U.S. flag

An official website of the United States government

Format

Send to:

Choose Destination

Lipodystrophy

MedGen UID:
6111
Concept ID:
C0023787
Disease or Syndrome
Synonym: Lipodystrophy (disease)
SNOMED CT: Lipodystrophy (71325002); Dystrophy of fatty tissue (71325002)
 
HPO: HP:0009125
Monarch Initiative: MONDO:0006573

Definition

Degenerative changes of the fat tissue. [from HPO]

Conditions with this feature

Multiple symmetric lipomatosis
MedGen UID:
7349
Concept ID:
C0023804
Disease or Syndrome
Multiple symmetric lipomatosis (MSL) is an autosomal recessive metabolic disorder characterized by the growth of unencapsulated masses of adipose tissue with predilection for the cervical and thoracic regions. The lipoma growth is striking and disfiguring, and growth around the neck may cause difficulty swallowing or breathing. The age at onset ranges from childhood to young adulthood. Most, but not all, patients develop axonal peripheral neuropathy, which can appear at any age and varies in severity. Laboratory studies in MSL show low leptin (164160), low adiponectin (605441), variably increased lactate, and increased FGF21 (609436). Some patients may have insulin resistance. The disorder is exclusively associated with a particular MFN2 mutation (R707W; 608507.0013), usually in the homozygous state, but sometimes in the compound heterozygous state (Rocha et al., 2017; Capel et al., 2018).
Cutis laxa with osteodystrophy
MedGen UID:
82795
Concept ID:
C0268355
Disease or Syndrome
ATP6V0A2-related cutis laxa is characterized by generalized cutis laxa, findings associated with generalized connective tissue disorder, developmental delays, and a variety of neurologic findings including abnormality on brain MRI. At birth, hypotonia, overfolded skin, and distinctive facial features are present and enlarged fontanelles are often observed. During childhood, the characteristic facial features and thick or coarse hair may become quite pronounced. The skin findings decrease with age, although easy bruising and Ehlers-Danlos-like scars have been described in some. In most (not all) affected individuals, cortical and cerebellar malformations are observed on brain MRI. Nearly all affected individuals have developmental delays, seizures, and neurologic regression.
Dilated cardiomyopathy-hypergonadotropic hypogonadism syndrome
MedGen UID:
162901
Concept ID:
C0796031
Disease or Syndrome
This syndrome is characterized by the association of dilated cardiomyopathy and hypergonadotropic hypogonadism (DCM-HH).
Analbuminemia
MedGen UID:
164210
Concept ID:
C0878666
Finding
Analbuminemia (ANALBA) is a rare autosomal recessive disorder manifested by the presence of a very low amount of circulating serum albumin. Affected individuals have few clinical symptoms other than mild edema, hypotension, fatigue, and occasionally a peculiar lower body lipodystrophy (mainly in adult females). The most common biochemical finding is a gross hyperlipidemia, with a significant increase in the total and LDL cholesterol concentrations, but normal concentrations of HDL cholesterol and triglycerides. Analbuminemia often leads to fetal or neonatal death in sibs in families of analbuminemic individuals, which may explain the rarity of the trait (summary by Caridi et al., 2014).
SHORT syndrome
MedGen UID:
164212
Concept ID:
C0878684
Disease or Syndrome
SHORT syndrome is a mnemonic for short stature, hyperextensibility, ocular depression (deeply set eyes), Rieger anomaly, and teething delay. It is now recognized that the features most consistently observed in SHORT syndrome are mild intrauterine growth restriction (IUGR); mild to moderate short stature; partial lipodystrophy (evident in the face, and later in the chest and upper extremities, often sparing the buttocks and legs); and a characteristic facial gestalt. Insulin resistance may be evident in mid-childhood or adolescence, although diabetes mellitus typically does not develop until early adulthood. Other frequent features include Axenfeld-Rieger anomaly or related ocular anterior chamber dysgenesis, delayed dentition and other dental issues, and sensorineural hearing loss.
Barber-Say syndrome
MedGen UID:
230818
Concept ID:
C1319466
Disease or Syndrome
Barber-Say syndrome (BBRSAY) is a rare congenital condition characterized by severe hypertrichosis, especially of the back, skin abnormalities such as hyperlaxity and redundancy, and facial dysmorphism, including macrostomia, eyelid deformities, ocular telecanthus, abnormal and low-set ears, bulbous nasal tip with hypoplastic alae nasi, and low frontal hairline (summary by Roche et al., 2010).
Familial partial lipodystrophy, Kobberling type
MedGen UID:
318591
Concept ID:
C1720859
Disease or Syndrome
Familial partial lipodystrophy type 1 (FPLD1), or Kobberling-type lipodystrophy, is characterized by loss of adipose tissue confined to the extremities, with normal or increased distribution of fat on the face, neck, and trunk (Kobberling and Dunnigan, 1986). For a general description and a discussion of genetic heterogeneity of familial partial lipodystrophy (FPLD), see 151660.
Familial partial lipodystrophy, Dunnigan type
MedGen UID:
354526
Concept ID:
