| Literature DB >> 28815013 |
Xinyuan Zhang1, Lin Zhao1, Brett Hambly2, Shisan Bao2, Kaiyue Wang1.
Abstract
In recent years, considerable progress has been made in the molecular mechanisms of epigenetics in disease development and progression, the reversible characteristics of epigenetic modification provide new insights for the treatment of such diseases. The pathogenesis of diabetic retinopathy (DR) has not yet been fully understood, treatment of refractory and recurrent diabetic macular edema remains a big change in clinical practice. This review emphasizes that reversibility of epigenetic modification could provide a new strategy for the prevention and treatment of diseases.Entities:
Keywords: Chromatin remodeling; DNA methylation; Diabetic retinopathy; Epigenetic modifications; Gene; Histone modification; Non-coding RNA; Therapeutic target
Year: 2017 PMID: 28815013 PMCID: PMC5557533 DOI: 10.1186/s13578-017-0167-1
Source DB: PubMed Journal: Cell Biosci ISSN: 2045-3701 Impact factor: 7.133
The role of DNA methylation in the pathogenesis of diabetic retinopathy
| Refs | Study type | DNA methylation |
|---|---|---|
| Diabetes Metab [ | Clinical study (serum) | Global DNA methylation↑ |
| BMC Med [ | Clinical study (blood) | DNA methylation↓ in PDR, differential DNA methylation of 28 CpG sites in 17 genes (AHRR, GIPR, GLRA1, and BCOR) |
| Invest Ophthalmol Vis Sci [ | Invitro/animal (STZ diabetic mice) | DNA methylation of polymerase gamma ( |
| Lab Invest [ | Invitro/animal (STZ diabetic mice) | Dnmt1 binding to Matrix metalloproteinase -9 promoter→MMP↑→5mC↓ |
| Invest Ophthalmol Vis Sci [ | Invitro/animal study (Bovine retinal endothelial) | mtDNA methylation↑ |
miRNA and diabetic retinopathy
| Refs | Study type | Identified miRNA |
|---|---|---|
| Graefes Arch Clin Exp Ophthalmol [ | Clinical study (serum & vitreous) | miR-15a, miR-320b, miR-93, miR-423-5p, miR-29a, miR-320a |
| Diabetes [ | Clinical study (serum) | miR-27b, miR-454, miR-28-3p, miR-122, miR-320a, miR-125b, miR-221 |
| Sci Rep [ | Clinical study (serum) | miR-125b, miR-221, miR-132, miR-100, miR-376a |
| IOVS Nuria [ | Clinical study (E/PCs) | miR-221, miR-126, miR-222 |
| Cell Physiol Biochem [ | Clinical study (serum) | miR-21, miR-181c, miR-1179 |
| FEBS Lett [ | Invitro/animal OIR mice study Retina | miR-184 |
| BRBC [ | Invitro/animal study Retina | miR-192-5P, miR-335 |
| Diabetologia [ | Invitro/animal diabetic rats (E/PCs) | miR-195 |
| Circ Res [ | Invitro/animal (STZ diabetic rat/db/db mice) Retina/(E/PCs) | IncRNA-myocardial infarction-associated transcript (MIAT)and miR—150 |
| Int J Med Sci [ | Invitro/animal STZ diabetic rat study Retina | miR-126 |
| Mol Vis [ | Invitro/animal STZ diabetic rat study Retina | miR-29b |
| IOVS [ | Invitro/animal Akita mouse/(E/PCs) | miR-146,miR-200b |
| IOVS [ | Invitro/animal Retina/(E/PCs) | miR-200b |
| IOVS [ | Invitro/animal Akita and wild-type (WT) mice study Retina | miR-200b |
| Diabetes [ | Invitro/animal (STZ diabetic rat) study Retina | miR-200b |
| Molecular Therapy [ | Animal study (mice with oxygen-induced ischemic retinopathy) retina | miR-106a,-146,-181,-199a,-214,-424, -451 |
| The International Journal of Biochemistry & Cell Biology [ | Invitro study | MiR-18b |
Fig. 1The role of genetics and epigenetics in the pathogenesis of diabetic retinopathy. Hyperglycemia induced breakdown of the blood retinal barrier (BRB) damage of the retinal neuronal vascular unit are the early pathogenic characteristics of DR. This figure illustrates the role of genetics (point mutation, deletion, amplification) and epigenetics (DNA methylation, histone modification, noncoding RNA, Chromatin remodeling) downstream of hyperglycemia in leading to diabetic retinopathy