardiomyopathy (415295002)
 
HPO: HP:0001723
Monarch Initiative: MONDO:0005201
OMIM®: 561000
Orphanet: ORPHA217632

Definition

Restrictive left ventricular physiology is characterized by a pattern of ventricular filling in which increased stiffness of the myocardium causes ventricular pressure to rise precipitously with only small increases in volume, defined as restrictive ventricular physiology in the presence of normal or reduced diastolic volumes (of one or both ventricles), normal or reduced systolic volumes, and normal ventricular wall thickness. [from HPO]

Term Hierarchy

CClinical test,  RResearch test,  OOMIM,  GGeneReviews,  VClinVar  
  • CROGVRestrictive cardiomyopathy
Follow this link to review classifications for Restrictive cardiomyopathy in Orphanet.

Conditions with this feature

Idiopathic hypereosinophilic syndrome
MedGen UID:
61525
Concept ID:
C0206141
Disease or Syndrome
PDGFRA-associated chronic eosinophilic leukemia is a form of blood cell cancer characterized by an elevated number of cells called eosinophils in the blood. These cells help fight infections by certain parasites and are involved in the inflammation associated with allergic reactions. However, these circumstances do not account for the increased number of eosinophils in PDGFRA-associated chronic eosinophilic leukemia.\n\nAnother characteristic feature of PDGFRA-associated chronic eosinophilic leukemia is organ damage caused by the excess eosinophils. Eosinophils release substances to aid in the immune response, but the release of excessive amounts of these substances causes damage to one or more organs, most commonly the heart, skin, lungs, or nervous system. Eosinophil-associated organ damage can lead to a heart condition known as eosinophilic endomyocardial disease, skin rashes, coughing, difficulty breathing, swelling (edema) in the lower limbs, confusion, changes in behavior, or impaired movement or sensations. People with PDGFRA-associated chronic eosinophilic leukemia can also have an enlarged spleen (splenomegaly) and elevated levels of certain chemicals called vitamin B12 and tryptase in the blood.\n\nSome people with PDGFRA-associated chronic eosinophilic leukemia have an increased number of other types of white blood cells, such as neutrophils or mast cells. Occasionally, people with PDGFRA-associated chronic eosinophilic leukemia develop other blood cell cancers, such as acute myeloid leukemia or B-cell or T-cell acute lymphoblastic leukemia or lymphoblastic lymphoma.\n\nPDGFRA-associated chronic eosinophilic leukemia is often grouped with a related condition called hypereosinophilic syndrome. These two conditions have very similar signs and symptoms; however, the cause of hypereosinophilic syndrome is unknown.
Autosomal recessive inherited pseudoxanthoma elasticum
MedGen UID:
698415
Concept ID:
C1275116
Disease or Syndrome
Pseudoxanthoma elasticum (PXE) is a systemic disorder that affects the elastic tissue of the skin, the eye, and vascular system. Individuals most commonly present with angioid streaks of the retina found on routine eye examination or associated with retinal hemorrhage and/or characteristic papules in the skin. The most frequent cause of morbidity and disability in PXE is reduced vision due to complications of subretinal neovascularizations and macular atrophy. Other manifestations include premature gastrointestinal angina and/or bleeding, intermittent claudication of arm and leg muscles, stroke, renovascular hypertension, and cardiovascular complications (angina/myocardial infarction). Most affected individuals live a normal life span.
Desmin-related myofibrillar myopathy
MedGen UID:
330449
Concept ID:
C1832370
Disease or Syndrome