C1720860
Disease or Syndrome
Familial partial lipodystrophy is a metabolic disorder characterized by abnormal subcutaneous adipose tissue distribution beginning in late childhood or early adult life. Affected individuals gradually lose fat from the upper and lower extremities and the gluteal and truncal regions, resulting in a muscular appearance with prominent superficial veins. In some patients, adipose tissue accumulates on the face and neck, causing a double chin, fat neck, or cushingoid appearance. Metabolic abnormalities include insulin-resistant diabetes mellitus with acanthosis nigricans and hypertriglyceridemia; hirsutism and menstrual abnormalities occur infrequently. Familial partial lipodystrophy may also be referred to as lipoatrophic diabetes mellitus, but the essential feature is loss of subcutaneous fat (review by Garg, 2004). The disorder may be misdiagnosed as Cushing disease (see 219080) (Kobberling and Dunnigan, 1986; Garg, 2004). Genetic Heterogeneity of Familial Partial Lipodystrophy Familial partial lipodystrophy is a clinically and genetically heterogeneous disorder. Types 1 and 2 were originally described as clinical subtypes: type 1 (FPLD1; 608600), characterized by loss of subcutaneous fat confined to the limbs (Kobberling et al., 1975), and FPLD2, characterized by loss of subcutaneous fat from the limbs and trunk (Dunnigan et al., 1974; Kobberling and Dunnigan, 1986). No genetic basis for FPLD1 has yet been delineated. FPLD3 (604367) is caused by mutation in the PPARG gene (601487) on chromosome 3p25; FPLD4 (613877) is caused by mutation in the PLIN1 gene (170290) on chromosome 15q26; FPLD5 (615238) is caused by mutation in the CIDEC gene (612120) on chromosome 3p25; FPLD6 (615980) is caused by mutation in the LIPE gene (151750) on chromosome 19q13; FPLD7 (606721) is caused by mutation in the CAV1 gene (601047) on chromosome 7q31; FPLD8 (620679), caused by mutation in the ADRA2A gene (104210) on chromosome 10q25; and FPLD9 (620683), caused by mutation in the PLAAT3 gene (613867) on chromosome 11q12.
PPARG-related familial partial lipodystrophy
MedGen UID:
328393
Concept ID:
C1720861
Disease or Syndrome
A rare familial partial lipodystrophy with characteristics of adult onset of distal lipoatrophy with gluteofemoral fat loss, as well as increased fat accumulation in the face and trunk and visceral adiposity. Additional manifestations include diabetes mellitus, atherogenic dyslipidemia, eyelid xanthelasma, arterial hypertension, cardiovascular disease, hepatic steatosis, acanthosis nigricans on axilla and neck, hirsutism, and muscular hypertrophy of the lower limbs. Caused by heterozygous mutation in the PPARG gene on chromosome 3p25.
Congenital generalized lipodystrophy type 1
MedGen UID:
318592
Concept ID:
C1720862
Disease or Syndrome
Berardinelli-Seip congenital lipodystrophy (BSCL) is usually diagnosed at birth or soon thereafter. Because of the absence of functional adipocytes, lipid is stored in other tissues, including muscle and liver. Affected individuals develop insulin resistance and approximately 25%-35% develop diabetes mellitus between ages 15 and 20 years. Hepatomegaly secondary to hepatic steatosis and skeletal muscle hypertrophy occur in all affected individuals. Hypertrophic cardiomyopathy is reported in 20%-25% of affected individuals and is a significant cause of morbidity from cardiac failure and early mortality.
Congenital generalized lipodystrophy type 2
MedGen UID:
318593
Concept ID:
C1720863
Congenital Abnormality
Berardinelli-Seip congenital lipodystrophy (BSCL) is usually diagnosed at birth or soon thereafter. Because of the absence of functional adipocytes, lipid is stored in other tissues, including muscle and liver. Affected individuals develop insulin resistance and approximately 25%-35% develop diabetes mellitus between ages 15 and 20 years. Hepatomegaly secondary to hepatic steatosis and skeletal muscle hypertrophy occur in all affected individuals. Hypertrophic cardiomyopathy is reported in 20%-25% of affected individuals and is a significant cause of morbidity from cardiac failure and early mortality.
Membranoproliferative glomerulonephritis, X-linked
MedGen UID:
336706
Concept ID:
C1844501
Disease or Syndrome
Habib et al. (1973) recognized 2 morphologic classes for the glomerular changes seen in patients with mesangiocapillary (membranoproliferative) glomerulonephritis (MPGN). Type I is characterized by double contour appearance of the capillary walls due to mesangial cell interposition, with nonargyrophilic subendothelial deposits which are finely granular on electron microscopy. Type II is characterized by linear dense deposits within the basement membrane and only rare double contours. These 2 types appear to be distinct with no conversion of one type to another on serial biopsy. Strife et al. (1977) described a third variety in which there are not only subendothelial deposits but also numerous subepithelial and intramembranous deposits, associated with replication of the lamina densa and frequently disruption of the whole basement membrane.
Growth delay due to insulin-like growth factor I resistance
MedGen UID:
338622
Concept ID:
C1849157
Disease or Syndrome
