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Retinite pontuada albescens
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Introdução

O que você precisa saber de cara

📋

Proteína 1 ligante de retinaldeído (RLBP1), também conhecida como proteína ligante de retinaldeído celular (CRALBP), é uma proteína solúvel em água de 36 kD que em humanos é codificada pelo gene RLBP1.

Pesquisas ativas
1 ensaio
1 total registrados no ClinicalTrials.gov
Publicações científicas
96 artigos
Último publicado: 2024 Dec 4

Escala de raridade

CLASSIFICAÇÃO ORPHANET · BRASIL 2024
1-9 / 1 000 000
Ultra-rara
<1/50k
Muito rara
1/20k
Rara
1/10k
Pouco freq.
1/5k
Incomum
1/2k
Prevalência
0.125
Worldwide
Início
Childhood
🏥
SUS: Sem cobertura SUSScore: 0%
CID-10: H35.5
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Sinais e sintomas

O que aparece no corpo e com que frequência cada sintoma acontece

Partes do corpo afetadas

👁️
Olhos
13 sintomas
👂
Ouvidos
1 sintomas

+ 5 sintomas em outras categorias

Características mais comuns

90%prev.
Nictalopia
Muito frequente (99-80%)
90%prev.
Ausência de reflexo foveal
Muito frequente (99-80%)
90%prev.
Perda visual progressiva
Muito frequente (99-80%)
90%prev.
Eletrorretinograma anormal adaptado ao claro e ao escuro
Muito frequente (99-80%)
90%prev.
Lesões amarelas/brancas da retina
Muito frequente (99-80%)
55%prev.
Pigmentação mosqueada do epitélio pigmentar da retina
Frequente (79-30%)
19sintomas
Muito frequente (5)
Frequente (7)
Ocasional (6)
Muito raro (1)

Os sintomas variam de pessoa para pessoa. Abaixo estão as 19 características clínicas mais associadas, ordenadas por frequência.

NictalopiaNyctalopia
Muito frequente (99-80%)90%
Ausência de reflexo fovealAbsent foveal reflex
Muito frequente (99-80%)90%
Perda visual progressivaProgressive visual loss
Muito frequente (99-80%)90%
Eletrorretinograma anormal adaptado ao claro e ao escuroAbnormal light- and dark-adapted electroretinogram
Muito frequente (99-80%)90%
Lesões amarelas/brancas da retinaYellow/white lesions of the retina
Muito frequente (99-80%)90%

Linha do tempo da pesquisa

Publicações por ano — veja quando o interesse científico cresceu
Anos de pesquisa2desde 2024
Total histórico96PubMed
Últimos 10 anos22publicações
Pico20207 papers
Linha do tempo
2024Hoje · 2026🧪 2014Primeiro ensaio clínico📈 2020Ano de pico
Publicações por ano (últimos 10 anos)

Encontrou um erro ou informação desatualizada? Sugira uma correção →

Genética e causas

O que está alterado no DNA e como passa nas famílias

Genes associados

4 genes identificados com associação a esta condição. Padrão de herança: Autosomal dominant, Autosomal recessive.

PRPH2Peripherin-2Disease-causing germline mutation(s) inTolerante
FUNÇÃO

Essential for retina photoreceptor outer segment disk morphogenesis, may also play a role with ROM1 in the maintenance of outer segment disk structure (By similarity). Required for the maintenance of retinal outer nuclear layer thickness (By similarity). Required for the correct development and organization of the photoreceptor inner segment (By similarity)

LOCALIZAÇÃO

MembraneCell projection, cilium, photoreceptor outer segmentPhotoreceptor inner segment

MECANISMO DE DOENÇA

Retinitis pigmentosa 7

A retinal dystrophy belonging to the group of pigmentary retinopathies. Retinitis pigmentosa is characterized by retinal pigment deposits visible on fundus examination and primary loss of rod photoreceptor cells followed by secondary loss of cone photoreceptors. Patients typically have night vision blindness and loss of midperipheral visual field. As their condition progresses, they lose their far peripheral visual field and eventually central vision as well.

