Clinical Role of Epigenetics and Network Analysis in Eye Diseases: A Translational Science Review.

J Ophthalmol

Clinical Department of Internal Medicine and Specialistics, Department of Advanced Clinical and Surgical Sciences, University of Campania "Luigi Vanvitelli", 80138 Naples, Italy.

Published: December 2019


Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Network medicine is a molecular-bioinformatic approach analyzing gene-gene interactions that can perturb the human interactome. This review focuses on epigenetic changes involved in several ocular diseases, such as DNA methylation, histone and nonhistone post-translational modifications, and noncoding RNA regulators. Although changes in aberrant DNA methylation play a major role in the pathogenesis of most ocular diseases, histone modifications are seldom investigated. Hypermethylation in and hypomethylation in promoter genes may play a crucial role in pterygium development; hypermethylation in regulatory regions of and genes appear to be diagnostic biomarkers of cataract; hypomethylation of TGF-1 promoter may trigger glaucoma onset; hypermethylation of the gene might be associated with pseudoexfoliation syndrome. A large panel of upregulated micro-RNAs (miRNAs), including hsa-hsa-miR-494, hsa-let-7e, hsa-miR-513-1, hsa-miR-513-2, hsa-miR-518c, hsa-miR-129-1, hsa-miR-129-2, hsa-miR-198, hsa-miR-492, hsa-miR-498, hsa-miR-320, hsa-miR-503, and hsa-miR-373, may have a putative role in the development of retinoblastoma. Hypermethylation of H3K4 and hypomethylation of H3K27 at the locus are putative pathogenic mechanisms involved in corneal dystrophies. Determining how, where, and when specific epigenetic changes trigger ocular diseases may provide useful clinical biomarkers for their prevention, diagnosis, and management, as well as innovative drug targets. PF-04523655, a 19-nucleotide methylated double-stranded siRNA targeting the gene, showed a dose-related improvement in best-corrected visual acuity (BCVA) in patients affected by diabetic macular edema. The observed results support a clinical network-based research program aimed to clarify the role of epigenetic regulators in the development of ocular diseases and personalized therapy.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6959156PMC
http://dx.doi.org/10.1155/2019/2424956DOI Listing

Publication Analysis

Top Keywords

ocular diseases
16
epigenetic changes
8
dna methylation
8
diseases
5
clinical role
4
role epigenetics
4
epigenetics network
4
network analysis
4
analysis eye
4
eye diseases
4

Similar Publications

Purpose: There is a lack of research on the extent to which non-Sjögren collagen vascular diseases affect the ocular surface. This study aims to understand the associations between collagen vascular diseases and dry eye and corneal ulcers.

Methods: This study analyzed a random 5% sample of national Medicare beneficiaries from 2011 to 2015 and included claims for those with collagen vascular diseases and either dry eye or corneal ulcers (n = 2,688,114).

View Article and Find Full Text PDF

Purpose: Advanced, pre-treated TNBC has a dismal prognosis and lacks effective options beyond standard cytotoxics. We previously showed, via phosphoproteomic screening, that CDK6 and ERK hyperactivation are linked to adverse outcomes and represent actionable targets. This prompted us to evaluate palbociclib and binimetinib in advanced TNBC after one or two prior therapies.

View Article and Find Full Text PDF

Purpose: To characterize corneal immune cell morphodynamics and nerve features, and define the in vivo immune landscape in older adults with human immunodeficiency virus (HIV) receiving antiretroviral therapy (ART), relative to healthy age-matched adults.

Methods: In this cross-sectional study, 16 HIV-positive individuals receiving ART and 15 age-matched controls underwent ocular surface examinations and functional in vivo confocal microscopy (Fun-IVCM). Time-lapsed videos were created to analyze corneal immune cells (T cells, dendritic cells [DCs], macrophages).

View Article and Find Full Text PDF

Quantification of Normative Human Choriocapillaris Measures Across the Macula.

Invest Ophthalmol Vis Sci

September 2025

Division of Biomedical Physics, Office of Science and Engineering Laboratories, Center for Devices and Radiological Health, U.S. Food and Drug Administration, Silver Spring, Maryland, United States.

Purpose: To assess macular choriocapillaris (CC) metrics in healthy volunteers (HVs) without ocular disease and demonstrate CC variations in patients with inherited retinal dystrophies (IRDs) using adaptive optics optical coherence tomography angiography (AO-OCTA).

Methods: Twenty-one HVs and three IRD patients were imaged. Macular variation in 20 HVs in CC metrics (CC density, CC diameter, CC tortuosity, void diameter, void area, lobule count, lobule area, and RPE-CC distance) were assessed by imaging a 28° strip of overlapping AO-OCTA volumes (3° × 3°) from the optic nerve head to the temporal macula.

View Article and Find Full Text PDF

Purpose: Advancements in sequencing technologies have significantly improved clinical genetic testing, yet the diagnostic yield remains around 30-40%. Emerging technologies are now being deployed to address the remaining diagnostic gap.

Methods: We tested whether short-read genome sequencing could increase the diagnostic yield in individuals enrolled into the UCI-GREGoR research study, who had suspected Mendelian conditions and prior inconclusive testing.

View Article and Find Full Text PDF