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Photoreceptor layer loss on macular OCT

MedGen UID:
892581
Concept ID:
C4073079
Finding
HPO: HP:0030609

Definition

Loss of the outer nuclear layer (photoreceptor layer) as assessed by ocular coherence tomography. [from HPO]

Term Hierarchy

CClinical test,  RResearch test,  OOMIM,  GGeneReviews,  VClinVar  
  • CROGVPhotoreceptor layer loss on macular OCT

Conditions with this feature

Retinitis pigmentosa 32
MedGen UID:
322781
Concept ID:
C1835927
Disease or Syndrome
A retinitis pigmentosa that has material basis in variation in the chromosome region 1p21.3-p13.3.
Retinitis pigmentosa and erythrocytic microcytosis
MedGen UID:
934743
Concept ID:
C4310776
Disease or Syndrome
TRNT1 deficiency encompasses what was first thought to be two separate disorders, a severe disorder called sideroblastic anemia with B-cell immunodeficiency, periodic fevers, and developmental delay (SIFD) and a milder disorder called retinitis pigmentosa with erythrocytic microcytosis (RPEM), each named for its most common features. SIFD begins in infancy, and affected individuals usually do not survive past childhood. RPEM, on the other hand, is recognized in early adulthood, and the microcytosis usually does not cause any health problems. However, it has since been recognized that some individuals have a combination of features that fall between these two ends of the severity spectrum. All of these cases are now considered part of TRNT1 deficiency.\n\nFeatures that occur less commonly in people with TRNT1 deficiency include hearing loss caused by abnormalities of the inner ear (sensorineural hearing loss), recurrent seizures (epilepsy), and problems with the kidneys or heart.\n\nNeurological problems are also frequent in TRNT1 deficiency. Many affected individuals have delayed development of speech and motor skills, such as sitting, standing, and walking, and some have low muscle tone (hypotonia).\n\nEye abnormalities, often involving the light-sensing tissue at the back of the eye (the retina), can occur in people with TRNT1 deficiency. Some of these individuals have a condition called retinitis pigmentosa, in which the light-sensing cells of the retina gradually deteriorate. Eye problems in TRNT1 deficiency can lead to vision loss.\n\nIn addition, many individuals with TRNT1 deficiency have recurrent fevers that are not caused by an infection. These fever episodes are often one of the earliest recognized symptoms of TRNT1 deficiency, usually beginning in infancy. The fever episodes are typically accompanied by poor feeding, vomiting, and diarrhea, and can lead to hospitalization. In many affected individuals, the episodes occur regularly, arising approximately every 2 to 4 weeks and lasting 5 to 7 days, although the frequency can decrease with age.\n\nMany people with TRNT1 deficiency have an immune system disorder (immunodeficiency) that can lead to recurrent bacterial infections. Repeated infections can cause life-threatening damage to internal organs. The immunodeficiency is characterized by low numbers of immune system cells called B cells, which normally help fight infections by producing immune proteins called antibodies (or immunoglobulins). These proteins target foreign invaders such as bacteria and viruses and mark them for destruction. In many individuals with TRNT1 deficiency, the amount of immunoglobulins is also low (hypogammaglobulinemia).\n\nA common feature of TRNT1 deficiency is a blood condition called sideroblastic anemia, which is characterized by a shortage of red blood cells (anemia). In TRNT1 deficiency, the red blood cells that are present are unusually small (erythrocytic microcytosis). In addition, developing red blood cells in the bone marrow (erythroblasts) can have an abnormal buildup of iron that appears as a ring of blue staining in the cell after treatment in the lab with certain dyes. These abnormal cells are called ring sideroblasts.\n\nTRNT1 deficiency is a condition that affects many body systems. Its signs and symptoms can involve blood cells, the immune system, the eyes, and the nervous system. The severity of the signs and symptoms vary widely.
Hypotaurinemic retinal degeneration and cardiomyopathy
MedGen UID:
1779589
Concept ID:
C5542181
Disease or Syndrome
Hypotaurinemic retinal degeneration and cardiomyopathy (HTRDC) is an autosomal recessive disorder characterized by low plasma taurine, childhood-onset progressive retinal degeneration, and cardiomyopathy (Ansar et al., 2020).