Patients with mutations in the receptor for insulin-like growth factor I show intrauterine growth retardation and postnatal growth failure, resulting in short stature and microcephaly. Other features may include delayed bone age, developmental delay, and dysmorphic features.
Lipase deficiency, combined
MedGen UID:
340886
Concept ID:
C1855498
Disease or Syndrome
A rare disorder caused by mutation in the LMF1 gene resulting in combined lipase deficiency with concomitant hypertriglyceridemia and associated disorders.
Stiff skin syndrome
MedGen UID:
348877
Concept ID:
C1861456
Disease or Syndrome
Stiff skin syndrome (SSKS) is characterized by hard, thick skin, usually over the entire body, which limits joint mobility and causes flexion contractures. Other occasional findings include lipodystrophy and muscle weakness (Loeys et al., 2010). Patients with similar phenotypes involving stiff skin have been described; see, e.g., familial progressive scleroderma (181750), symmetric lipomatosis (151800), and congenital fascial dystrophy (228020).
Congenital generalized lipodystrophy type 3
MedGen UID:
436541
Concept ID:
C2675861
Disease or Syndrome
Congenital generalized lipodystrophy, also known as Berardinelli-Seip syndrome, is an autosomal recessive disorder characterized by marked paucity of adipose tissue, extreme insulin resistance, hypertriglyceridemia, hepatic steatosis, and early onset of diabetes (Garg, 2004). For a general description and a discussion of genetic heterogeneity of congenital generalized lipodystrophy, see CGL1 (608594).
Congenital generalized lipodystrophy type 4
MedGen UID:
412871
Concept ID:
C2750069
Disease or Syndrome
Congenital generalized lipodystrophy type 4 (CGL4) combines the phenotype of classic Berardinelli-Seip lipodystrophy (608594) with muscular dystrophy and cardiac conduction anomalies (Hayashi et al., 2009). For a general description and a discussion of genetic heterogeneity of congenital generalized lipodystrophy, see CGL1 (608594).
ALG9 congenital disorder of glycosylation
MedGen UID:
443955
Concept ID:
C2931006
Disease or Syndrome
Congenital disorders of glycosylation (CDGs) that represent defects of dolichol-linked oligosaccharide assembly are classified as CDG type I. For a general description and a discussion of the classification of CDGs, see CDG1A (212065).
Lipodystrophy, partial, acquired, with low complement component c3, with or without glomerulonephritis
MedGen UID:
462697
Concept ID:
C3151347
Disease or Syndrome
Acquired partial lipodystrophy (APLD) is characterized clinically by the gradual onset of bilaterally symmetrical loss of subcutaneous fat from the face, neck, upper extremities, thorax, and abdomen, in the 'cephalocaudal' sequence, sparing the lower extremities. A large group of patients (83%) with acquired partial lipodystrophy have low serum levels of complement component C3 due to the presence of C3 nephritic factor, an IgG antibody that causes continuous activation of the alternative complement pathway and consumption of serum C3. About 22% of patients with this acquired complement defect develop membranoproliferative glomerulonephritis. Some individuals may also show an increased risk of infection (Misra et al., 2004). Acquired partial lipodystrophy is not inherited in a classic mendelian pattern; it rather represents a phenotype with a complex etiology. Affected individuals may have genetic susceptibility factors that require the additional presence of environmental factors or acquired disorders to be expressed (summary by Hegele et al., 2006). Most cases are sporadic, family history is negative, and females are more often affected than males (ratio, 4:1) (summary by Misra et al., 2004). See 608709 for a subtype of APLD not associated with low complement C3 or renal disease.
Mandibular hypoplasia-deafness-progeroid syndrome
MedGen UID:
811623
Concept ID:
C3715192
Disease or Syndrome
Mandibular hypoplasia, deafness, progeroid features, and lipodystrophy syndrome (MDPL) is an autosomal dominant systemic disorder characterized by prominent loss of subcutaneous fat, a characteristic facial appearance, and metabolic abnormalities including insulin resistance and diabetes mellitus. Sensorineural deafness occurs late in the first or second decades of life (summary by Weedon et al., 2013).
Partial lipodystrophy, congenital cataracts, and neurodegeneration syndrome
MedGen UID:
813897
Concept ID:
C3807567
Disease or Syndrome
Lipodystrophies are rare disorders characterized by loss of body fat from various regions and predisposition to metabolic complications of insulin resistance and lipid abnormalities. FPLD7 is an autosomal dominant disorder with a highly variable phenotype. Additional features, including early-onset cataracts and later onset of spasticity of the lower limbs, have been noted in some patients (summary by Garg et al., 2015). For a general phenotypic description and a discussion of genetic heterogeneity of familial partial lipodystrophy (FPLD), see 151660.
CIDEC-related familial partial lipodystrophy
MedGen UID:
815270
Concept ID:
C3808940
Disease or Syndrome
