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Longitudinal assessment of female carriers of choroideremia using multimodal retinal imaging
Sena A Gocuk1,2,3, Lauren N Ayton1,2,3, Thomas L Edwards2,3
1Department of Optometry and Vision Sciences, The University of Melbourne, Melbourne, Victoria, Australia.
Insights
Female choroideremia carriers experience progressive retinal degeneration, especially those with severe phenotypes. Multimodal imaging and functional tests reveal significant declines, indicating disease progression beyond initial classification.
Area of Science:
- Ophthalmology
- Genetics
- Retinal Diseases
Background:
- Choroideremia carriers exhibit variable disease severity.
- Disease progression rates in female carriers are not well-characterized.
Purpose of the Study:
- To determine the rate of retinal degeneration in choroideremia carriers.
- Utilize multimodal imaging and microperimetry for assessment.
Main Methods:
- Longitudinal study of 17 choroideremia carriers (34 eyes) with up to 11 years of follow-up.
- Employed optical coherence tomography, fundus-tracked microperimetry, and fundus autofluorescence (FAF).
Main Results:
- Severe phenotypes showed statistically significant annual declines in retinal sensitivity, geographic loss area (FAF), and photoreceptor complex thinning.
- Some carriers showed slight changes, while others remained stable in phenotype classification.
Conclusions:
- Choroideremia carriers, particularly those with severe phenotypes, demonstrate progressive retinal degeneration.
- Retinal severity classification alone is insufficient for assessing disease progression in carriers.
Background/Aims:
Female choroideremia carriers present with a spectrum of disease severity. Unlike in men, the rate of disease progression has not been well characterised in carriers. This longitudinal study aimed to determine the rate of retinal degeneration in choroideremia carriers, using multimodal imaging and microperimetry.
Methods:
Choroideremia carriers previously seen at Oxford Eye Hospital (United Kingdom) between 2012 and 2017 returned for testing between 2015 and 2023, providing up to 11 years' follow-up data. Participants had optical coherence tomography, fundus-tracked microperimetry and fundus autofluorescence (FAF) imaging performed.
Results:
Thirty-four eyes of 17 choroideremia carriers were examined using multimodal imaging. Median age was 44 (range: 15-73) years at baseline and median follow-up duration was 7 (range: 1-11) years. At baseline, phenotype was classified as fine (n=5 eyes), coarse (n=13 eyes), geographic (n=12 eyes) or male pattern (n=4 eyes). Thirteen patients showed no change in phenotype classification, four showed slight changes associated with choroideremia-related retinal degeneration. Despite this, carriers with severe retinal phenotypes had a statistically significant decline in average retinal sensitivity (-0.7 dB and -0.8 dB per year, respectively, p<0.001), area of geographic loss defined by FAF (+2.5 mm2 and +3.7 mm2 per year, respectively, p<0.001) and thinning of the photoreceptor complex (up to -2.8 microns and -10.3 microns per year, p<0.001).
Conclusion:
Choroideremia carriers, particularly those with severe retinal phenotypes, exhibit progressive retinal degeneration, as evident by multimodal imaging biomarkers and functional testing. Clinicians should not rely on retinal severity classification alone to assess disease progression.
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