keyword
https://read.qxmd.com/read/36563963/prph2-associated-retinopathy-novel-variants-and-genotype-phenotype-correlations
#21
JOURNAL ARTICLE
Lorenzo Bianco, Alessandro Arrigo, Alessio Antropoli, Andrea Saladino, Ivana Spiga, Maria Grazia Patricelli, Francesco Bandello, Paola Carrera, Maurizio Battaglia Parodi
PURPOSE: A broad spectrum of autosomal dominant inherited retinal diseases (IRDs), including both mild macular pattern dystrophies and severe cone-rod degenerations, is associated with PRPH2 variants ("peripherinopathies"). We present a detailed clinical and molecular characterization of patients affected by peripherinopathies, aiming to expand the mutational spectrum and propose novel genotype-phenotype correlations. DESIGN: Observational, retrospective, case series...
December 20, 2022: Ophthalmology Retina
https://read.qxmd.com/read/36555650/investigation-of-structural-alterations-in-inherited-retinal-diseases-a-quantitative-sd-oct-analysis-of-retinal-layer-thicknesses-in-light-of-underlying-genetic-mutations
#22
JOURNAL ARTICLE
Julia Gersch, Katerina Hufendiek, Julien Delarocque, Carsten Framme, Christina Jacobsen, Heidi Stöhr, Ulrich Kellner, Karsten Hufendiek
Inherited retinal diseases can result from various genetic defects and are one of the leading causes for blindness in the working-age population. The present study aims to provide a comprehensive description of changes in retinal structure associated with phenotypic disease entities and underlying genetic mutations. Full macular spectral domain optical coherence tomography scans were obtained and manually segmented in 16 patients with retinitis pigmentosa, 7 patients with cone-rod dystrophy, and 7 patients with Stargardt disease, as well as 23 age- and sex-matched controls without retinal disease, to assess retinal layer thicknesses...
December 16, 2022: International Journal of Molecular Sciences
https://read.qxmd.com/read/36543582/rosah-syndrome-mimicking-chronic-uveitis
#23
JOURNAL ARTICLE
Christine Fardeau, Munirah Alafaleq, Claire-Marie Dhaenens, Hélène Dollfus, Isabelle Koné-Paut, Olivier Grunewald, Jean-Baptiste Morel, Cherif Titah, David Saadoun, Patrice Olivier Lazeran, Isabelle Meunier
PURPOSE: To suggest a unique missense variant candidate based on long-term ophthalmological changes and associated systemic signs described in 5 patients from 2 unrelated families affected by an autosomal dominant multi-systemic disorder including Retinal dystrophy, Optic nerve oedema, Splenomegaly, Anhidrosis and migraine Headaches, called ROSAH syndrome, related to a unique missense variant in ALPK1 gene. DESIGN: Observational longitudinal follow-up study of unrelated families...
December 21, 2022: Clinical Genetics
https://read.qxmd.com/read/36445968/impaired-glutamylation-of-rpgr-orf15-underlies-the-cone-dominated-phenotype-associated-with-truncating-distal-orf15-variants
#24
JOURNAL ARTICLE
Jasmina Cehajic-Kapetanovic, Cristina Martinez-Fernandez de la Camara, Johannes Birtel, Salwah Rehman, Michelle E McClements, Peter Charbel Issa, Andrew J Lotery, Robert E MacLaren
Pathogenic variants in the Retinitis pigmentosa GTPase regulator (RPGR) gene lead to a clinically severe form of X-linked retinal dystrophy. However, it remains unclear why some variants cause a predominant rod, while others result in a cone-dominated phenotype. Post-translational glutamylation of the photoreceptor-specific RPGRORF15 isoform by the TTLL5 enzyme is essential for its optimal function in photoreceptors, and loss of TTLL5 leads to retinal dystrophy with a cone phenotype. Here we show that RPGR retinal disease, studied in a single cohort of 116 male patients, leads to a clear progressive shift from rod- to cone-dominating phenotype as the RPGRORF15 variant location approaches the distal part of the Open Reading Frame 15 (ORF15) region...
December 6, 2022: Proceedings of the National Academy of Sciences of the United States of America
https://read.qxmd.com/read/36393903/compound-dominant-null-heterozygosity-in-a-family-with-rp1-related-retinal-dystrophy
#25
Thomas M W Buckley, Jasmina Cehajic-Kapetanovic, Morag Shanks, Penny Clouston, Robert E MacLaren
Purpose: To report on the presence of autosomal dominant and compound dominant-null RP1 -related retinitis pigmentosa in the same non-consanguineous family. Observation: The father was minimally symptomatic and referred by his optometrist aged 38. He was diagnosed with rod-cone dystrophy, confirmed to be caused by the previously reported RP1 c.2613dupA mutation. He was reassured that his 11-year-old daughter had a 50% chance of inheriting the same mutation and that the condition, if she had it, would most likely be similar...