A rare genetic lipodystrophy with characteristics of abnormal subcutaneous fat distribution, resulting in preservation of visceral, neck and axillary fat and absence of lower limb and gluteofemoral subcutaneous fat. Additional clinical features are acanthosis nigricans, insulin-resistant type II diabetes mellitus, dyslipidaemia, and hypertension, leading to pancreatitis, hepatomegaly and hepatic steatosis.
LIPE-related familial partial lipodystrophy
MedGen UID:
863306
Concept ID:
C4014869
Disease or Syndrome
Familial partial lipodystrophy type 6 (FPLD6) is characterized by abnormal subcutaneous fat distribution, with variable excess accumulation of fat in the face, neck, shoulders, axillae, back, abdomen, and pubic region, and reduction in subcutaneous fat of the lower extremities. Progressive adult-onset myopathy is seen in some patients, and there is variable association with diabetes, hypertriglyceridemia, low high-density lipoprotein (HDL) cholesterol, and hepatic steatosis (Zolotov et al., 2017). For a general phenotypic description and a discussion of genetic heterogeneity of familial partial lipodystrophy (FPLD), see 151660.
Progeroid features-hepatocellular carcinoma predisposition syndrome
MedGen UID:
863898
Concept ID:
C4015461
Disease or Syndrome
Ruijs et al. (2003) reported a Moroccan boy with a chromosomal breakage who died of hepatocellular carcinoma at age 17 years. The boy was noted to have growth retardation at age 3 years; at age 7 he was found to have thoracic kyphosis, frontal bossing, and a delayed bone age of approximately 3 years. He underwent surgery for severe bilateral posterior subcapsular cataracts at age 14. Examination at age 15 showed short stature and low weight, with premature graying of scalp hair, small frontotemporal diameter, small deep-set eyes, bulbous nose with high nasal bridge, small upper lip, and micrognathia. In addition, he had thoracic kyphoscoliosis, sloping shoulders, mild pectus excavatum, moderate bilateral contractures of both elbows, bilateral clinodactyly, and pes planus. At age 17, he developed abdominal pain, and ultrasonography revealed a liver mass; biopsy confirmed hepatocellular carcinoma. Because of the advanced stage, no treatment was possible, and he died 2 months later. Although his parents were not known to be consanguineous, they originated from the same small Moroccan village. Lessel et al. (2014) studied 2 brothers from a nonconsanguineous Australian family of European ancestry who exhibited low body weight, micrognathia, triangular face, muscular atrophy, lipodystrophy, bilateral simian creases, delayed bone age, and mild joint restrictions in the fingers and elbows. In addition, both brothers developed early-onset hepatocellular carcinoma, at ages 16 and 14 years, respectively. The older brother died at age 18 from complications of acute fulminant hepatic failure. Analysis of patient tumor biopsies showed strong focal accumulations of cancer biomarkers as well as a high proliferative index compared to healthy liver or to cells from idiopathic hepatocellular carcinoma.
Infantile-onset periodic fever-panniculitis-dermatosis syndrome
MedGen UID:
934581
Concept ID:
C4310614
Disease or Syndrome
Autoinflammation, panniculitis, and dermatosis syndrome (AIPDS) is an autosomal recessive autoinflammatory disease characterized by neonatal onset of recurrent fever, erythematous rash with painful nodules, painful joints, and lipodystrophy. Additional features may include diarrhea, increased serum C-reactive protein (CRP), leukocytosis, and neutrophilia in the absence of any infection. Patients exhibit no overt primary immunodeficiency (Damgaard et al., 2016 and Zhou et al., 2016).
Proteasome-associated autoinflammatory syndrome 1
MedGen UID:
1648310
Concept ID:
C4746851
Disease or Syndrome
This autosomal recessive systemic autoinflammatory disorder is characterized by early childhood onset of annular erythematous plaques on the face and extremities with subsequent development of partial lipodystrophy and laboratory evidence of immune dysregulation. More variable features include recurrent fever, severe joint contractures, muscle weakness and atrophy, hepatosplenomegaly, basal ganglia calcifications, and microcytic anemia (summary by Agarwal et al., 2010; Kitamura et al., 2011; Arima et al., 2011). This disorder encompasses Nakajo-Nishimura syndrome (NKJO); joint contractures, muscular atrophy, microcytic anemia, and panniculitis-induced lipodystrophy (JMP syndrome); and chronic atypical neutrophilic dermatosis with lipodystrophy and elevated temperature syndrome (CANDLE). Among Japanese patients, this disorder is best described as Nakajo-Nishimura syndrome, since both Nakajo (1939) and Nishimura et al. (1950) contributed to the original phenotypic descriptions. Genetic Heterogeneity of Proteasome-Associated Autoinflammatory Syndrome See also PRAAS2 (618048), caused by mutation in the POMP gene (613386) on chromosome 13q12; PRAAS3 (617591), caused by mutation in the PSMB4 gene (602177) on chromosome 1q21; PRAAS4 (619183), caused by mutation in the PSMG2 gene (609702) on chromosome 18p11; and PRAAS5 (619175), caused by mutation in the PSMB10 gene (176847) on chromosome 16q22.
Proteasome-associated autoinflammatory syndrome 3
MedGen UID:
1648456
Concept ID:
