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Decreased circulating free T3

MedGen UID:
1687899
Concept ID:
C5139195
Finding
Synonym: Decreased circulating free triiodothyronine
 
HPO: HP:0032210

Definition

A reduced concentration of free 3,3',5-triiodo-L-thyronine in the blood circulation. [from HPO]

Term Hierarchy

CClinical test,  RResearch test,  OOMIM,  GGeneReviews,  VClinVar  
  • CROGVDecreased circulating free T3

Conditions with this feature

Hypothyroidism, congenital, nongoitrous, 5
MedGen UID:
388687
Concept ID:
C2673630
Disease or Syndrome
Any hypothyroidism, congenital, nongoitrous in which the cause of the disease is a mutation in the NKX2-5 gene.
Pituitary hormone deficiency, combined, 1
MedGen UID:
414421
Concept ID:
C2751608
Disease or Syndrome
Combined pituitary hormone deficiency (CPHD) in man denotes impaired production of growth hormone (GH; 139250) and one or more of the other 5 anterior pituitary hormones. Mutations of the POU1F1 gene in the human and Pit1 in the mouse are responsible for pleiotropic deficiencies of GH, prolactin (PRL; 176760), and thyroid-stimulating hormone (TSH; see 188540), while the production of adrenocorticotrophic hormone (ACTH; see 176830), luteinizing hormone (LH; 152780), and follicle-stimulating hormone (FSH; 136530) are preserved (Wu et al., 1998). Some patients exhibit only GH deficiency, although approximately 50% of isolated GH deficiency progresses to CPHD (Gergics et al., 2021). In infancy severe growth deficiency from birth as well as distinctive facial features with prominent forehead, marked midfacial hypoplasia with depressed nasal bridge, deep-set eyes, and a short nose with anteverted nostrils and hypoplastic pituitary gland by MRI examination can be seen (Aarskog et al., 1997). Some cases present with severe mental retardation along with short stature (Radovick et al., 1992). Reviews Voss and Rosenfeld (1992) reviewed the development and differentiation of the 5 pituitary cell types: galactotropes, gonadotropes, corticotropes, thyrotropes, and somatotropes. As indicated by the mutations in PIT1 described later, combined pituitary hormone deficiency can have either autosomal dominant or autosomal recessive inheritance, depending on the part of the PIT1 molecule affected by the mutation. Some mutations have a dominant-negative effect. Genetic Heterogeneity of Combined Pituitary Hormone Deficiency CPHD2 (262600), associated with hypogonadism, is caused by mutation in the PROP1 gene (601538). CPHD3 (221750), which is associated with rigid cervical spine and variable sensorineural deafness, is caused by mutation in the LHX3 gene (600577). CPHD4 (262700) is caused by mutation in the LHX4 gene (602146). CPHD5 (see septooptic dysplasia, 182230) is caused by mutation in the HESX1 gene (601802). CPHD6 (613986) is caused by mutation in the OTX2 gene (600037). CPHD7 (618160) is caused by mutation in the RNPC3 gene (618016).
Deeah syndrome
MedGen UID:
1756624
Concept ID:
C5436579
Disease or Syndrome
DEEAH syndrome is an autosomal recessive multisystemic disorder with onset in early infancy. Affected individuals usually present in the perinatal period with respiratory insufficiency, apneic episodes, and generalized hypotonia. The patients have failure to thrive and severely impaired global development with poor acquisition of motor, cognitive, and language skills. Other common features include endocrine, pancreatic exocrine, and autonomic dysfunction, as well as hematologic disturbances, mainly low hemoglobin. Patients also have dysmorphic and myopathic facial features. Additional more variable features include seizures, undescended testes, and distal skeletal anomalies. Death in early childhood may occur (summary by Schneeberger et al., 2020).
Thyroid hormone metabolism, abnormal 1
MedGen UID:
1801974
Concept ID:
C5676891
Finding
Abnormal thyroid hormone metabolism-1 (THMA1) is characterized by multiorgan defects, including abnormal thyroid hormone metabolism, myopathy, hearing loss, and male infertility (summary by Catli et al., 2018). Genetic Heterogeneity of Abnormal Thyroid Hormone Metabolism THMA2 (619855) is caused by mutation in the DIO1 gene (147892) on chromosome 1p32. THMA3 (620198) is caused by mutation in the TRU-TCA1-1 gene (165060) on chromosome 19q13.