December 2022: American Journal of Ophthalmology Case Reports
https://read.qxmd.com/read/36374771/long-term-progression-of-retinal-degeneration-in-a-preclinical-model-of-cln7-batten-disease-as-a-baseline-for-testing-clinical-therapeutics
#26
JOURNAL ARTICLE
Ashley A Rowe, Xin Chen, Emily R Nettesheim, Yacine Issioui, Thomas Dong, Yuhui Hu, Souad Messahel, Saima N Kayani, Steven J Gray, Katherine J Wert
BACKGROUND: Batten disease is characterized by cognitive and motor impairment, retinal degeneration, and seizures leading to premature death. Recent studies have shown efficacy for a gene therapy approach for CLN7 Batten disease. This gene therapy approach is promising to treat cognitive and motor impairment, but is not likely to delay vision loss. Additionally, the natural progression of retinal degeneration in CLN7 Batten disease patients is not well-known. METHODS: We performed visual examinations on five patients with CLN7 Batten disease and found that patients were far progressed in degeneration within their first five years of life...
November 2022: EBioMedicine
https://read.qxmd.com/read/36320315/delivery-strategies-for-crispr-cas-genome-editing-tool-for-retinal-dystrophies-challenges-and-opportunities
#27
REVIEW
Aayushi Lohia, Deepak Kumar Sahel, Mohd Salman, Vivek Singh, Indumathi Mariappan, Anupama Mittal, Deepak Chitkara
CRISPR/Cas, an adaptive immune system in bacteria, has been adopted as an efficient and precise tool for site-specific gene editing with potential therapeutic opportunities. It has been explored for a variety of applications, including gene modulation, epigenome editing, diagnosis, mRNA editing, etc. It has found applications in retinal dystrophic conditions including progressive cone and cone-rod dystrophies, congenital stationary night blindness, X-linked juvenile retinoschisis, retinitis pigmentosa, age-related macular degeneration, leber's congenital amaurosis, etc...
March 2022: Asian journal of pharmaceutical sciences
https://read.qxmd.com/read/36276946/analysis-of-rpgr-gene-mutations-in-41-chinese-families-affected-by-x-linked-inherited-retinal-dystrophy
#28
JOURNAL ARTICLE
Xiaozhen Liu, Ruixuan Jia, Xiang Meng, Likun Wang, Liping Yang
Background: This study analyzed the phenotypes and genotypes of 41 Chinese families with inherited retinal dystrophy (IRD) and RPGR gene mutations. Methods: This retrospective analysis evaluated a cohort of 41 patients who were subjected to a specific Hereditary Eye Disease Enrichment Panel (HEDEP) analysis. All (likely) pathogenic variants were determined by Sanger sequencing, and co-segregation analyses were performed on the available family members. All cases were subjected to Sanger sequencing for RPGR open reading frame 15 (ORF15) mutations...
2022: Frontiers in Genetics
https://read.qxmd.com/read/36096933/therapy-with-voretigene-neparvovec-how-to-measure-success
#29
REVIEW
Krunoslav Stingl, Melanie Kempf, Ronja Jung, Friederike Kortüm, Giulia Righetti, Milda Reith, Spyridon Dimopoulos, Saskia Ott, Susanne Kohl, Katarina Stingl
Retinal gene supplementation therapy such as the first approved one, voretigene neparvovec, delivers a functioning copy of the missing gene enabling the protein transcription in retinal cells and restore visual functions. After gene supplementation for the genetic defect, a complex network of functional regeneration is the consequence, whereas the extent is very individualized. Diagnostic and functional testings that have been used routinely by ophthalmologists so far to define the correct diagnosis, cannot be applied in the new context of defining small, sometimes subtle changes in visual functions...
January 2023: Progress in Retinal and Eye Research
https://read.qxmd.com/read/36038193/genetic-treatment-for-autosomal-dominant-inherited-retinal-dystrophies-approaches-challenges-and-targeted-genotypes
#30
REVIEW
Malena Daich Varela, Tassos Georgiadis, Michel Michaelides
Inherited retinal diseases (IRDs) have been in the front line of gene therapy development for the last decade, providing a useful platform to test novel therapeutic approaches. More than 40 clinical trials have been completed or are ongoing, tackling autosomal recessive and X-linked conditions, mostly through adeno-associated viral vector delivery of a normal copy of the disease-causing gene. However, only recently has autosomal dominant (ad) disease been targeted, with the commencement of a trial for rhodopsin ( RHO )-associated retinitis pigmentosa (RP), implementing antisense oligonucleotide (AON) therapy, with promising preliminary results (NCT04123626)...
