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Optic Atrophy and Inner Retinal Thinning in CACNA1F-Related Congenital Stationary Night Blindness

Hemizygous pathogenic variants in CACNA1F lead to defective signal transmission from retinal photoreceptors to bipolar cells and cause incomplete congenital stationary night blindness in humans. Although the primary defect is at the terminal end of first-order neurons (photoreceptors), there is limi...

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Autores principales: Leahy, Kate E, Wright, Tom, Grudzinska Pechhacker, Monika K, Audo, Isabelle, Tumber, Anupreet, Tavares, Erika, MacDonald, Heather, Locke, Jeff, VandenHoven, Cynthia, Zeitz, Christina, Heon, Elise, Buncic, J Raymond, Vincent, Ajoy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7996180/
https://www.ncbi.nlm.nih.gov/pubmed/33668843
http://dx.doi.org/10.3390/genes12030330
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author Leahy, Kate E
Wright, Tom
Grudzinska Pechhacker, Monika K
Audo, Isabelle
Tumber, Anupreet
Tavares, Erika
MacDonald, Heather
Locke, Jeff
VandenHoven, Cynthia
Zeitz, Christina
Heon, Elise
Buncic, J Raymond
Vincent, Ajoy
author_facet Leahy, Kate E
Wright, Tom
Grudzinska Pechhacker, Monika K
Audo, Isabelle
Tumber, Anupreet
Tavares, Erika
MacDonald, Heather
Locke, Jeff
VandenHoven, Cynthia
Zeitz, Christina
Heon, Elise
Buncic, J Raymond
Vincent, Ajoy
author_sort Leahy, Kate E
collection PubMed
description Hemizygous pathogenic variants in CACNA1F lead to defective signal transmission from retinal photoreceptors to bipolar cells and cause incomplete congenital stationary night blindness in humans. Although the primary defect is at the terminal end of first-order neurons (photoreceptors), there is limited knowledge of higher-order neuronal changes (inner retinal) in this disorder. This study aimed to investigate inner retinal changes in CACNA1F-retinopathy by analyzing macular ganglion cell layer-inner plexiform layer (GCL-IPL) thickness and optic disc pallor in 22 subjects with molecularly confirmed CACNA1F-retinopathy. Detailed ocular phenotypic data including distance and color vision, refraction and electroretinogram (ERG) were collected. Distance vision was universally reduced (mean: 0.42 LogMAR), six had abnormal color vision and myopia was common (n = 15; mean: −6.32 diopters). Mean GCL-IPL thickness was significantly lower in patients (55.00 µm) compared to age-matched controls (n = 87; 84.57 µm; p << 0.001). The GCL-IPL thickness correlated with scotopic standard (p = 0.04) and bright-flash (p = 0.014) ERG b/a ratios and photopic b-wave amplitudes (p = 0.05). Twenty-one patients had some degree of disc pallor (bilateral in 19). Fifteen putative disease-causing, including five novel variants were identified. This study establishes macular inner retinal thinning and optic atrophy as characteristic features of CACNA1F-retinopathy, which are independent of myopia and could impact potential future treatment strategies.
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spelling pubmed-79961802021-03-27 Optic Atrophy and Inner Retinal Thinning in CACNA1F-Related Congenital Stationary Night Blindness Leahy, Kate E Wright, Tom Grudzinska Pechhacker, Monika K Audo, Isabelle Tumber, Anupreet Tavares, Erika MacDonald, Heather Locke, Jeff VandenHoven, Cynthia Zeitz, Christina Heon, Elise Buncic, J Raymond Vincent, Ajoy Genes (Basel) Article Hemizygous pathogenic variants in CACNA1F lead to defective signal transmission from retinal photoreceptors to bipolar cells and cause incomplete congenital stationary night blindness in humans. Although the primary defect is at the terminal end of first-order neurons (photoreceptors), there is limited knowledge of higher-order neuronal changes (inner retinal) in this disorder. This study aimed to investigate inner retinal changes in CACNA1F-retinopathy by analyzing macular ganglion cell layer-inner plexiform layer (GCL-IPL) thickness and optic disc pallor in 22 subjects with molecularly confirmed CACNA1F-retinopathy. Detailed ocular phenotypic data including distance and color vision, refraction and electroretinogram (ERG) were collected. Distance vision was universally reduced (mean: 0.42 LogMAR), six had abnormal color vision and myopia was common (n = 15; mean: −6.32 diopters). Mean GCL-IPL thickness was significantly lower in patients (55.00 µm) compared to age-matched controls (n = 87; 84.57 µm; p << 0.001). The GCL-IPL thickness correlated with scotopic standard (p = 0.04) and bright-flash (p = 0.014) ERG b/a ratios and photopic b-wave amplitudes (p = 0.05). Twenty-one patients had some degree of disc pallor (bilateral in 19). Fifteen putative disease-causing, including five novel variants were identified. This study establishes macular inner retinal thinning and optic atrophy as characteristic features of CACNA1F-retinopathy, which are independent of myopia and could impact potential future treatment strategies. MDPI 2021-02-25 /pmc/articles/PMC7996180/ /pubmed/33668843 http://dx.doi.org/10.3390/genes12030330 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Leahy, Kate E
Wright, Tom
Grudzinska Pechhacker, Monika K
Audo, Isabelle
Tumber, Anupreet
Tavares, Erika
MacDonald, Heather
Locke, Jeff
VandenHoven, Cynthia
Zeitz, Christina
Heon, Elise
Buncic, J Raymond
Vincent, Ajoy
Optic Atrophy and Inner Retinal Thinning in CACNA1F-Related Congenital Stationary Night Blindness
title Optic Atrophy and Inner Retinal Thinning in CACNA1F-Related Congenital Stationary Night Blindness
title_full Optic Atrophy and Inner Retinal Thinning in CACNA1F-Related Congenital Stationary Night Blindness
title_fullStr Optic Atrophy and Inner Retinal Thinning in CACNA1F-Related Congenital Stationary Night Blindness
title_full_unstemmed Optic Atrophy and Inner Retinal Thinning in CACNA1F-Related Congenital Stationary Night Blindness
title_short Optic Atrophy and Inner Retinal Thinning in CACNA1F-Related Congenital Stationary Night Blindness
title_sort optic atrophy and inner retinal thinning in cacna1f-related congenital stationary night blindness
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7996180/
https://www.ncbi.nlm.nih.gov/pubmed/33668843
http://dx.doi.org/10.3390/genes12030330
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