EXPRESSÃO TECIDUAL(Ubíquo)
Testículo
9.3 TPM
Ovário
6.8 TPM
Cervix Ectocervix
5.7 TPM
Pituitária
5.3 TPM
Músculo esquelético
5.0 TPM
OUTRAS DOENÇAS (13)
retinitis pigmentosa 7vitelliform macular dystrophy 3fundus albipunctatuschoroidal dystrophy, central areolar 2
HGNC:9942UniProt:P23942
RDH5Retinol dehydrogenase 5Candidate gene tested inTolerante
FUNÇÃO

Catalyzes the oxidation of cis-isomers of retinol, including 11-cis-, 9-cis-, and 13-cis-retinol in an NAD-dependent manner (PubMed:10588954, PubMed:11675386, PubMed:9115228, PubMed:9931293). Has no activity towards all-trans retinal (By similarity). Plays a significant role in 11-cis retinol oxidation in the retinal pigment epithelium cells (RPE). Also recognizes steroids (androsterone, androstanediol) as its substrates (PubMed:29541409, PubMed:9931293)

LOCALIZAÇÃO

Endoplasmic reticulum membrane

VIAS BIOLÓGICAS (2)
The canonical retinoid cycle in rods (twilight vision)RA biosynthesis pathway
MECANISMO DE DOENÇA

Fundus albipunctatus

A form of fleck retina disease characterized by discrete uniform white dots over the entire fundus with greatest density in the mid-periphery and no macular involvement. Night blindness occurs. Inheritance can be autosomal dominant or autosomal recessive.

EXPRESSÃO TECIDUAL(Ubíquo)
Tecido adiposo
71.7 TPM
Adipose Visceral Omentum
58.6 TPM
Mama
35.5 TPM
Artéria coronária
30.8 TPM
Fígado
30.8 TPM
OUTRAS DOENÇAS (2)
fundus albipunctatusretinitis punctata albescens
HGNC:9940UniProt:Q92781
RLBP1Retinaldehyde-binding protein 1Disease-causing germline mutation(s) inTolerante
FUNÇÃO

Soluble retinoid carrier essential the proper function of both rod and cone photoreceptors. Participates in the regeneration of active 11-cis-retinol and 11-cis-retinaldehyde, from the inactive 11-trans products of the rhodopsin photocycle and in the de novo synthesis of these retinoids from 11-trans metabolic precursors. The cycling of retinoids between photoreceptor and adjacent pigment epithelium cells is known as the 'visual cycle'

LOCALIZAÇÃO

Cytoplasm

VIAS BIOLÓGICAS (3)
The canonical retinoid cycle in rods (twilight vision)The retinoid cycle in cones (daylight vision)Defective visual phototransduction due to RDH5 loss of function
MECANISMO DE DOENÇA

Bothnia retinal dystrophy

A type of retinitis punctata albescens. Affected individuals show night blindness from early childhood with features consistent with retinitis punctata albescens and macular degeneration.

EXPRESSÃO TECIDUAL(Tecido-específico)
Brain Caudate basal ganglia
11.3 TPM
Córtex cerebral
11.2 TPM
Brain Putamen basal ganglia
10.5 TPM
Brain Frontal Cortex BA9
9.5 TPM
Brain Anterior cingulate cortex BA24
7.6 TPM
OUTRAS DOENÇAS (5)
fundus albipunctatusNewfoundland cone-rod dystrophyBothnia retinal dystrophyretinitis pigmentosa
HGNC:10024UniProt:P12271
RHORhodopsinCandidate gene tested inTolerante
FUNÇÃO

Photoreceptor required for image-forming vision at low light intensity (PubMed:7846071, PubMed:8107847). Required for photoreceptor cell viability after birth (PubMed:12566452, PubMed:2215617). Light-induced isomerization of the chromophore 11-cis-retinal to all-trans-retinal triggers a conformational change that activates signaling via G-proteins (PubMed:26200343, PubMed:28524165, PubMed:28753425, PubMed:8107847). Subsequent receptor phosphorylation mediates displacement of the bound G-protein

LOCALIZAÇÃO

MembraneCell projection, cilium, photoreceptor outer segment

VIAS BIOLÓGICAS (4)
OpsinsG alpha (i) signalling eventsThe canonical retinoid cycle in rods (twilight vision)Inactivation, recovery and regulation of the phototransduction cascade
MECANISMO DE DOENÇA

Retinitis pigmentosa 4

A retinal dystrophy belonging to the group of pigmentary retinopathies. Retinitis pigmentosa is characterized by retinal pigment deposits visible on fundus examination and primary loss of rod photoreceptor cells followed by secondary loss of cone photoreceptors. Patients typically have night vision blindness and loss of midperipheral visual field. As their condition progresses, they lose their far peripheral visual field and eventually central vision as well.