C4747850
Disease or Syndrome
Proteasome-associated autoinflammatory syndrome-3 is an autosomal recessive syndrome with onset in early infancy. Affected individuals present with nodular dermatitis, recurrent fever, myositis, panniculitis-induced lipodystrophy, lymphadenopathy, and dysregulation of the immune response, particularly associated with abnormal type I interferon-induced gene expression patterns. Additional features are highly variable, but may include joint contractures, hepatosplenomegaly, anemia, thrombocytopenia, recurrent infections, autoantibodies, and hypergammaglobulinemia. Some patients may have intracranial calcifications (summary by Brehm et al., 2015). For a discussion of genetic heterogeneity of PRAAS, see PRAAS1 (256040).
Proteasome-associated autoinflammatory syndrome 2
MedGen UID:
1648482
Concept ID:
C4747989
Disease or Syndrome
Proteasome-associated autoinflammatory syndrome-2 (PRAAS2) is an autosomal dominant disorder with onset in early infancy. Affected individuals develop severe inflammatory neutrophilic dermatitis, autoimmunity, and variable immunodeficiency (summary by Poli et al., 2018). For a discussion of genetic heterogeneity of PRAAS, see PRAAS1 (256040).
PLIN1-related familial partial lipodystrophy
MedGen UID:
1675945
Concept ID:
C5191005
Disease or Syndrome
Familial partial lipodystrophy type 4 is an autosomal dominant metabolic disorder characterized by childhood or young adult onset of loss of subcutaneous adipose tissue primarily affecting the lower limbs, insulin-resistant diabetes mellitus, hypertriglyceridemia, and hypertension (summary by Gandotra et al., 2011). Other features may include hepatic steatosis, acanthosis nigricans, polycystic ovary syndrome, and renal disease (summary by Chen et al., 2018). For a general phenotypic description and a discussion of genetic heterogeneity of familial partial lipodystrophy (FPLD), see 151660.
Neurodevelopmental disorder with seizures, hypotonia, and brain imaging abnormalities
MedGen UID:
1708579
Concept ID:
C5394517
Disease or Syndrome
Neurodevelopmental disorder with seizures, hypotonia, and brain imaging abnormalities (NEDSHBA) is an autosomal recessive neurodevelopmental disorder characterized by global developmental delay, severe to profound intellectual impairment, early-onset refractory seizures, hypotonia, failure to thrive, and progressive microcephaly. Brain imaging shows cerebral atrophy, thin corpus callosum, and myelination defects. Death in childhood may occur (summary by Marafi et al., 2020).
Mandibuloacral dysplasia with type A lipodystrophy
MedGen UID:
1757618
Concept ID:
C5399785
Disease or Syndrome
Mandibuloacral dysplasia with type A lipodystrophy (MADA) is an autosomal recessive disorder characterized by growth retardation, craniofacial anomalies with mandibular hypoplasia, skeletal abnormalities with progressive osteolysis of the distal phalanges and clavicles, and pigmentary skin changes. The lipodystrophy is characterized by a marked acral loss of fatty tissue with normal or increased fatty tissue in the neck and trunk. Some patients may show progeroid features. Metabolic complications can arise due to insulin resistance and diabetes (Young et al., 1971; Simha and Garg, 2002; summary by Garavelli et al., 2009). See also MAD type B (MADB; 608612), which is caused by mutation in the ZMPSTE24 gene (606480).
Cerebellar hypoplasia-intellectual disability-congenital microcephaly-dystonia-anemia-growth retardation syndrome
MedGen UID:
1780242
Concept ID:
C5543287
Disease or Syndrome
CIMDAG syndrome (CIMDAG) is a multisystemic disorder characterized by severely impaired psychomotor development and hematologic abnormalities apparent from early infancy. Affected individuals show poor overall growth with microcephaly, impaired intellectual development, poor or absent speech, poor eye contact, and motor problems, such as inability to walk, hypotonia, and spasticity. Brain imaging typically shows cerebral and cerebellar atrophy, thin corpus callosum, and delayed myelination. The associated hematologic abnormalities are variable, but are mostly consistent with congenital dyserythropoietic anemia (CDA) (summary by Rodger et al., 2020 and Seu et al., 2020).
Autoinflammatory-pancytopenia syndrome due to DNASE2 deficiency
MedGen UID:
1803642
Concept ID:
C5676977
Disease or Syndrome
Autoinflammatory-pancytopenia syndrome (AIPCS) is an autosomal recessive disorder characterized by severe anemia and thrombocytopenia apparent from early infancy, hepatosplenomegaly, and recurrent fevers associated with a hyperinflammatory state. Additional systemic features may include chronic diarrhea, proteinuria with renal disease, liver fibrosis with elevated liver enzymes, deforming arthropathy, and vasculitic skin lesions. Some patients may have motor delay or learning difficulties associated with subcortical white matter lesions on brain imaging. Laboratory studies show increased levels of proinflammatory cytokines and increased expression of interferon-stimulated genes (ISGs), consistent with a type I interferonopathy (Rodero et al., 2017). Treatment with a JAK (see 147795) inhibitor (baricitinib) may be effective (Hong et al., 2020).