August 29, 2022: British Journal of Ophthalmology
https://read.qxmd.com/read/35810394/increased-h3k27-trimethylation-contributes-to-cone-survival-in-a-mouse-model-of-cone-dystrophy
#31
JOURNAL ARTICLE
Annie L Miller, Paula I Fuller-Carter, Klaudija Masarini, Marijana Samardzija, Kim W Carter, Rabab Rashwan, Xin Ru Lim, Alicia A Brunet, Abha Chopra, Ramesh Ram, Christian Grimm, Marius Ueffing, Livia S Carvalho, Dragana Trifunović
Inherited retinal diseases (IRDs) are a heterogeneous group of blinding disorders, which result in dysfunction or death of the light-sensing cone and rod photoreceptors. Despite individual IRDs (Inherited retinal disease) being rare, collectively, they affect up to 1:2000 people worldwide, causing a significant socioeconomic burden, especially when cone-mediated central vision is affected. This study uses the Pde6ccpfl1 mouse model of achromatopsia, a cone-specific vision loss IRD (Inherited retinal disease), to investigate the potential gene-independent therapeutic benefits of a histone demethylase inhibitor GSK-J4 on cone cell survival...
July 10, 2022: Cellular and Molecular Life Sciences: CMLS
https://read.qxmd.com/read/35806195/retrospective-natural-history-study-of-rpgr-related-cone-and-cone-rod-dystrophies-while-expanding-the-mutation-spectrum-of-the-disease
#32
JOURNAL ARTICLE
Marco Nassisi, Giuseppe De Bartolo, Saddek Mohand-Said, Christel Condroyer, Aline Antonio, Marie-Elise Lancelot, Kinga Bujakowska, Vasily Smirnov, Thomas Pugliese, John Neidhardt, José-Alain Sahel, Christina Zeitz, Isabelle Audo
Variants in the X-linked retinitis pigmentosa GTPase regulator gene ( RPGR) and, specifically, in its retinal opening reading frame-15 isoform ( RPGRORF15 ) may cause rod-cone (RCD), cone, and cone-rod dystrophies (CDs and CRDs). While RPGR -related RCDs have been frequently evaluated, the characteristics and progression of RPGR -related CD/CRDs are largely unknown. Therefore, the goal of our work was to perform genotype-phenotype correlations specifically in RPGRORF15 -related CD/CRDs. This retrospective longitudinal study included 34 index patients and two affected relatives with a molecular diagnosis of RPGR -related CD/CRDs...
June 28, 2022: International Journal of Molecular Sciences
https://read.qxmd.com/read/35621151/victorian-evolution-of-inherited-retinal-diseases-natural-history-registry-venture-study-rationale-methodology-and-initial-participant-characteristics
#33
JOURNAL ARTICLE
Alexis Ceecee Britten-Jones, Fleur O'Hare, Thomas L Edwards, Lauren N Ayton
BACKGROUND: Emerging treatments are being developed for inherited retinal diseases, requiring a clear understanding of natural progression and a database of potential participants for clinical trials. This article describes the rationale, study design, and methodology of the Victorian Evolution of inherited retinal diseases NaTUral History REgistry (VENTURE), including data from the first 150 participants enrolled. METHODS: VENTURE collects retrospective and prospective data from people with inherited retinal diseases...
May 27, 2022: Clinical & Experimental Ophthalmology
https://read.qxmd.com/read/35551639/clinical-and-genetic-spectrums-of-413-north-african-families-with-inherited-retinal-dystrophies-and-optic-neuropathies
#34
REVIEW
Aymane Bouzidi, Hicham Charoute, Majida Charif, Ghita Amalou, Mostafa Kandil, Abdelhamid Barakat, Guy Lenaers
BACKGROUND: Inherited retinal dystrophies (IRD) and optic neuropathies (ION) are the two major causes world-wide of early visual impairment, frequently leading to legal blindness. These two groups of pathologies are highly heterogeneous and require combined clinical and molecular diagnoses to be securely identified. Exact epidemiological studies are lacking in North Africa, and genetic studies of IRD and ION individuals are often limited to case reports or to some families that migrated to the rest of the world...
May 12, 2022: Orphanet Journal of Rare Diseases
https://read.qxmd.com/read/35491887/rdh12-retinopathy-clinical-features-biology-genetics-and-future-directions
#35
JOURNAL ARTICLE
Malena Daich Varela, Michel Michaelides
Retinol dehydrogenase 12 (RDH12) is a small gene located on chromosome 14, encoding an enzyme capable of metabolizing retinoids. It is primarily located in photoreceptor inner segments and thereby is believed to have an important role in clearing excessive retinal and other toxic aldehydes produced by light exposure. Clinical features: RDH12-associated retinopathy has wide phenotypic variability; including early-onset severe retinal dystrophy/Leber Congenital Amaurosis (EOSRD/LCA; most frequent presentation), retinitis pigmentosa, cone-rod dystrophy, and macular dystrophy...
