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Retinal findings in pediatric patients with Usher syndrome Type 1 due to mutations in MYO7A gene
Olaia Subirà1, Jaume Català-Mora2,3, Jesús Díaz-Cascajosa3
1Hospital Universitari de Bellvitge, L'Hospitalet de Llobregat, Barcelona, Spain. osubira@bellvitgehospital.cat.
Insights
Swept-source optical coherence tomography (SS-OCT) reveals outer retinal layer damage, particularly in photoreceptors, as a key feature of early Usher syndrome type 1 (USH1). This damage correlates with vision loss and may lead to inner retinal changes like cystoid macular edema.
Area of Science:
- Ophthalmology
- Genetics
- Medical Imaging
Background:
- Usher syndrome type 1 (USH1) is a genetic disorder causing vision and hearing loss.
- Early detection of retinal changes is crucial for managing USH1.
Purpose of the Study:
- To characterize retinal alterations in pediatric USH1 patients using swept-source optical coherence tomography (SS-OCT).
- To compare SS-OCT findings with existing literature on USH1 retinal pathology.
Main Methods:
- SS-OCT (1050 nm) was performed on 32 eyes from 16 pediatric USH1 patients (ages 4-17) with MYO7A mutations.
- Macular structural abnormalities were analyzed and correlated with best-corrected visual acuity (BCVA).
Main Results:
- External limiting membrane, myoid, and ellipsoid zones showed high rates of disruption (84.4-87.5%).
- Outer segment loss was observed in 90.6% of eyes; retinal pigment epithelium damage varied.
- Cystoid macular edema (CMO) correlated with photoreceptor alterations; myoid/ellipsoid zone disruption independently predicted decreased BCVA.
Conclusions:
- Early-stage USH1 pathology likely involves outer retinal layer and photoreceptor changes.
- These outer retinal changes may precipitate inner retinal alterations, including CMO.
- Monitoring photoreceptor integrity is recommended for early detection of USH1 progression.
Purpose:
To describe retinal alterations detected by swept-source optical coherence tomography (SS-OCT) in paediatric patients with Usher syndrome type 1 (USH1) and to compare these findings to previously published reports.
Methods:
Thirty-two eyes from 16 patients (11 males and 5 females) with a genetic diagnosis of USH1 because of MYO7A mutations underwent SS-OCT. Patients ranged in age from 4 to 17 years (mean, 11,13 ± 4,29). The subfoveal and macular area were analysed with SS-OCT at 1050 nm using 12 radial scans of 12.0 mm. Structural abnormalities were evaluated and correlated with best-corrected visual acuity (BCVA).
Results:
The most common qualitative retinal abnormality was external layer damage in macular area. Specific alterations included external limiting membrane loss/disruption (27 eyes; 84.4%), disruption of the Myoid zone (27 eyes; 84.4%); Ellipsoid zone disruption (28 eyes; 87.5%), and loss of the outer segments (29 eyes; 90.6%). The damage of the retinal pigment epithelium was divided according to the loss of the different layers: phagosome zone (30 eyes; 93.8%), melanosome zone (29 eyes; 90.6%) and mitochondria zone (0 eyes; 0%). The presence of cystoid macular oedema (CMO) was significantly correlated with alterations in photoreceptors. Disruption or absence of the myoid and ellipsoid zones of the photoreceptors were the only variables independently associated with decreased BCVA.
Conclusions:
The findings of this study suggest that the physiopathologic basis of early-stage Usher syndrome (USH) may be changes in the outer retinal layer, particularly the photoreceptors, which in turn may cause alterations-such as CMO-in the inner retinal layers. Accordingly, monitoring the condition of photoreceptors during follow-up may be advisable for the early detection of pathologic changes.
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