EXPRESSÃO TECIDUAL(Baixa expressão)
Brain Frontal Cortex BA9
0.5 TPM
Cerebelo
0.5 TPM
Cérebro - Hemisfério cerebelar
0.5 TPM
Córtex cerebral
0.5 TPM
Testículo
0.2 TPM
OUTRAS DOENÇAS (6)
retinitis pigmentosa 4fundus albipunctatuscongenital stationary night blindness autosomal dominant 1retinitis pigmentosa
HGNC:10012UniProt:P08100

Variantes genéticas (ClinVar)

445 variantes patogênicas registradas no ClinVar.

🧬 RHO: NM_000539.3(RHO):c.483G>A (p.Trp161Ter) ()
🧬 RHO: NM_000539.3(RHO):c.499T>C (p.Cys167Arg) ()
🧬 RHO: NM_000539.3(RHO):c.92T>A (p.Leu31Gln) ()
🧬 RHO: NM_000539.3(RHO):c.422dup (p.Pro142fs) ()
🧬 RHO: NM_000539.3(RHO):c.662del (p.Phe221fs) ()
Ver todas no ClinVar

Classificação de variantes (ClinVar)

Distribuição de 11 variantes classificadas pelo ClinVar.

11
Patogênica (100.0%)
VARIANTES MAIS SIGNIFICATIVAS
CD63: NM_002905.5(RDH5):c.718dup (p.Ala240fs) [Pathogenic]
EYS: NM_001142800.2(EYS):c.4361_4362delinsAG (p.Ser1454Ter) [Pathogenic]
RLBP1: NM_000326.5(RLBP1):c.79del (p.Thr27fs) [Pathogenic]
RLBP1: NM_000326.5(RLBP1):c.286_297del (p.Phe96_Phe99del) [Pathogenic/Likely pathogenic]
PRPH2: NM_000322.5(PRPH2):c.73_74del (p.Trp25fs) [Pathogenic]

Diagnóstico

Os sinais que médicos procuram e os exames que confirmam

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Tratamento e manejo

Remédios, cuidados de apoio e o que precisa acompanhar

Pipeline de tratamentos
Pipeline regulatório — de medicamentos já aprovados a drogas em pesquisa exploratória.
·Pré-clínico1
Medicamentos catalogadosEnsaios clínicos· 0 medicamentos · 1 ensaio
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Onde tratar no SUS

Hospitais de referência no Brasil e o protocolo oficial do SUS (PCDT)

🇧🇷 Atendimento SUS — Retinite pontuada albescens

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Ensaios clínicos abertos e novidades científicas recentes

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Publicações mais relevantes

Timeline de publicações
22 papers (10 anos)
#1

Dual CRALBP isoforms unveiled: iPSC-derived retinal modeling and AAV2/5-RLBP1 gene transfer raise considerations for effective therapy.

Molecular therapy : the journal of the American Society of Gene Therapy2024 Dec 04

Inherited retinal diseases (IRDs) are characterized by progressive vision loss. There are over 270 causative IRD genes, and variants within the same gene can cause clinically distinct disorders. One example is RLBP1, which encodes CRALBP. CRALBP is an essential protein in the rod and cone visual cycles that take place primarily in the retinal pigment epithelium (RPE) but also in Müller cells of the neuroretina. RLBP1 variants lead to three clinical subtypes: Bothnia dystrophy, retinitis punctata albescens, and Newfoundland rod-cone dystrophy. We modeled RLBP1-IRD subtypes using patient-specific induced pluripotent stem cell (iPSC)-derived RPE and identified pathophysiological markers that served as pertinent therapeutic read-outs. We developed an AAV2/5-mediated gene-supplementation strategy and performed a proof-of-concept study in the human models, which was validated in vivo in an Rlbp1-/- murine model. Most importantly, we identified a previously unsuspected smaller CRALBP isoform that is naturally and differentially expressed both in the human and murine retina. This previously unidentified isoform is produced from an alternative methionine initiation site. This work provides further insights into CRALBP expression and RLBP1-associated pathophysiology and raises important considerations for successful gene-supplementation therapy.