Professional guidelines

PubMed

Persani L, Preziati D, Matthews CH, Sartorio A, Chatterjee VK, Beck-Peccoz P
Clin Endocrinol (Oxf) 1997 Aug;47(2):207-14. doi: 10.1046/j.1365-2265.1997.2351057.x. PMID: 9302396
Noguchi K, Suzuki H, Nakahata M, Kurosawa S, Nakagawa S
Clin Endocrinol (Oxf) 1986 Sep;25(3):293-301. doi: 10.1111/j.1365-2265.1986.tb01694.x. PMID: 3791669

Recent clinical studies

Etiology

Rinaldi S, Dossus L, Keski-Rahkonen P, Kiss A, Navionis AS, Biessy C, Travis R, Weiderpass E, Romieu I, Eriksen AK, Tjonneland A, Kvaskoff M, Canonico M, Truong T, Katzke V, Kaaks R, Catalano A, Panico S, Masala G, Tumino R, Lukic M, Olsen KS, Zamora-Ros R, Santiuste C, Aizpurua Atxega A, Guevara M, Rodriguez-Barranco M, Sandstrom M, Hennings J, Almquist M, Aglago Kouassivi E, Christakoudi S, Gunter M, Franceschi S
Int J Cancer 2024 Jun 15;154(12):2064-2074. Epub 2024 Feb 15 doi: 10.1002/ijc.34872. PMID: 38357914
Fu L, Long W, Liu T, Chen Y, Wu S, Li D, Liu K, Gao Y, Luo X
BMC Pediatr 2022 Nov 29;22(1):687. doi: 10.1186/s12887-022-03756-7. PMID: 36447149Free PMC Article
Magbanua MJM, Swigart LB, Wu HT, Hirst GL, Yau C, Wolf DM, Tin A, Salari R, Shchegrova S, Pawar H, Delson AL, DeMichele A, Liu MC, Chien AJ, Tripathy D, Asare S, Lin CJ, Billings P, Aleshin A, Sethi H, Louie M, Zimmermann B, Esserman LJ, van 't Veer LJ
Ann Oncol 2021 Feb;32(2):229-239. Epub 2020 Nov 21 doi: 10.1016/j.annonc.2020.11.007. PMID: 33232761Free PMC Article
Lefèvre AC, Kronborg C, Sørensen BS, Krag SRP, Serup-Hansen E, Spindler KG
Radiother Oncol 2020 Sep;150:211-216. Epub 2020 Jul 3 doi: 10.1016/j.radonc.2020.06.045. PMID: 32622778
Blouin K, Boivin A, Tchernof A
J Steroid Biochem Mol Biol 2008 Feb;108(3-5):272-80. Epub 2007 Sep 7 doi: 10.1016/j.jsbmb.2007.09.001. PMID: 17945484

Diagnosis

Gülses A, Wagner J, Torst P, Wieker H, Schulte DM, Spille DC, Wiltfang J, Spille J
J Craniomaxillofac Surg 2022 Dec;50(12):910-914. Epub 2022 Dec 28 doi: 10.1016/j.jcms.2022.12.005. PMID: 36593129
Ayala-Yáñez R, Villapando-Basaldúa A, Halffter-Mijares A, Morgenstern-Kaplan D, Ruíz-Cabrera IL, Herrera-Fernández G
J Perinat Med 2022 Oct 26;50(8):1135-1141. Epub 2022 May 10 doi: 10.1515/jpm-2021-0522. PMID: 35534885
Li L, Spranger L, Stobäus N, Beer F, Decker AM, Wernicke C, Brachs S, Brachs M, Spranger J, Mai K
Nutr Diabetes 2021 Oct 5;11(1):31. doi: 10.1038/s41387-021-00174-z. PMID: 34611132Free PMC Article
Tamai H, Mori K, Matsubayashi S, Kiyohara K, Nakagawa T, Okimura MC, Walter RM Jr, Kumagai LF, Nagataki S
Psychother Psychosom 1986;46(3):127-31. doi: 10.1159/000287973. PMID: 3114819
Surks MI
Ophthalmology 1981 Jun;88(6):476-8. doi: 10.1016/s0161-6420(81)35000-3. PMID: 6791080

