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OPA1 Dominant Optic Atrophy: Diagnostic Approach in the Pediatric Population
Natalia Arruti1,2, Patricia Rodríguez-Solana3, María Nieves-Moreno1,2
1Department of Pediatric Ophthalmology, IdiPaz, Hospital Universitario La Paz, 28046 Madrid, Spain.
Insights
This study investigated optic atrophy 1 (OPA1) mutations in pediatric patients, finding a genotype-phenotype correlation. Early diagnosis of dominant optic atrophy is crucial for genetic counseling and avoiding unnecessary treatments.
Area of Science:
- Ophthalmology
- Genetics
- Pediatric Medicine
Background:
- Dominant optic atrophy is a hereditary condition affecting the optic nerve.
- Optic atrophy 1 (OPA1) gene mutations are a known cause of dominant optic atrophy.
- Understanding genotype-phenotype correlations is essential for accurate diagnosis and management.
Purpose of the Study:
- To investigate the genotype-phenotype correlation in pediatric patients with OPA1 mutations.
- To analyze clinical and genetic data within and between families.
- To identify novel OPA1 mutations.
Main Methods:
- Clinical examination of pediatric patients and relatives.
- Genetic sequencing of the OPA1 gene.
- Optical coherence tomography (OCT) for retinal layer thickness measurements.
- Visual acuity and visual field testing.
Main Results:
- Eleven pediatric patients with confirmed OPA1 mutations were studied.
- Reduced visual acuity and centrocecal scotoma were common findings.
- Seven different OPA1 mutations were identified, including one novel mutation (NM_130837.3: c.1406_1407del).
- Retinal nerve fiber layer, ganglion cell layer, and macular thickness were measured via OCT.
Conclusions:
- A genotype-phenotype correlation exists for OPA1 mutations.
- Early diagnosis of dominant optic atrophy is critical for patient management and genetic counseling.
- Identification of novel mutations expands the understanding of OPA1-related optic neuropathies.
Abstract:
A clinical and genetic study was conducted with pediatric patients and their relatives with optic atrophy 1 (OPA1) mutations to establish whether there is a genotype-phenotype correlation among the variants detected within and between families. Eleven children with a confirmed OPA1 mutation were identified during the study period. The main initial complaint was reduced visual acuity (VA), present in eight patients of the cohort. Eight of eleven patients had a positive family history of optic atrophy. The mean visual acuity at the start of the study was 0.40 and 0.44 LogMAR in the right and left eye, respectively. At the end of the study, the mean visual acuity was unchanged. Optical coherence tomography during the first visit showed a mean retinal nerve fiber layer thickness of 81.6 microns and 80.5 microns in the right and left eye, respectively; a mean ganglion cell layer of 52.5 and 52.4 microns, respectively, and a mean central macular thickness of 229.5 and 233.5 microns, respectively. The most common visual field defect was a centrocecal scotoma, and nine out of eleven patients showed bilateral temporal disc pallor at baseline. Sequencing of OPA1 showed seven different mutations in the eleven patients, one of which, NM_130837.3: c.1406_1407del (p.Thr469LysfsTer16), has not been previously reported. Early diagnosis of dominant optic atrophy is crucial, both for avoiding unnecessary consultations and/or treatments and for appropriate genetic counseling.
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