Myofibrillar myopathy (MFM) is a noncommittal term that refers to a group of morphologically homogeneous, but genetically heterogeneous chronic neuromuscular disorders. The morphologic changes in skeletal muscle in MFM result from disintegration of the sarcomeric Z disc and the myofibrils, followed by abnormal ectopic accumulation of multiple proteins involved in the structure of the Z disc, including desmin, alpha-B-crystallin (CRYAB; 123590), dystrophin (300377), and myotilin (TTID; 604103). Genetic Heterogeneity of Myofibrillar Myopathy Other forms of MFM include MFM2 (608810), caused by mutation in the CRYAB gene (123590); MFM3 (609200), caused by mutation in the MYOT gene (604103); MFM4 (609452), caused by mutation in the ZASP gene (LDB3; 605906); MFM5 (609524), caused by mutation in the FLNC gene (102565); MFM6 (612954), caused by mutation in the BAG3 gene (603883); MFM7 (617114), caused by mutation in the KY gene (605739); MFM8 (617258), caused by mutation in the PYROXD1 gene (617220); MFM9 (603689), caused by mutation in the TTN gene (188840); MFM10 (619040), caused by mutation in the SVIL UNC45B gene (611220); MFM11 (619178), caused by mutation in the UNC45B gene (611220); and MFM12 (619424), caused by mutation in the MYL2 gene (160781). 'Desmin-related myopathy' is another term referring to MFM in which there are intrasarcoplasmic aggregates of desmin, usually in addition to other sarcomeric proteins. Rigid spine syndrome (602771), caused by mutation in the SEPN1 gene (606210), is another desmin-related myopathy. Goebel (1995) provided a review of desmin-related myopathy.
Hypertrophic cardiomyopathy 8
MedGen UID:
324806
Concept ID:
C1837471
Disease or Syndrome
Any hypertrophic cardiomyopathy in which the cause of the disease is a mutation in the MYL3 gene.
Cardiomyopathy, familial restrictive, 1
MedGen UID:
396236
Concept ID:
C1861861
Disease or Syndrome
Restrictive cardiomyopathy (RCM) is a myocardial disease characterized by impaired ventricular filling and reduced diastolic volume in the presence of normal systolic function and normal or near-normal myocardial thickness. The disease is characterized by symptoms of progressive left- and right-sided heart failure. The overall prognosis is poor, especially when onset is in childhood, and patients often require cardiac transplantation (Mogensen et al., 2003). Genetic Heterogeneity of Familial Restrictive Cardiomyopathy Other forms of familial restrictive cardiomyopathy include RCM2 (609578), mapped to chromosome 10q23; RCM3 (612422), caused by mutation in the TNNT2 gene (191045) on chromosome 1q32; RCM4 (see 615248), caused by mutation in the MYPN gene (608517) on chromosome 10q21; RCM5 (see 617047), caused by mutation in the FLNC gene (102565) on chromosome 7q32; and RCM6 (619433), caused by mutation in the KIF20A gene (605664) on chromosome 5q31.
Cardiomyopathy, familial restrictive, 3
MedGen UID:
382807
Concept ID:
C2676271
Disease or Syndrome
Familial restrictive cardiomyopathy is a genetic form of heart disease. For the heart to beat normally, the heart (cardiac) muscle must contract and relax in a coordinated way. Oxygen-rich blood from the lungs travels first through the upper chambers of the heart (the atria), and then to the lower chambers of the heart (the ventricles).\n\nIn people with familial restrictive cardiomyopathy, the heart muscle is stiff and cannot fully relax after each contraction. Impaired muscle relaxation causes blood to back up in the atria and lungs, which reduces the amount of blood in the ventricles.\n\nFamilial restrictive cardiomyopathy can appear anytime from childhood to adulthood. The first signs and symptoms of this condition in children are failure to gain weight and grow at the expected rate (failure to thrive), extreme tiredness (fatigue), and fainting. Children who are severely affected may also have abnormal swelling or puffiness (edema), increased blood pressure, an enlarged liver, an abnormal buildup of fluid in the abdominal cavity (ascites), and lung congestion. Some children with familial restrictive cardiomyopathy do not have any obvious signs or symptoms, but they may die suddenly due to heart failure. Without treatment, the majority of affected children survive only a few years after they are diagnosed.\n\nAdults with familial restrictive cardiomyopathy typically first develop shortness of breath, fatigue, and a reduced ability to exercise. Some individuals have an irregular heart beat (arrhythmia) and may also experience a sensation of fluttering or pounding in the chest (palpitations) and dizziness. Abnormal blood clots are commonly seen in adults with this condition. Without treatment, approximately one-third of adults with familial restrictive cardiomyopathy do not survive more than five years after diagnosis.
