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Angle-closure glaucoma

MedGen UID:
6610
Concept ID:
C0017605
Disease or Syndrome
Synonyms: Angle Closure Glaucoma; Angle Closure Glaucomas; Angle-Closure Glaucoma; Angle-Closure Glaucomas; Closed-Angle Glaucoma; Closed-Angle Glaucomas; Glaucoma, Angle Closure; Glaucoma, Angle-Closure; Glaucoma, Closed Angle; Glaucoma, Closed-Angle; Glaucoma, Narrow Angle; Glaucoma, Narrow-Angle; Glaucoma, Uncompensated; Glaucoma, Uncompensative; Glaucomas, Angle Closure; Glaucomas, Angle-Closure; Glaucomas, Closed-Angle; Glaucomas, Narrow-Angle; Glaucomas, Uncompensated; Glaucomas, Uncompensative; Narrow-Angle Glaucoma; Narrow-Angle Glaucomas; Uncompensated Glaucoma; Uncompensated Glaucomas; Uncompensative Glaucoma; Uncompensative Glaucomas
SNOMED CT: Angle-closure glaucoma (392291006); ACG - Angle closure glaucoma (392291006); Narrow-angle glaucoma (392291006); Narrow angle glaucoma (392291006); Narrow cleft glaucoma (33647009)
 
HPO: HP:0012109
Monarch Initiative: MONDO:0001744

Definition

A type of glaucomatous optic neuropathy in an eye that has evidence of angle closure (i.e. significant iridotrabecular contact). [from HPO]

Term Hierarchy

CClinical test,  RResearch test,  OOMIM,  GGeneReviews,  VClinVar  

Conditions with this feature

Stickler syndrome type 2
MedGen UID:
347615
Concept ID:
C1858084
Disease or Syndrome
Stickler syndrome is a connective tissue disorder that can include ocular findings of myopia, cataract, and retinal detachment; hearing loss that is both conductive and sensorineural; midfacial underdevelopment and cleft palate (either alone or as part of the Robin sequence); and mild spondyloepiphyseal dysplasia and/or precocious arthritis. Variable phenotypic expression of Stickler syndrome occurs both within and among families; interfamilial variability is in part explained by locus and allelic heterogeneity.
Nanophthalmos 4
MedGen UID:
863285
Concept ID:
C4014848
Disease or Syndrome
Nanophthalmos is characterized by axial lengths of the ocular globe that are more than 2 SDs smaller than the normal range, or less than 20 mm in adults, with a cornea and lens that are typically of normal size, associated with severe hyperopia (farsightedness) of +7.00 diopters or more. The smaller dimensions of the anterior chamber depth cause the iridocorneal angle to be typically narrow. Abnormal thickening of the scleral connective tissue is often observed (summary by Awadalla et al., 2014). For a discussion of genetic heterogeneity of nanophthalmos, see NNO1 (600165).
Glaucoma, primary closed-angle
MedGen UID:
1712967
Concept ID:
C5394374
Disease or Syndrome
Primary closed-angle glaucoma (GLCC) is characterized by age-related variation in the degree of iridocorneal angle closure and its sequelae, with patients in the first 3 decades of life showing a normal eye exam, whereas older patients progressively show more evidence of angle closure and glaucomatous damage, including optic nerve head changes and visual field defects (Suri et al., 2018).

Professional guidelines

PubMed

Stein JD, Khawaja AP, Weizer JS
JAMA 2021 Jan 12;325(2):164-174. doi: 10.1001/jama.2020.21899. PMID: 33433580
Filler L, Akhter M, Nimlos P
Semin Neurol 2019 Feb;39(1):20-26. Epub 2019 Feb 11 doi: 10.1055/s-0038-1677023. PMID: 30743289
Weinreb RN, Aung T, Medeiros FA
JAMA 2014 May 14;311(18):1901-11. doi: 10.1001/jama.2014.3192. PMID: 24825645Free PMC Article

Recent clinical studies

Etiology

Flores-Sánchez BC, Tatham AJ
Br J Hosp Med (Lond) 2019 Dec 2;80(12):C174-C179. doi: 10.12968/hmed.2019.80.12.C174. PMID: 31822188
Gupta D, Chen PP
Am Fam Physician 2016 Apr 15;93(8):668-74. PMID: 27175839
Mantravadi AV, Vadhar N
Prim Care 2015 Sep;42(3):437-49. Epub 2015 Jul 29 doi: 10.1016/j.pop.2015.05.008. PMID: 26319348
Patel K, Patel S
Dis Mon 2014 Jun;60(6):254-62. doi: 10.1016/j.disamonth.2014.03.005. PMID: 24906670
Weinreb RN, Aung T, Medeiros FA
JAMA 2014 May 14;311(18):1901-11. doi: 10.1001/jama.2014.3192. PMID: 24825645Free PMC Article

Diagnosis

Urbonavičiūtė D, Buteikienė D, Janulevičienė I
Medicina (Kaunas) 2022 Dec 18;58(12) doi: 10.3390/medicina58121870. PMID: 36557072Free PMC Article
Flores-Sánchez BC, Tatham AJ
Br J Hosp Med (Lond) 2019 Dec 2;80(12):C174-C179. doi: 10.12968/hmed.2019.80.12.C174. PMID: 31822188
Sun X, Dai Y, Chen Y, Yu DY, Cringle SJ, Chen J, Kong X, Wang X, Jiang C
Prog Retin Eye Res 2017 Mar;57:26-45. Epub 2016 Dec 28 doi: 10.1016/j.preteyeres.2016.12.003. PMID: 28039061
Gupta D, Chen PP
Am Fam Physician 2016 Apr 15;93(8):668-74. PMID: 27175839
Weinreb RN, Aung T, Medeiros FA
JAMA 2014 May 14;311(18):1901-11. doi: 10.1001/jama.2014.3192. PMID: 24825645Free PMC Article