Professional guidelines

PubMed

Araújo-Vilar D, Santini F
J Endocrinol Invest 2019 Jan;42(1):61-73. Epub 2018 Apr 27 doi: 10.1007/s40618-018-0887-z. PMID: 29704234Free PMC Article
Pérez Atamoros FM, Alcalá Pérez D, Asz Sigall D, Ávila Romay AA, Barba Gastelum JA, de la Peña Salcedo JA, Escalante Salgado PE, Gallardo Palacios GJ, Guerrero-Gonzalez GA, Morales De la Cerda R, Ponce Olivera RM, Rossano Soriano F, Solís Tinoco E, Welsh Hernández EC
J Cosmet Dermatol 2018 Dec;17(6):977-983. Epub 2018 Apr 30 doi: 10.1111/jocd.12555. PMID: 29707877
Brown RJ, Araujo-Vilar D, Cheung PT, Dunger D, Garg A, Jack M, Mungai L, Oral EA, Patni N, Rother KI, von Schnurbein J, Sorkina E, Stanley T, Vigouroux C, Wabitsch M, Williams R, Yorifuji T
J Clin Endocrinol Metab 2016 Dec;101(12):4500-4511. Epub 2016 Oct 6 doi: 10.1210/jc.2016-2466. PMID: 27710244Free PMC Article