Professional guidelines

PubMed

Ba-Abbad R, Robson AG, Mahroo OA, Wright G, Schiff E, Duignan ES, Michaelides M, Arno G, Webster AR
Eye (Lond) 2021 May;35(5):1482-1489. Epub 2020 Jul 17 doi: 10.1038/s41433-020-1045-3. PMID: 32681094Free PMC Article
Kita Y, Anraku A, Kita R, Goldberg I
Eur J Ophthalmol 2016 Mar-Apr;26(2):118-23. Epub 2015 Sep 16 doi: 10.5301/ejo.5000678. PMID: 26391163
Gemenetzi M, De Salvo G, Lotery AJ
Eye (Lond) 2010 Dec;24(12):1743-56. Epub 2010 Oct 8 doi: 10.1038/eye.2010.130. PMID: 20930852

Recent clinical studies

Etiology

Martins Melo I, Jhaveri A, Bansal A, Lee WW, Oquendo PL, Curcio CA, Muni RH
Invest Ophthalmol Vis Sci 2023 Oct 3;64(13):12. doi: 10.1167/iovs.64.13.12. PMID: 37815508Free PMC Article
Vogl WD, Riedl S, Mai J, Reiter GS, Lachinov D, Bogunović H, Schmidt-Erfurth U
Ophthalmol Retina 2023 Jan;7(1):4-13. Epub 2022 Aug 7 doi: 10.1016/j.oret.2022.08.003. PMID: 35948209
Vessey KA, Jobling AI, Tran MX, Wang AY, Greferath U, Fletcher EL
Autophagy 2022 Oct;18(10):2368-2384. Epub 2022 Feb 23 doi: 10.1080/15548627.2022.2034131. PMID: 35196199Free PMC Article
Khan KN, Kasilian M, Mahroo OAR, Tanna P, Kalitzeos A, Robson AG, Tsunoda K, Iwata T, Moore AT, Fujinami K, Michaelides M
Ophthalmology 2018 May;125(5):735-746. Epub 2018 Jan 6 doi: 10.1016/j.ophtha.2017.11.020. PMID: 29310964Free PMC Article
Arcinue CA, Bartsch DU, El-Emam SY, Ma F, Doede A, Sharpsten L, Gomez ML, Freeman WR
PLoS One 2015;10(8):e0132996. Epub 2015 Aug 5 doi: 10.1371/journal.pone.0132996. PMID: 26244973Free PMC Article

Diagnosis

Vujosevic S, Loewenstein A, O'Toole L, Schmidt-Erfurth UM, Zur D, Chakravarthy U
Br J Ophthalmol 2024 May 21;108(6):773-778. doi: 10.1136/bjo-2023-324246. PMID: 38290804
Martins Melo I, Jhaveri A, Bansal A, Lee WW, Oquendo PL, Curcio CA, Muni RH
Invest Ophthalmol Vis Sci 2023 Oct 3;64(13):12. doi: 10.1167/iovs.64.13.12. PMID: 37815508Free PMC Article
Vogl WD, Riedl S, Mai J, Reiter GS, Lachinov D, Bogunović H, Schmidt-Erfurth U
Ophthalmol Retina 2023 Jan;7(1):4-13. Epub 2022 Aug 7 doi: 10.1016/j.oret.2022.08.003. PMID: 35948209
Müller PL, Pfau M, Schmitz-Valckenberg S, Fleckenstein M, Holz FG
Ophthalmologica 2021;244(1):42-50. Epub 2020 Aug 7 doi: 10.1159/000510727. PMID: 32772015
Suciu CI, Suciu VI, Nicoara SD
J Diabetes Res 2020;2020:6655021. Epub 2020 Dec 31 doi: 10.1155/2020/6655021. PMID: 33490283Free PMC Article

