Search results for "optic nerve hypoplasia"

showing 5 items of 5 documents

Aplasia of the retinal vessels combined with optic nerve hypoplasia, neonatal epileptic seizures, and lactic acidosis due to mitochondrial complex I …

1992

A newborn male with mitochondrial complex I deficiency suffered from neonatal epileptic seizures, which later developed into infantile spasms. The infant was blind due to aplasia of the retinal vessels and hypoplasia of the optic nerve. There was congenital lactic acidosis, which persisted in later life. The boy was microcephalic and retarded. Muscular hypotonia later shifted to spasticity. Succinic acid was increased in urine. We assume that the aplasia of the retinal vessels is due to damage of the retinal ganglion cells caused by the mitochondrial disease in the first 3 to 4 months of pregnancy.

Malecongenital hereditary and neonatal diseases and abnormalitiesmedicine.medical_specialtyCongenital lactic acidosisRetinal ganglionInternal medicineMedicineHumansNADH NADPH OxidoreductasesOptic nerve hypoplasiaRetinaElectron Transport Complex IEpilepsybusiness.industryInfant NewbornBrainRetinal VesselsOptic NerveAplasiamedicine.diseaseHypoplasiaMitochondriabody regionsEndocrinologymedicine.anatomical_structureLactic acidosisPediatrics Perinatology and Child HealthOptic nerveAcidosis LacticbusinessTomography X-Ray ComputedEuropean journal of pediatrics
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RINT1 Loss Impairs Retinogenesis Through TRP53-Mediated Apoptosis

2020

Genomic instability in the central nervous system (CNS) is associated with defective neurodevelopment and neurodegeneration. Congenital human syndromes that affect the CNS development originate from mutations in genes of the DNA damage response (DDR) pathways. RINT1 (Rad50-interacting protein 1) is a partner of RAD50, that participates in the cellular responses to DNA double-strand breaks (DSB). Recently, we showed that Rint1 regulates cell survival in the developing brain and its loss led to premature lethality associated with genomic stability. To bypass the lethality of Rint1 inactivation in the embryonic brain and better understand the roles of RINT1 in CNS development, we conditionally…

0301 basic medicineGenome instabilityDNA damagereplicative stressBiologyDNA damage responseRetinal ganglionganglion cellsCell and Developmental Biology03 medical and health sciences0302 clinical medicinemedicineoptic nerve hypoplasiaProgenitor celllcsh:QH301-705.5Original ResearchNeurogenesisNeurodegenerationneurodegenerationCell BiologyCell cyclemedicine.diseaseNeural stem cellCell biologyneurogenesis030104 developmental biologylcsh:Biology (General)030220 oncology & carcinogenesisvisual system developmentDevelopmental BiologyFrontiers in Cell and Developmental Biology
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Intragenic KANSL1 mutations and chromosome 17q21.31 deletions: broadening the clinical spectrum and genotype-phenotype correlations in a large cohort…

2015

Background The 17q21.31 deletion syndrome phenotype can be caused by either chromosome deletions or point mutations in the KANSL1 gene. To date, about 60 subjects with chromosome deletion and 4 subjects with point mutation in KANSL1 have been reported. Prevalence of chromosome deletions compared with point mutations, genotype–phenotype correlations and phenotypic variability have yet to be fully clarified. Methods We report genotype–phenotype correlations in 27 novel subjects with 17q21.31 deletion and in 5 subjects with KANSL1 point mutation , 3 of whom were not previously reported. Results The prevalence of chromosome deletion and KANSL1 mutation was 83% and 17%, respectively. All patient…

AdultMalemedicine.medical_specialtyAdolescentgenotype-phenotype correlationsKoolen De Vries syndromeKANSL1 mutationHaploinsufficiencyBiologySettore MED/03 - GENETICA MEDICASeverity of Illness IndexCraniofacial AbnormalitiesYoung AdultSeizuresMolecular geneticsGeneticsmedicineHumansAbnormalities MultipleLanguage Development DisordersChildGenetics (clinical)Genetic Association StudiesGeneticsOptic nerve hypoplasiaFetal Growth RetardationPoint mutationMacrocephalyInfantNuclear ProteinsSyndromeclinical heterogeneitySmith–Magenis syndromemedicine.diseaseChild PreschoolSpeech delayFemalemedicine.symptomChromosome DeletionSmith-Magenis SyndromeHaploinsufficiencyChromosomes Human Pair 1717q21.31 deletion
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Ten novel mutations found in Aniridia.

1998

Aniridia (AN) is a sight-threatening congenital ocular disorder characterized by iris hypoplasia, corneal pannus, foveal and optic nerve hypoplasia, cataract formation, and glaucoma. In two-thirds of the patients, AN is inherited in an autosomal dominant fashion with almost complete penetrance but variable expression. The remaining cases are sporadic. Aniridia has been shown to be associated with mutations in the PAX6 gene, located on chromosome 11p13, telomeric to the Wilms' tumor predisposition gene (WT1). This paper describes 14 mutations in the PAX6 gene in patients with AN. Among these 14 mutations, 10 have been unpublished until now. They result most probably in haploinsufficiency and…

AdultMalegenetic structuresAdolescentPAX6 Transcription FactorDNA Mutational AnalysisMolecular Sequence DataBiologyPolymerase Chain ReactionVariable ExpressionGeneticsmedicineHumansPaired Box Transcription FactorsAmino Acid SequenceChildEye ProteinsGeneAniridiaGenetics (clinical)Polymorphism Single-Stranded ConformationalGeneticsHomeodomain ProteinsOptic nerve hypoplasiaInfantMiddle Agedmedicine.diseasePenetranceeye diseasesDNA-Binding ProteinsRepressor ProteinsAniridiaChild PreschoolMutationHomeoboxFemalesense organsPAX6HaploinsufficiencyTranscription FactorsHuman mutation
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Optic nerve hypoplasia and internal carotid artery hypoplasia: a new association

2017

medicine.medical_specialtyOptic nerve hypoplasiamedicine.diagnostic_testbusiness.industryMagnetic resonance imagingGeneral Medicinemedicine.diseaseInternal carotid artery hypoplasiaEye abnormality03 medical and health sciencesOphthalmology0302 clinical medicineCarotid artery.internal030221 ophthalmology & optometryOptic nerveMedicineRadiologyTomographybusiness030217 neurology & neurosurgeryComputed tomography angiographyCanadian Journal of Ophthalmology
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