Therapy

Yuan Y, Wang W, Xiong R, Zhang J, Li C, Yang S, Friedman DS, Foster PJ, He M
Ophthalmology 2023 Aug;130(8):786-794. Epub 2023 Apr 6 doi: 10.1016/j.ophtha.2023.03.024. PMID: 37030454
He M, Jiang Y, Huang S, Chang DS, Munoz B, Aung T, Foster PJ, Friedman DS
Lancet 2019 Apr 20;393(10181):1609-1618. Epub 2019 Mar 14 doi: 10.1016/S0140-6736(18)32607-2. PMID: 30878226
Sihota R, Angmo D, Ramaswamy D, Dada T
Indian J Ophthalmol 2018 Apr;66(4):495-505. doi: 10.4103/ijo.IJO_1130_17. PMID: 29582808Free PMC Article
Gupta D, Chen PP
Am Fam Physician 2016 Apr 15;93(8):668-74. PMID: 27175839
Mantravadi AV, Vadhar N
Prim Care 2015 Sep;42(3):437-49. Epub 2015 Jul 29 doi: 10.1016/j.pop.2015.05.008. PMID: 26319348

Prognosis

Filippopoulos T, Danias J, Karmiris E, Mégevand GS, Rhee DJ, Gazzard G, Topouzis F, Xu B
Ophthalmol Glaucoma 2023 Nov-Dec;6(6):657-667. Epub 2023 Jun 13 doi: 10.1016/j.ogla.2023.06.004. PMID: 37321374
Yuan Y, Wang W, Xiong R, Zhang J, Li C, Yang S, Friedman DS, Foster PJ, He M
Ophthalmology 2023 Aug;130(8):786-794. Epub 2023 Apr 6 doi: 10.1016/j.ophtha.2023.03.024. PMID: 37030454
Sun X, Dai Y, Chen Y, Yu DY, Cringle SJ, Chen J, Kong X, Wang X, Jiang C
Prog Retin Eye Res 2017 Mar;57:26-45. Epub 2016 Dec 28 doi: 10.1016/j.preteyeres.2016.12.003. PMID: 28039061
Patel K, Patel S
Dis Mon 2014 Jun;60(6):254-62. doi: 10.1016/j.disamonth.2014.03.005. PMID: 24906670
Coleman AL, Brigatti L
Minerva Med 2001 Oct;92(5):365-79. PMID: 11675580

Clinical prediction guides

Alvarez-Guzman C, Valdez-Garcia JE, Ruiz-Lozano RE, Rodriguez-Garcia A, Navas-Villar CF, Hartleben-Matkin C, Pedroza-Seres M
Int Ophthalmol 2022 Dec;42(12):3913-3921. Epub 2022 Jul 5 doi: 10.1007/s10792-022-02412-4. PMID: 35789316
Singh K, Singh A, Bhattacharyya M
Int Ophthalmol 2021 May;41(5):1959-1964. Epub 2021 Feb 23 doi: 10.1007/s10792-021-01740-1. PMID: 33620668
Zukerman R, Harris A, Vercellin AV, Siesky B, Pasquale LR, Ciulla TA
Genes (Basel) 2020 Dec 31;12(1) doi: 10.3390/genes12010055. PMID: 33396423Free PMC Article
He M, Jiang Y, Huang S, Chang DS, Munoz B, Aung T, Foster PJ, Friedman DS
Lancet 2019 Apr 20;393(10181):1609-1618. Epub 2019 Mar 14 doi: 10.1016/S0140-6736(18)32607-2. PMID: 30878226
Melancia D, Abegão Pinto L, Marques-Neves C
Ophthalmic Res 2015;53(3):141-8. Epub 2015 Mar 7 doi: 10.1159/000377635. PMID: 25765255

Recent systematic reviews

Liang YJ, Wang YY, Rong SS, Chen ZJ, Chen SY, Tham JA, Chan PP, Yam JC, Wiggs JL, Pang CP, Tham CC, Chen LJ
JAMA Ophthalmol 2024 May 1;142(5):437-444. doi: 10.1001/jamaophthalmol.2024.0363. PMID: 38546604Free PMC Article
Wang Y, Dong XX, Hou XW, Pan CW
Optom Vis Sci 2023 Sep 1;100(9):606-613. Epub 2023 Sep 26 doi: 10.1097/OPX.0000000000002050. PMID: 37747945
Stefan C, Iliescu DA, Batras M, Timaru CM, De Simone A
Rom J Ophthalmol 2015 Jan-Mar;59(1):14-8. PMID: 27373109Free PMC Article
Tham YC, Li X, Wong TY, Quigley HA, Aung T, Cheng CY
Ophthalmology 2014 Nov;121(11):2081-90. Epub 2014 Jun 26 doi: 10.1016/j.ophtha.2014.05.013. PMID: 24974815
Shah R, Wormald RP
BMJ Clin Evid 2011 Jun 9;2011 PMID: 21658300Free PMC Article

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