#2

A Rare Presentation of Laurence-Moon-Bardet-Biedl Syndrome: Atypical Retinitis Punctata Albescens and Non-alcoholic Fatty Liver Disease.

Cureus2024 Feb

This case report emphasizes the varied clinical features of Laurence-Moon-Bardet-Biedl syndrome (LMBBS) in a 10-year-old girl, presenting a rare combination of atypical retinitis punctata albescens, polydactyly, central obesity, and non-alcoholic fatty liver disease (NAFLD). Despite extensive management efforts, the patient's visual impairment remained unchanged, highlighting the challenging and progressive nature of LMBBS, particularly its ocular manifestations. Genetic counseling played a crucial role, stressing the significance of early genetic analysis in consanguineous marriages for anomaly detection and informed family planning. This case enhances our comprehension of LMBBS and emphasizes the necessity for ongoing research and multidisciplinary care to tackle its complexities.

#3

The downregulation of HSP90-controlled CRALBP expression is associated with age-related vision attenuation.

FASEB journal : official publication of the Federation of American Societies for Experimental Biology2023 Mar

The dysfunction of CRALBP, a key regulator of the visual cycle, is associated with retinitis punctata albescens characterized by night vision loss and retinal degeneration. In this paper, we find that the expression of CRALBP is regulated by heat shock protein 90 (HSP90). Inhibition of HSP90α or HSP90β expression by using the CRISPR-Cas9 technology downregulates CRALBP's mRNA and protein expression in ARPE-19 cells by triggering the degradation of transcription factor SP1 in the ubiquitin-proteasome pathway. SP1 can bind to CRALBP's promoter, and inhibition of SP1 by its inhibitor plicamycin or siRNA downregulates CRALBP's mRNA expression. In the zebrafish, inhibition of HSP90 by the intraperitoneal injection of IPI504 reduces the thickness of the retinal outer nuclear layer and Rlbp1b mRNA expression. Interestingly, the expression of HSP90, SP1, and CRALBP is correlatedly downregulated in the senescent ARPE-19 and Pig primary RPE cells in vitro and in the aged zebrafish and mouse retinal tissues in vivo. The aged mice exhibit the low night adaption activity. Taken together, these data indicate that the HSP90-SP1 is a novel regulatory axis of CRALBP transcriptional expression in RPE cells. The age-mediated downregulation of the HSP90-SP1-CRALBP axis is a potential etiology for the night vision reduction in senior people.

#4

Molecular Mechanisms of Alu and LINE-1 Interspersed Repetitive Sequences Reveal Diseases of Visual System Dysfunction.

Ocular immunology and inflammation2023 Nov

Short interspersed nuclear elements (SINEs) and long interspersed nuclear elements (LINE-1s) are the abundant and well-characterized repetitive elements in the human genome. For this review, all relevant original research studies were assessed by searching electronic databases, including PubMed, Google Scholar, and Web of Science, by using relevant keywords. Accumulating evidence indicates that the disorder of gene expression regulated by these repetitive sequences is one of the causes of the diseases of visual system dysfunction, including retinal degenerations, glaucoma, retinitis punctata albescens, retinitis pigmentosa, geographic atrophy, and age-related macular degeneration, suggesting that SINEs and LINE-1s may have great potential implications in ophthalmology. Alu elements belonging to the SINEs are present in more than one million copies, comprising 10% of the human genome. This study offers recent advances in Alu and LINE-1 mechanisms in the development of eye diseases. The current study could advance our knowledge of the roles of SINEs and LINE-1s in the developing process of eye diseases, suggesting new diagnostic biomarkers, therapeutic strategies, and significant points for future studies. This study reveals the Alu and LINE-1 interspersed repetitive sequences involved in the diseases of visual system dysfunction.This study shows the disorder of gene expression regulated by SINEs and LINE-1s sequences is one of the causes of the diseases of visual system dysfunction.This study suggests recent advances in Alu and LINE-1 mechanisms are involved in eye diseases.