Myofibrillar myopathy 6
MedGen UID:
414119
Concept ID:
C2751831
Disease or Syndrome
Myofibrillar myopathy-6 is an autosomal dominant severe neuromuscular disorder characterized by onset in the first decade of rapidly progressive generalized and proximal muscle weakness, respiratory insufficiency, cardiomyopathy, and skeletal deformities related to muscle weakness. Muscle biopsy shows fiber-type grouping, disruption of the Z lines, and filamentous inclusions, and sural nerve biopsy shows a neuropathy, often with giant axonal neurons. Most patients are severely affected by the second decade and need cardiac transplant, ventilation, and/or a wheelchair (summary by Jaffer et al., 2012). For a phenotypic description and a discussion of genetic heterogeneity of myofibrillar myopathy (MFM), see MFM1 (601419).
Dilated cardiomyopathy 1R
MedGen UID:
462031
Concept ID:
C3150681
Disease or Syndrome
Any familial isolated dilated cardiomyopathy in which the cause of the disease is a mutation in the ACTC1 gene.
Multiple congenital anomalies-hypotonia-seizures syndrome 3
MedGen UID:
815686
Concept ID:
C3809356
Disease or Syndrome
Multiple congenital anomalies-hypotonia-seizures syndrome is an autosomal recessive disorder characterized by neonatal hypotonia, lack of psychomotor development, seizures, dysmorphic features, and variable congenital anomalies involving the cardiac, urinary, and gastrointestinal systems. Most affected individuals die before 3 years of age (summary by Maydan et al., 2011). The disorder is caused by a defect in glycosylphosphatidylinositol (GPI) biosynthesis. For a discussion of genetic heterogeneity of MCAHS, see MCAHS1 (614080). For a discussion of genetic heterogeneity of GPI biosynthesis defects, see GPIBD1 (610293).
Microcephaly 13, primary, autosomal recessive
MedGen UID:
863517
Concept ID:
C4015080
Disease or Syndrome
Any autosomal recessive primary microcephaly in which the cause of the disease is a mutation in the CENPE gene.
Immunodeficiency 80 with or without congenital cardiomyopathy
MedGen UID:
1786417
Concept ID:
C5543344
Disease or Syndrome
Immunodeficiency-80 with or without congenital cardiomyopathy (IMD80) is an autosomal recessive immunologic disorder with variable manifestations. One patient with infantile-onset of chronic cytomegalovirus (CMV) infection associated with severely decreased NK cells has been reported. Another family with 3 affected fetuses showing restrictive cardiomyopathy and hypoplasia of the spleen and thymus has also been reported (summary by Baxley et al., 2021).
Cardiomyopathy, familial restrictive, 6
MedGen UID:
1780781
Concept ID:
C5543638
Disease or Syndrome
Familial restrictive cardiomyopathy-6 (RCM6) is characterized by prenatal onset of severe restrictive cardiomyopathy predominantly involving the right ventricle, resulting in irreversible heart failure and early death (Louw et al., 2018). For a general phenotypic description and discussion of genetic heterogeneity of familial restrictive cardiomyopathy, see RCM1 (115210).
Myopathy, myofibrillar, 12, infantile-onset, with cardiomyopathy
MedGen UID:
1794147
Concept ID:
C5561937
Disease or Syndrome
Infantile-onset myofibrillar myopathy-12 with cardiomyopathy (MFM12) is a severe autosomal recessive disorder affecting both skeletal and cardiac muscle tissue that is apparent in the first weeks of life. Affected infants show tremor or clonus at birth, followed by onset of rapidly progressive generalized muscle weakness and dilated cardiomyopathy and cardiac failure, usually resulting in death by 6 months of age. Skeletal and cardiac muscle tissues show hypotrophy of type I muscle fibers and evidence of myofibrillar disorganization (summary by Weterman et al., 2013). For a discussion of genetic heterogeneity of myofibrillar myopathy, see MFM1 (601419).