May 2, 2022: Ophthalmic Genetics
https://read.qxmd.com/read/35477418/a-novel-phenotype-associated-with-the-r162w-variant-in-the-kcnj13-gene
#36
JOURNAL ARTICLE
Marion Schroeder, Virginie G Peter, Lotta Gränse, Sten Andréasson, Carlo Rivolta, Ulrika Kjellström
BACKGROUND: Pathogenic variants in KCNJ1 3 have been associated with both autosomal dominant Snowflake vitreoretinal degeneration (SVD) and autosomal recessive Leber congenital amaurosis. SVD is characterized by aberrant vitreoretinal interface leading to increased risk of retinal detachment, crystalline retinal snowflake deposits, optic disc abnormalities, early-onset cataract, and cornea guttae. Reduced dark adaptation and reduced scotopic rod b-waves have also been described. We report a novel phenotype associated with the R162W variant in KCNJ13 ...
April 27, 2022: Ophthalmic Genetics
https://read.qxmd.com/read/35409265/whole-genome-sequencing-focused-assays-and-functional-studies-increasing-understanding-in-cryptic-inherited-retinal-dystrophies
#37
JOURNAL ARTICLE
Benjamin M Nash, Alan Ma, Gladys Ho, Elizabeth Farnsworth, Andre E Minoche, Mark J Cowley, Christopher Barnett, Janine M Smith, To Ha Loi, Karen Wong, Luke St Heaps, Dale Wright, Marcel E Dinger, Bruce Bennetts, John R Grigg, Robyn V Jamieson
The inherited retinal dystrophies (IRDs) are a clinically and genetically complex group of disorders primarily affecting the rod and cone photoreceptors or other retinal neuronal layers, with emerging therapies heralding the need for accurate molecular diagnosis. Targeted capture and panel-based strategies examining the partial or full exome deliver molecular diagnoses in many IRD families tested. However, approximately one in three families remain unsolved and unable to obtain personalised recurrence risk or access to new clinical trials or therapy...
March 31, 2022: International Journal of Molecular Sciences
https://read.qxmd.com/read/35330501/human-ipsc-derived-retinal-organoids-and-retinal-pigment-epithelium-for-novel-intronic-rpgr-variant-assessment-for-therapy-suitability
#38
JOURNAL ARTICLE
Fidelle Chahine Karam, To Ha Loi, Alan Ma, Benjamin M Nash, John R Grigg, Darshan Parekh, Lisa G Riley, Elizabeth Farnsworth, Bruce Bennetts, Anai Gonzalez-Cordero, Robyn V Jamieson
The RPGR gene encodes Retinitis Pigmentosa GTPase Regulator, a known interactor with ciliary proteins, which is involved in maintaining healthy photoreceptor cells. Variants in RPGR are the main contributor to X-linked rod-cone dystrophy (RCD), and RPGR gene therapy approaches are in clinical trials. Hence, elucidation of the pathogenicity of novel RPGR variants is important for a patient therapy opportunity. Here, we describe a novel intronic RPGR variant, c.1415 - 9A>G, in a patient with RCD, which was classified as a variant of uncertain significance according to current clinical diagnostic criteria...
March 21, 2022: Journal of Personalized Medicine
https://read.qxmd.com/read/35070660/metabolic-rescue-of-cone-photoreceptors-in-retinitis-pigmentosa
#39
REVIEW
Henry J Kaplan, Wei Wang, Niloofar Piri, Douglas C Dean
Retinitis pigmentosa (RP) encompasses a group of inherited retinal dystrophies characterized by the primary degeneration of rod and cone photoreceptors. It is a leading cause of visual disability, with an incidence of ~1 in 7000 persons. Although most RP is nonsyndromic, 20%-30% of patients with RP also have an associated nonocular condition. The gene mutations responsible for RP occur overwhelmingly in rod photoreceptors. Visual loss frequently begins with night blindness in adolescence, followed by concentric visual field loss, reflecting the principal dysfunction of rod photoreceptors...
October 2021: Taiwan Journal of Ophthalmology
https://read.qxmd.com/read/35006499/associations-between-fundus-types-and-clinical-manifestations-in-patients-with-rdh12-gene-mutations
#40
JOURNAL ARTICLE
Jing Jin, Liang Liang, Kun Jin, Hai-Jiang Zhang, Rong Liu, Yin Shen
To study the associations between RDH12 gene mutations, fundus types, and clinical manifestations. In total, 46 patients with inherited eye diseases caused by RDH12 gene mutations were included in this study. High-throughput chip capture sequencing, Sanger sequencing, and gene panel detection were used to determine that RDH12 was the pathogenic gene. All patients underwent the following detailed ophthalmic examinations: visual acuity, visual field, intraocular pressure, fundus photography, electroretinography, and optical coherence tomography (OCT)...
July 2022: Brain Topography
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