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Ophthalmic features of PLA2G6-related paediatric neurodegeneration with brain iron accumulation
Insights
Neurodegeneration with brain iron accumulation (NBIA) linked to PLA2G6 gene mutations presents with distinct ophthalmic findings, including upgaze palsy and optic nerve pallor. These characteristics aid in differentiating it from other NBIA forms.
Area of Science:
- Ophthalmology
- Neurogenetics
- Pediatric Neurology
Background:
- Neurodegeneration with brain iron accumulation (NBIA) encompasses genetically diverse pediatric disorders.
- Recessive mutations in the PLA2G6 gene are a significant cause of NBIA.
- The ophthalmic phenotype of PLA2G6-related NBIA requires detailed characterization.
Purpose of the Study:
- To comprehensively characterize the ophthalmic phenotype in patients with PLA2G6-related NBIA.
- To identify key ophthalmic features that may aid in diagnosis and differentiation from other NBIA subtypes.
Main Methods:
- Prospective cohort study design.
- Detailed ophthalmic examinations were performed on eight patients with PLA2G6-related NBIA.
- Clinical findings were systematically recorded and analyzed.
Main Results:
- All eight patients exhibited bilateral optic nerve head pallor.
- Ophthalmic abnormalities included exotropia (50%), supraduction defects (100%), poor convergence (71%), and saccadic pursuit abnormalities (75%).
- Upgaze palsy was observed in all assessable patients, representing a novel finding.
Conclusions:
- Upgaze palsy, abnormal convergence, saccadic pursuit, and saccadic intrusions are key ophthalmic features of PLA2G6-related NBIA.
- Optic nerve head pallor and exotropia are consistently observed.
- These findings can help distinguish PLA2G6-related NBIA from NBIA caused by PANK2 mutations.
Background:
Neurodegeneration with brain iron accumulation (NBIA) refers to genetically heterogenous paediatric neurodegenerative disorders characterised by basal ganglia iron deposition. One major cause is recessive mutations in the PLA2G6 gene. While strabismus and optic nerve pallor have been reported for PLA2G6-related disease, the ophthalmic phenotype is not carefully defined. In this study we characterise the ophthalmic phenotype of PLA2G6-related NBIA.
Methods:
Prospective cohort study.
Results:
The eight patients were 4-26 years old when examined. All had progressive cognitive and motor regression first noted between 9 months and 6 years of age that typically first manifested as difficulty walking (ataxia). Ophthalmic examination was sometimes limited by cognitive ability. Four of eight had exotropia, 7/7 bilateral supraduction defect, 5/7 poor convergence, 6/8 saccadic pursuit, 4/8 saccadic intrusions that resembled square-wave jerks, and 8/8 bilateral optic nerve head pallor. All patients lacked Bell phenomenon.
Conclusions:
Upgaze palsy, although not a previously reported finding, was confirmed in all patients (except in one for whom assessment could not be performed) and thus can be considered part of the phenotype in children and young adults. Other frequent findings not previously highlighted were abnormal convergence, saccadic pursuit, and saccadic intrusions. Optic nerve head pallor and strabismus, previously reported findings in the disease, were found in 100% and 50% of our cohort, respectively, and the strabismus in our series was always exotropia. Taken together, these clinical findings may be helpful in distinguishing PLA2G6-related neurodegeneration from the other major cause of NBIA, recessive PANK2 mutations.
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