Professional guidelines

PubMed

Arbelo E, Protonotarios A, Gimeno JR, Arbustini E, Barriales-Villa R, Basso C, Bezzina CR, Biagini E, Blom NA, de Boer RA, De Winter T, Elliott PM, Flather M, Garcia-Pavia P, Haugaa KH, Ingles J, Jurcut RO, Klaassen S, Limongelli G, Loeys B, Mogensen J, Olivotto I, Pantazis A, Sharma S, Van Tintelen JP, Ware JS, Kaski JP; ESC Scientific Document Group
Eur Heart J 2023 Oct 1;44(37):3503-3626. doi: 10.1093/eurheartj/ehad194. PMID: 37622657
Stern LK, Patel J
Methodist Debakey Cardiovasc J 2022;18(2):59-72. Epub 2022 Mar 14 doi: 10.14797/mdcvj.1050. PMID: 35414852Free PMC Article
Kittleson MM, Maurer MS, Ambardekar AV, Bullock-Palmer RP, Chang PP, Eisen HJ, Nair AP, Nativi-Nicolau J, Ruberg FL; American Heart Association Heart Failure and Transplantation Committee of the Council on Clinical Cardiology
Circulation 2020 Jul 7;142(1):e7-e22. Epub 2020 Jun 1 doi: 10.1161/CIR.0000000000000792. PMID: 32476490

Recent clinical studies

Etiology

Arbelo E, Protonotarios A, Gimeno JR, Arbustini E, Barriales-Villa R, Basso C, Bezzina CR, Biagini E, Blom NA, de Boer RA, De Winter T, Elliott PM, Flather M, Garcia-Pavia P, Haugaa KH, Ingles J, Jurcut RO, Klaassen S, Limongelli G, Loeys B, Mogensen J, Olivotto I, Pantazis A, Sharma S, Van Tintelen JP, Ware JS, Kaski JP; ESC Scientific Document Group
Eur Heart J 2023 Oct 1;44(37):3503-3626. doi: 10.1093/eurheartj/ehad194. PMID: 37622657
Rapezzi C, Aimo A, Barison A, Emdin M, Porcari A, Linhart A, Keren A, Merlo M, Sinagra G
Eur Heart J 2022 Dec 1;43(45):4679-4693. doi: 10.1093/eurheartj/ehac543. PMID: 36269634Free PMC Article
Ciarambino T, Menna G, Sansone G, Giordano M
Int J Mol Sci 2021 Jul 19;22(14) doi: 10.3390/ijms22147722. PMID: 34299342Free PMC Article
Martinez-Naharro A, Hawkins PN, Fontana M
Clin Med (Lond) 2018 Apr 1;18(Suppl 2):s30-s35. doi: 10.7861/clinmedicine.18-2-s30. PMID: 29700090Free PMC Article
Brieler J, Breeden MA, Tucker J
Am Fam Physician 2017 Nov 15;96(10):640-646. PMID: 29431384

Diagnosis

Rapezzi C, Aimo A, Barison A, Emdin M, Porcari A, Linhart A, Keren A, Merlo M, Sinagra G
Eur Heart J 2022 Dec 1;43(45):4679-4693. doi: 10.1093/eurheartj/ehac543. PMID: 36269634Free PMC Article
Ciarambino T, Menna G, Sansone G, Giordano M
Int J Mol Sci 2021 Jul 19;22(14) doi: 10.3390/ijms22147722. PMID: 34299342Free PMC Article
Martinez-Naharro A, Hawkins PN, Fontana M
Clin Med (Lond) 2018 Apr 1;18(Suppl 2):s30-s35. doi: 10.7861/clinmedicine.18-2-s30. PMID: 29700090Free PMC Article
Brieler J, Breeden MA, Tucker J
Am Fam Physician 2017 Nov 15;96(10):640-646. PMID: 29431384
Muchtar E, Blauwet LA, Gertz MA
Circ Res 2017 Sep 15;121(7):819-837. doi: 10.1161/CIRCRESAHA.117.310982. PMID: 28912185

Therapy

Bogle C, Colan SD, Miyamoto SD, Choudhry S, Baez-Hernandez N, Brickler MM, Feingold B, Lal AK, Lee TM, Canter CE, Lipshultz SE; American Heart Association Young Hearts Pediatric Heart Failure and Transplantation Committee of the Council on Lifelong Congenital Heart Disease and Heart Health in the Young (Young Hearts)
Circulation 2023 Jul 11;148(2):174-195. Epub 2023 Jun 8 doi: 10.1161/CIR.0000000000001151. PMID: 37288568
Stern LK, Patel J
Methodist Debakey Cardiovasc J 2022;18(2):59-72. Epub 2022 Mar 14 doi: 10.14797/mdcvj.1050. PMID: 35414852Free PMC Article
Rubin J, Maurer MS
Annu Rev Med 2020 Jan 27;71:203-219. doi: 10.1146/annurev-med-052918-020140. PMID: 31986086
Wexler RK, Elton T, Pleister A, Feldman D
Am Fam Physician 2009 May 1;79(9):778-84. PMID: 20141097Free PMC Article
Troughton RW, Asher CR, Klein AL
Lancet 2004 Feb 28;363(9410):717-27. doi: 10.1016/S0140-6736(04)15648-1. PMID: 15001332