#5

A Japanese boy with Bardet-Biedl syndrome caused by a novel homozygous variant in the ARL6 gene who was initially diagnosed with retinitis punctata albescens: A case report.

Medicine2022 Dec 16

Bardet-Biedl Syndrome (BBS) is an autosomal recessive systemic disorder characterized by retinitis pigmentosa, polydactyly, obesity, intellectual disability, renal impairments, and hypogonadism. The purpose of this study was to determine the ocular characteristics of a boy with BBS caused by a novel homozygous variant in the ARL6 (alternative named BBS3) gene who had been originally diagnosed with retinitis punctata albescens. This was an observational case study. The patient underwent ophthalmological examinations, electroretinography, and genetic analyses using whole-exome sequencing. A 7-year-old boy was examined in our hospital with complaints of a progressive reduction of his visual acuity and night blindness in both eyes. There was no family history of eye diseases and no consanguineous marriage. Fundus examinations showed numerous white spots in the deep retina and retinal pigment epithelium. Fundus autofluorescence showed hypofluorescence consistent with these spots. Both the scotopic and photopic components of the full-field electroretinographies were non-detectable. Based on these clinical findings, this boy was suspected to have retinitis punctata albescens. Subsequent genetic testing using whole-exome sequencing revealed a novel homozygous variants in the ARL6/BBS3 gene (NM_001278293.3:c.528G>A, (p.Trp176Ter)). A systemic examination by the pediatric department revealed that this boy had a history of a surgical excision of polydactyly on his left foot when he was born, and that he was mildly obese. There were no prominent intellectual or gonadal dysfunctions, no craniofacial or dental abnormalities, no congenital heart disease, and no hearing impairment. He was then clinically and genetically diagnosed with BBS. In children with night blindness and progressive visual dysfunction, it is important for ophthalmologists to consult clinical geneticists and pediatricians to rule out the possibility of systemic diseases such as BBS.

Publicações recentes

Ver todas no PubMed

📚 EuropePMC65 artigos no totalmostrando 22

2024

Dual CRALBP isoforms unveiled: iPSC-derived retinal modeling and AAV2/5-RLBP1 gene transfer raise considerations for effective therapy.

Molecular therapy : the journal of the American Society of Gene Therapy
2024

A Rare Presentation of Laurence-Moon-Bardet-Biedl Syndrome: Atypical Retinitis Punctata Albescens and Non-alcoholic Fatty Liver Disease.

Cureus
2023

The downregulation of HSP90-controlled CRALBP expression is associated with age-related vision attenuation.

FASEB journal : official publication of the Federation of American Societies for Experimental Biology
2022

A Japanese boy with Bardet-Biedl syndrome caused by a novel homozygous variant in the ARL6 gene who was initially diagnosed with retinitis punctata albescens: A case report.

Medicine
2023

Molecular Mechanisms of Alu and LINE-1 Interspersed Repetitive Sequences Reveal Diseases of Visual System Dysfunction.

Ocular immunology and inflammation
2022

A PRPH2 gene variant detected in retinitis punctata albescens with congenital hypertrophy of the retinal pigment epithelium.

European journal of ophthalmology
2021

Disturbed retinoid metabolism upon loss of rlbp1a impairs cone function and leads to subretinal lipid deposits and photoreceptor degeneration in the zebrafish retina.

eLife
2021

Variants of Uncertain Significance: Twins With Identical Pathogenic Gene Mutations in Retinitis Punctata Albescens.

Ophthalmic surgery, lasers &amp; imaging retina
2021

Retinitis Punctata Albescens and RLBP1-Allied Phenotypes: Phenotype-Genotype Correlation and Natural History in the Aim of Gene Therapy.

Ophthalmology science
2021

Shared Features in Retinal Disorders With Involvement of Retinal Pigment Epithelium.

Investigative ophthalmology &amp; visual science
2020

A multimodal study and management of retinitis punctata albescens.

Romanian journal of ophthalmology
2020

Dark Dots in Retinitis Punctata Albescens.