Therapy

Gülses A, Wagner J, Torst P, Wieker H, Schulte DM, Spille DC, Wiltfang J, Spille J
J Craniomaxillofac Surg 2022 Dec;50(12):910-914. Epub 2022 Dec 28 doi: 10.1016/j.jcms.2022.12.005. PMID: 36593129
Aker AM, Ferguson KK, Rosario ZY, Mukherjee B, Alshawabkeh AN, Calafat AM, Cordero JF, Meeker JD
Environ Health 2019 Apr 2;18(1):28. doi: 10.1186/s12940-019-0459-5. PMID: 30940137Free PMC Article
Piccoli C, Cremonese C, Koifman RJ, Koifman S, Freire C
Environ Res 2016 Nov;151:389-398. Epub 2016 Aug 16 doi: 10.1016/j.envres.2016.08.011. PMID: 27540871
Cooper DK, Novitzky D, Wicomb WN, Basker M, Rosendale JD, Myron Kauffman H
Front Biosci (Landmark Ed) 2009 Jan 1;14(10):3750-70. doi: 10.2741/3486. PMID: 19273308
Hagag P, Nissenbaum H, Weiss M
J Endocrinol Invest 1998 Dec;21(11):725-31. doi: 10.1007/BF03348036. PMID: 9972670

Prognosis

Fu L, Long W, Liu T, Chen Y, Wu S, Li D, Liu K, Gao Y, Luo X
BMC Pediatr 2022 Nov 29;22(1):687. doi: 10.1186/s12887-022-03756-7. PMID: 36447149Free PMC Article
Li L, Spranger L, Stobäus N, Beer F, Decker AM, Wernicke C, Brachs S, Brachs M, Spranger J, Mai K
Nutr Diabetes 2021 Oct 5;11(1):31. doi: 10.1038/s41387-021-00174-z. PMID: 34611132Free PMC Article
Magbanua MJM, Swigart LB, Wu HT, Hirst GL, Yau C, Wolf DM, Tin A, Salari R, Shchegrova S, Pawar H, Delson AL, DeMichele A, Liu MC, Chien AJ, Tripathy D, Asare S, Lin CJ, Billings P, Aleshin A, Sethi H, Louie M, Zimmermann B, Esserman LJ, van 't Veer LJ
Ann Oncol 2021 Feb;32(2):229-239. Epub 2020 Nov 21 doi: 10.1016/j.annonc.2020.11.007. PMID: 33232761Free PMC Article
Fouladiun M, Körner U, Bosaeus I, Daneryd P, Hyltander A, Lundholm KG
Cancer 2005 May 15;103(10):2189-98. doi: 10.1002/cncr.21013. PMID: 15822132
Connolly CM, Barrow RE, Chinkes DL, Martinez JA, Herndon DN
Shock 2003 May;19(5):399-403. doi: 10.1097/01.shk.0000051758.08171.bc. PMID: 12744480

Clinical prediction guides

Rinaldi S, Dossus L, Keski-Rahkonen P, Kiss A, Navionis AS, Biessy C, Travis R, Weiderpass E, Romieu I, Eriksen AK, Tjonneland A, Kvaskoff M, Canonico M, Truong T, Katzke V, Kaaks R, Catalano A, Panico S, Masala G, Tumino R, Lukic M, Olsen KS, Zamora-Ros R, Santiuste C, Aizpurua Atxega A, Guevara M, Rodriguez-Barranco M, Sandstrom M, Hennings J, Almquist M, Aglago Kouassivi E, Christakoudi S, Gunter M, Franceschi S
Int J Cancer 2024 Jun 15;154(12):2064-2074. Epub 2024 Feb 15 doi: 10.1002/ijc.34872. PMID: 38357914
Fu L, Long W, Liu T, Chen Y, Wu S, Li D, Liu K, Gao Y, Luo X
BMC Pediatr 2022 Nov 29;22(1):687. doi: 10.1186/s12887-022-03756-7. PMID: 36447149Free PMC Article
Magbanua MJM, Swigart LB, Wu HT, Hirst GL, Yau C, Wolf DM, Tin A, Salari R, Shchegrova S, Pawar H, Delson AL, DeMichele A, Liu MC, Chien AJ, Tripathy D, Asare S, Lin CJ, Billings P, Aleshin A, Sethi H, Louie M, Zimmermann B, Esserman LJ, van 't Veer LJ
Ann Oncol 2021 Feb;32(2):229-239. Epub 2020 Nov 21 doi: 10.1016/j.annonc.2020.11.007. PMID: 33232761Free PMC Article
Lefèvre AC, Kronborg C, Sørensen BS, Krag SRP, Serup-Hansen E, Spindler KG
Radiother Oncol 2020 Sep;150:211-216. Epub 2020 Jul 3 doi: 10.1016/j.radonc.2020.06.045. PMID: 32622778
Blouin K, Boivin A, Tchernof A
J Steroid Biochem Mol Biol 2008 Feb;108(3-5):272-80. Epub 2007 Sep 7 doi: 10.1016/j.jsbmb.2007.09.001. PMID: 17945484

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