Prognosis

Stern LK, Patel J
Methodist Debakey Cardiovasc J 2022;18(2):59-72. Epub 2022 Mar 14 doi: 10.14797/mdcvj.1050. PMID: 35414852Free PMC Article
Rubin J, Maurer MS
Annu Rev Med 2020 Jan 27;71:203-219. doi: 10.1146/annurev-med-052918-020140. PMID: 31986086
Martinez-Naharro A, Hawkins PN, Fontana M
Clin Med (Lond) 2018 Apr 1;18(Suppl 2):s30-s35. doi: 10.7861/clinmedicine.18-2-s30. PMID: 29700090Free PMC Article
Muchtar E, Blauwet LA, Gertz MA
Circ Res 2017 Sep 15;121(7):819-837. doi: 10.1161/CIRCRESAHA.117.310982. PMID: 28912185
Geske JB, Anavekar NS, Nishimura RA, Oh JK, Gersh BJ
J Am Coll Cardiol 2016 Nov 29;68(21):2329-2347. doi: 10.1016/j.jacc.2016.08.050. PMID: 27884252

Clinical prediction guides

Sinagra G, Carriere C, Clemenza F, Minà C, Bandera F, Zaffalon D, Gugliandolo P, Merlo M, Guazzi M, Agostoni P
Eur J Prev Cardiol 2020 Dec;27(2_suppl):52-58. doi: 10.1177/2047487320961898. PMID: 33238741Free PMC Article
Kittleson MM, Maurer MS, Ambardekar AV, Bullock-Palmer RP, Chang PP, Eisen HJ, Nair AP, Nativi-Nicolau J, Ruberg FL; American Heart Association Heart Failure and Transplantation Committee of the Council on Clinical Cardiology
Circulation 2020 Jul 7;142(1):e7-e22. Epub 2020 Jun 1 doi: 10.1161/CIR.0000000000000792. PMID: 32476490
Siddiqi OK, Ruberg FL
Trends Cardiovasc Med 2018 Jan;28(1):10-21. Epub 2017 Jul 13 doi: 10.1016/j.tcm.2017.07.004. PMID: 28739313Free PMC Article
Ryan TD, Chin C
Semin Pediatr Surg 2017 Aug;26(4):206-212. Epub 2017 Jul 26 doi: 10.1053/j.sempedsurg.2017.07.012. PMID: 28964475
Muchtar E, Blauwet LA, Gertz MA
Circ Res 2017 Sep 15;121(7):819-837. doi: 10.1161/CIRCRESAHA.117.310982. PMID: 28912185

Recent systematic reviews

Diaz-Arocutipa C, Saucedo-Chinchay J, Imazio M, Argulian E
Clin Cardiol 2022 Mar;45(3):251-257. Epub 2021 Dec 30 doi: 10.1002/clc.23772. PMID: 34967020Free PMC Article
Scatularo CE, Posada Martínez EL, Saldarriaga C, Ballesteros OA, Baranchuk A, Sosa Liprandi A, Wyss F, Sosa Liprandi MI
Curr Probl Cardiol 2021 Apr;46(4):100784. Epub 2020 Dec 26 doi: 10.1016/j.cpcardiol.2020.100784. PMID: 33418479
Tselios K, Deeb M, Gladman DD, Harvey P, Urowitz MB
Lupus 2018 Apr;27(4):591-599. Epub 2017 Oct 9 doi: 10.1177/0961203317734922. PMID: 28992800
Madeira M, Teixeira R, Costa M, Gonçalves L, Klein AL
Echocardiography 2016 Oct;33(10):1589-1599. Epub 2016 Aug 19 doi: 10.1111/echo.13293. PMID: 27539202
Phillips AA, Cote AT, Bredin SS, Warburton DE
BMC Cardiovasc Disord 2012 Jun 24;12:46. doi: 10.1186/1471-2261-12-46. PMID: 22726250Free PMC Article

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