Ophthalmology. Retina
2020

Clinical heterogeneity in retinitis pigmentosa caused by variants in RP1 and RLBP1 in five extended consanguineous pedigrees.

Molecular vision
2021

A novel homozygous frameshift variant in the cellular retinaldehyde-binding protein 1 (RLBP1) gene causes retinitis punctata albescens.

European journal of ophthalmology
2020

Effects of deficiency in the RLBP1-encoded visual cycle protein CRALBP on visual dysfunction in humans and mice.

The Journal of biological chemistry
2020

A retinitis punctata albescens family with biallelic mutations in retinaldehyde-binding Protein 1.

Eye (London, England)
2020

A founder RDH5 splice site mutation leads to retinitis punctata albescens in two inbred Pakistani kindreds.

Ophthalmic genetics
2019

Retinal dystrophies and variants in PRPH2.

Arquivos brasileiros de oftalmologia
2017

The effect of intravitreal bevacizumab in a rare case of retinal dystrophy with secondary cystoid macular edema.

Romanian journal of ophthalmology
2020

A NOVEL LARGE HOMOZYGOUS DELETION IN THE CELLULAR RETINALDEHYDE-BINDING PROTEIN GENE (RLBP1) IN A PATIENT WITH RETINITIS PUNCTATA ALBESCENS.

Retinal cases &amp; brief reports
2017

A novel RLBP1 gene geographical area-related mutation present in a young patient with retinitis punctata albescens.

Human genomics
2016

[Retinitis punctata albescens].

The Pan African medical journal
Ver todos os 65 no EuropePMC

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Doenças relacionadas

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Referências e fontes

Bases de dados externas citadas neste artigo

Publicações científicas

Artigos indexados no PubMed ligados a esta doença no grafo RarasNet — título, periódico e PMID direto da fonte, sem intermediação de IA.

  1. Dual CRALBP isoforms unveiled: iPSC-derived retinal modeling and AAV2/5-RLBP1 gene transfer raise considerations for effective therapy.
    Molecular therapy : the journal of the American Society of Gene Therapy· 2024· PMID 39385467mais citado
  2. A Rare Presentation of Laurence-Moon-Bardet-Biedl Syndrome: Atypical Retinitis Punctata Albescens and Non-alcoholic Fatty Liver Disease.
    Cureus· 2024· PMID 38481887mais citado
  3. The downregulation of HSP90-controlled CRALBP expression is associated with age-related vision attenuation.
    FASEB journal : official publication of the Federation of American Societies for Experimental Biology· 2023· PMID 36826429mais citado
  4. Molecular Mechanisms of Alu and LINE-1 Interspersed Repetitive Sequences Reveal Diseases of Visual System Dysfunction.
    Ocular immunology and inflammation· 2023· PMID 36040959mais citado
  5. A Japanese boy with Bardet-Biedl syndrome caused by a novel homozygous variant in the ARL6 gene who was initially diagnosed with retinitis punctata albescens: A case report.
    Medicine· 2022· PMID 36550847mais citado

Bases de dados e fontes oficiais

Identificadores e referências canônicas usadas para montar este verbete.

  1. ORPHA:52427(Orphanet)
  2. MONDO:0018877(MONDO)
  3. GARD:16655(GARD (NIH))
  4. Variantes catalogadas(ClinVar)
  5. Busca completa no PubMed(PubMed)
  6. Q16625025(Wikidata)

Dados compilados pelo RarasNet a partir de fontes abertas (Orphanet, OMIM, MONDO, PubMed/EuropePMC, ClinicalTrials.gov, DATASUS, PCDT/MS). Este conteúdo é informativo e não substitui avaliação médica.

Conteúdo mantido por Agente Raras · Médicos e pesquisadores podem colaborar

Retinite pontuada albescens
Compêndio · Raras BR

Retinite pontuada albescens

ORPHA:52427 · MONDO:0018877
Prevalência
1-9 / 1 000 000
Herança
Autosomal dominant, Autosomal recessive
CID-10
H35.5 · Distrofias hereditárias da retina
CID-11
Ensaios
1 ativos
Início
Childhood
Prevalência
0.125 (Worldwide)
MedGen
UMLS
C0311338
EuropePMC
Wikidata
Papers 10a
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