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非调控 microRNAs 在年龄相关性黄斑变性发病机制中的作用。

The Role of Deregulated MicroRNAs in Age-Related Macular Degeneration Pathology.

机构信息

Ocular Development and Neurobiology Research Group, Zoology Department, School of Natural Sciences, University of Dublin, Trinity College Dublin, Dublin 2, Ireland.

Mater Retina Research Group, Mater Misericordiae University Hospital, Eccles St., Dublin 7, Ireland.

出版信息

Transl Vis Sci Technol. 2021 Feb 5;10(2):12. doi: 10.1167/tvst.10.2.12.

Abstract

PURPOSE

We previously identified three microRNAs (miRNAs) with significantly increased expression in the serum of patients with age-related macular degeneration (AMD) compared with healthy controls. Our objective was to identify potential functional roles of these upregulated miRNAs (miR-19a, miR-126, and miR-410) in AMD, using computational tools for miRNAs prediction and identification, and to demonstrate the miRNAs target genes and signaling pathways. We also aim to demonstrate the pathologic role of isolated sera-derived exosomes from patients with AMD and controls using in vitro models.

METHODS

miR-19a, miR-126, and miR-410 were investigated using bioinformatic approaches, including DIANA-mirPath and miR TarBase. Data on the resulting target genes and signaling pathways were incorporated with the differentially expressed miRNAs in AMD. Apoptosis markers, human apoptosis miRNAs polymerase chain reaction arrays and angiogenesis/vasculogenesis assays were performed by adding serum-isolated AMD patient or control patient derived exosomes into an in vitro human angiogenesis model and ARPE-19 cell lines.

RESULTS

A number of pathways known to be involved in AMD development and progression were predicted, including the vascular endothelial growth factor signaling, apoptosis, and neurodegenerative pathways. The study also provides supporting evidence for the involvement of serum-isolated AMD-derived exosomes in the pathology of AMD, via apoptosis and/or angiogenesis.

CONCLUSIONS

miR-19a, miR-126, miR-410 and their target genes had a significant correlation with AMD pathogenesis. As such, they could be potential new targets as predictive biomarkers or therapies for patients with AMD.

TRANSLATIONAL RELEVANCE

The functional analysis and the pathologic role of altered miRNA expression in AMD may be applicable in developing new therapies for AMD through the disruption of individual or multiple pathophysiologic pathways.

摘要

目的

我们之前发现,与健康对照者相比,年龄相关性黄斑变性(AMD)患者血清中三种 microRNAs(miRNAs)的表达显著增加。我们的目的是使用 miRNA 预测和鉴定的计算工具,鉴定这些上调的 miRNAs(miR-19a、miR-126 和 miR-410)在 AMD 中的潜在功能作用,并证明 miRNAs 的靶基因和信号通路。我们还旨在使用 AMD 患者和对照者分离的血清衍生外泌体的体外模型来证明其病理作用。

方法

使用 DIANA-mirPath 和 miR TarBase 等生物信息学方法研究 miR-19a、miR-126 和 miR-410。将所得靶基因和信号通路的数据与 AMD 中的差异表达 miRNAs 相结合。通过将 AMD 患者或对照患者分离的血清衍生外泌体添加到体外人血管生成模型和 ARPE-19 细胞系中,进行细胞凋亡标志物、人凋亡 miRNA 聚合酶链反应阵列和血管生成/血管发生测定。

结果

预测到了一些已知参与 AMD 发生和进展的途径,包括血管内皮生长因子信号转导、细胞凋亡和神经退行性途径。该研究还提供了支持证据,表明通过细胞凋亡和/或血管生成,血清分离的 AMD 衍生外泌体参与了 AMD 的病理学。

结论

miR-19a、miR-126、miR-410 及其靶基因与 AMD 发病机制有显著相关性。因此,它们可能是 AMD 患者有预测价值的生物标志物或治疗靶点的新潜在靶点。

翻译后注释

  1. 原文中的 "AMD" 是 "age-related macular degeneration" 的缩写,意为"年龄相关性黄斑变性"。

  2. "microRNAs" 是 "microRNAs" 的缩写,意为"microRNAs"。

  3. "DIANA-mirPath" 和 "miR TarBase" 是两个用于预测 miRNA 靶基因和信号通路的生物信息学工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dd2/7881277/6f21001ab3af/tvst-10-2-12-f001.jpg

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