Recent clinical studies

Etiology

Patni N, Garg A
Curr Diab Rep 2022 Sep;22(9):461-470. Epub 2022 Jul 11 doi: 10.1007/s11892-022-01485-w. PMID: 35821558Free PMC Article
Mainieri F, Chiarelli F
Horm Res Paediatr 2022;95(4):305-320. Epub 2022 Feb 21 doi: 10.1159/000522620. PMID: 35189617
Sorkina E, Chichkova V
Presse Med 2021 Nov;50(3):104075. Epub 2021 Sep 22 doi: 10.1016/j.lpm.2021.104075. PMID: 34562560
Brown RJ, Araujo-Vilar D, Cheung PT, Dunger D, Garg A, Jack M, Mungai L, Oral EA, Patni N, Rother KI, von Schnurbein J, Sorkina E, Stanley T, Vigouroux C, Wabitsch M, Williams R, Yorifuji T
J Clin Endocrinol Metab 2016 Dec;101(12):4500-4511. Epub 2016 Oct 6 doi: 10.1210/jc.2016-2466. PMID: 27710244Free PMC Article
Freitas P, Carvalho D
Panminerva Med 2013 Sep;55(3):253-68. PMID: 24088799

Diagnosis

Patni N, Garg A
Curr Diab Rep 2022 Sep;22(9):461-470. Epub 2022 Jul 11 doi: 10.1007/s11892-022-01485-w. PMID: 35821558Free PMC Article
Mainieri F, Chiarelli F
Horm Res Paediatr 2022;95(4):305-320. Epub 2022 Feb 21 doi: 10.1159/000522620. PMID: 35189617
Araújo-Vilar D, Santini F
J Endocrinol Invest 2019 Jan;42(1):61-73. Epub 2018 Apr 27 doi: 10.1007/s40618-018-0887-z. PMID: 29704234Free PMC Article
Guillín-Amarelle C, Fernández-Pombo A, Sánchez-Iglesias S, Araújo-Vilar D
Nucleus 2018 Jan 1;9(1):249-260. doi: 10.1080/19491034.2018.1454167. PMID: 29557732Free PMC Article
Brown RJ, Araujo-Vilar D, Cheung PT, Dunger D, Garg A, Jack M, Mungai L, Oral EA, Patni N, Rother KI, von Schnurbein J, Sorkina E, Stanley T, Vigouroux C, Wabitsch M, Williams R, Yorifuji T
J Clin Endocrinol Metab 2016 Dec;101(12):4500-4511. Epub 2016 Oct 6 doi: 10.1210/jc.2016-2466. PMID: 27710244Free PMC Article

Therapy

Mainieri F, Tagi VM, Chiarelli F
Front Endocrinol (Lausanne) 2022;13:879979. Epub 2022 May 4 doi: 10.3389/fendo.2022.879979. PMID: 35600578Free PMC Article
Siqueira LR, Cunha GHD, Galvão MTG, Fontenele MSM, Fechine FV, Medeiros MS, Moreira LA
AIDS Care 2022 Aug;34(8):1031-1040. Epub 2021 Jun 4 doi: 10.1080/09540121.2021.1936442. PMID: 34082636
Akinci B, Meral R, Oral EA
Curr Diab Rep 2018 Oct 29;18(12):139. doi: 10.1007/s11892-018-1100-7. PMID: 30370487
Tchang BG, Shukla AP, Aronne LJ
Expert Opin Biol Ther 2015 Jul;15(7):1061-75. doi: 10.1517/14712598.2015.1052789. PMID: 26063386
Chou K, Perry CM
Drugs 2013 Jun;73(9):989-97. doi: 10.1007/s40265-013-0074-7. PMID: 23740412

Prognosis

Fernández-Pombo A, Sánchez-Iglesias S, Castro-Pais AI, Ginzo-Villamayor MJ, Cobelo-Gómez S, Prado-Moraña T, Díaz-López EJ, Casanueva FF, Loidi L, Araújo-Vilar D
Front Endocrinol (Lausanne) 2023;14:1250203. Epub 2023 Nov 16 doi: 10.3389/fendo.2023.1250203. PMID: 38034001Free PMC Article
Huang J, Yeung AM, Kerr D, Gentile S, Heinemann L, Al-Sofiani ME, Joseph JI, Seley JJ, Klonoff DC
Endocr Pract 2023 Aug;29(8):670-677. Epub 2023 Apr 23 doi: 10.1016/j.eprac.2023.04.006. PMID: 37098370
Madsen MS, Broekema MF, Madsen MR, Koppen A, Borgman A, Gräwe C, Thomsen EGK, Westland D, Kranendonk MEG, Koerkamp MG, Hamers N, Bonvin AMJJ, Pittol JMR, Natarajan KN, Kersten S, Holstege FCP, Monajemi H, van Mil SWC, Vermeulen M, Kragelund BB, Cassiman D, Mandrup S, Kalkhoven E
Nat Commun 2022 Nov 19;13(1):7090. doi: 10.1038/s41467-022-34766-9. PMID: 36402763Free PMC Article
Huang L, Shi H, Zhou X
Endocr Pract 2017 Jul;23(7):857-862. Epub 2017 Apr 27 doi: 10.4158/EP161686.RA. PMID: 28448764
Freitas P, Carvalho D
Panminerva Med 2013 Sep;55(3):253-68. PMID: 24088799