Therapy

Vogl WD, Riedl S, Mai J, Reiter GS, Lachinov D, Bogunović H, Schmidt-Erfurth U
Ophthalmol Retina 2023 Jan;7(1):4-13. Epub 2022 Aug 7 doi: 10.1016/j.oret.2022.08.003. PMID: 35948209
Vessey KA, Jobling AI, Tran MX, Wang AY, Greferath U, Fletcher EL
Autophagy 2022 Oct;18(10):2368-2384. Epub 2022 Feb 23 doi: 10.1080/15548627.2022.2034131. PMID: 35196199Free PMC Article
Vijayasarathy C, Sardar Pasha SPB, Sieving PA
Prog Retin Eye Res 2022 Mar;87:100999. Epub 2021 Aug 11 doi: 10.1016/j.preteyeres.2021.100999. PMID: 34390869
Shin HJ, Lee SH, Chung H, Kim HC
Graefes Arch Clin Exp Ophthalmol 2012 Jan;250(1):61-70. Epub 2011 Aug 27 doi: 10.1007/s00417-011-1774-x. PMID: 21874345
Gemenetzi M, De Salvo G, Lotery AJ
Eye (Lond) 2010 Dec;24(12):1743-56. Epub 2010 Oct 8 doi: 10.1038/eye.2010.130. PMID: 20930852

Prognosis

Vujosevic S, Loewenstein A, O'Toole L, Schmidt-Erfurth UM, Zur D, Chakravarthy U
Br J Ophthalmol 2024 May 21;108(6):773-778. doi: 10.1136/bjo-2023-324246. PMID: 38290804
Georgiou M, Robson AG, Jovanovic K, Guimarães TAC, Ali N, Pontikos N, Uwaydat SH, Mahroo OA, Cheetham ME, Webster AR, Hardcastle AJ, Michaelides M
Ophthalmology 2023 Apr;130(4):413-422. Epub 2022 Nov 22 doi: 10.1016/j.ophtha.2022.11.015. PMID: 36423731Free PMC Article
Vogl WD, Riedl S, Mai J, Reiter GS, Lachinov D, Bogunović H, Schmidt-Erfurth U
Ophthalmol Retina 2023 Jan;7(1):4-13. Epub 2022 Aug 7 doi: 10.1016/j.oret.2022.08.003. PMID: 35948209
Müller PL, Pfau M, Schmitz-Valckenberg S, Fleckenstein M, Holz FG
Ophthalmologica 2021;244(1):42-50. Epub 2020 Aug 7 doi: 10.1159/000510727. PMID: 32772015
Suciu CI, Suciu VI, Nicoara SD
J Diabetes Res 2020;2020:6655021. Epub 2020 Dec 31 doi: 10.1155/2020/6655021. PMID: 33490283Free PMC Article

Clinical prediction guides

Georgiou M, Robson AG, Jovanovic K, Guimarães TAC, Ali N, Pontikos N, Uwaydat SH, Mahroo OA, Cheetham ME, Webster AR, Hardcastle AJ, Michaelides M
Ophthalmology 2023 Apr;130(4):413-422. Epub 2022 Nov 22 doi: 10.1016/j.ophtha.2022.11.015. PMID: 36423731Free PMC Article
Vogl WD, Riedl S, Mai J, Reiter GS, Lachinov D, Bogunović H, Schmidt-Erfurth U
Ophthalmol Retina 2023 Jan;7(1):4-13. Epub 2022 Aug 7 doi: 10.1016/j.oret.2022.08.003. PMID: 35948209
Vijayasarathy C, Sardar Pasha SPB, Sieving PA
Prog Retin Eye Res 2022 Mar;87:100999. Epub 2021 Aug 11 doi: 10.1016/j.preteyeres.2021.100999. PMID: 34390869
Jin ZB, Gao ML, Deng WL, Wu KC, Sugita S, Mandai M, Takahashi M
Prog Retin Eye Res 2019 Mar;69:38-56. Epub 2018 Nov 9 doi: 10.1016/j.preteyeres.2018.11.003. PMID: 30419340
Arcinue CA, Bartsch DU, El-Emam SY, Ma F, Doede A, Sharpsten L, Gomez ML, Freeman WR
PLoS One 2015;10(8):e0132996. Epub 2015 Aug 5 doi: 10.1371/journal.pone.0132996. PMID: 26244973Free PMC Article

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