Clinical prediction guides

Shamsudeen I, Hegele RA
Curr Opin Endocrinol Diabetes Obes 2022 Apr 1;29(2):152-160. doi: 10.1097/MED.0000000000000695. PMID: 34839327
Kahn CR, Wang G, Lee KY
J Clin Invest 2019 Oct 1;129(10):3990-4000. doi: 10.1172/JCI129187. PMID: 31573548Free PMC Article
Akinci B, Meral R, Oral EA
Curr Diab Rep 2018 Oct 29;18(12):139. doi: 10.1007/s11892-018-1100-7. PMID: 30370487
Gupta N, Asi N, Farah W, Almasri J, Barrionuevo P, Alsawas M, Wang Z, Haymond MW, Brown RJ, Murad MH
J Clin Endocrinol Metab 2017 Feb 1;102(2):363-374. doi: 10.1210/jc.2016-2271. PMID: 27967300Free PMC Article
Tsoukas MA, Farr OM, Mantzoros CS
Metabolism 2015 Jan;64(1):47-59. Epub 2014 Aug 12 doi: 10.1016/j.metabol.2014.07.017. PMID: 25267014

Recent systematic reviews

Rodríguez-García C, Sánchez-Quesada C, Martínez-Ramírez MJ, Gaforio JJ
Nutrients 2022 Nov 10;14(22) doi: 10.3390/nu14224742. PMID: 36432429Free PMC Article
Resende L, Noites A, Amorim M
J Cosmet Dermatol 2022 Oct;21(10):4122-4132. Epub 2022 Aug 9 doi: 10.1111/jocd.15265. PMID: 35869825
Cetin Gedik K, Lamot L, Romano M, Demirkaya E, Piskin D, Torreggiani S, Adang LA, Armangue T, Barchus K, Cordova DR, Crow YJ, Dale RC, Durrant KL, Eleftheriou D, Fazzi EM, Gattorno M, Gavazzi F, Hanson EP, Lee-Kirsch MA, Montealegre Sanchez GA, Neven B, Orcesi S, Ozen S, Poli MC, Schumacher E, Tonduti D, Uss K, Aletaha D, Feldman BM, Vanderver A, Brogan PA, Goldbach-Mansky R
Ann Rheum Dis 2022 May;81(5):601-613. Epub 2022 Jan 27 doi: 10.1136/annrheumdis-2021-221814. PMID: 35086813Free PMC Article
Caprio M, Infante M, Moriconi E, Armani A, Fabbri A, Mantovani G, Mariani S, Lubrano C, Poggiogalle E, Migliaccio S, Donini LM, Basciani S, Cignarelli A, Conte E, Ceccarini G, Bogazzi F, Cimino L, Condorelli RA, La Vignera S, Calogero AE, Gambineri A, Vignozzi L, Prodam F, Aimaretti G, Linsalata G, Buralli S, Monzani F, Aversa A, Vettor R, Santini F, Vitti P, Gnessi L, Pagotto U, Giorgino F, Colao A, Lenzi A; Cardiovascular Endocrinology Club of the Italian Society of Endocrinology
J Endocrinol Invest 2019 Nov;42(11):1365-1386. Epub 2019 May 20 doi: 10.1007/s40618-019-01061-2. PMID: 31111407
Gupta N, Asi N, Farah W, Almasri J, Barrionuevo P, Alsawas M, Wang Z, Haymond MW, Brown RJ, Murad MH
J Clin Endocrinol Metab 2017 Feb 1;102(2):363-374. doi: 10.1210/jc.2016-2271. PMID: 27967300Free PMC Article

Supplemental Content

Table of contents

    Clinical resources

    Practice guidelines

    • PubMed
      See practice and clinical guidelines in PubMed. The search results may include broader topics and may not capture all published guidelines. See the FAQ for details.
    • Bookshelf
      See practice and clinical guidelines in NCBI Bookshelf. The search results may include broader topics and may not capture all published guidelines. See the FAQ for details.

    Consumer resources

    Recent activity

    Your browsing activity is empty.

    Activity recording is turned off.

    Turn recording back on

    See more...