High myopia and ageârelated cataracts are prevalent ocular disorders that compromise visual acuity. The molecular mechanisms underlying these conditions remain largely unclear. Here, microRNA (miRNA or miR) sequencing was performed on aqueous humor samples obtained from individuals with ageârelated cataracts and high myopia (AH, n=9), young patients with high myopia (YH, n=9) and a control group of elderly patients with ageârelated cataracts, matched in terms of sex and age (AN, n=9). miRNA sequencing and differential expression were performed. Intersecting miRNAs were identified, as well as metabolismârelated genes from MsigDB were intersected with miRNA target genes. Functional enrichment was performed and disease targets predicted using DisGeNET. A proteinâprotein interaction network was built with STRING, and hub genes were identified via Cytoscape. GeneMANIA analyzed hub genes, while drug predictions were made using Comparative Toxicogenomics Database. Long nonâcoding RNAs and transcription factors were predicted via mirNet and ChEA3. Results were validated by RTâqPCR. A total of 18 miRNAs were significantly differential expressed between AH and AN group, of which eight were upâ and 10 were downregulated. A total of 23 miRNAs were significantly differential expressed between the YH and AN group, of which six were upâ and 17 were downregulated. hsaâmiRâ490â3p, hsaâmiRâ4423â3p and hsaâmiRâ4485â3p may serve as characteristic miRNAs. A total of 289 target genes were predicted. Functional enrichment analysis yielded 169 terms, with 'herpes simplex virus 1 infection' the most significantly enriched. There were 19 metabolismâassociated target genes linked with these miRNAs, suggesting a potential role of metabolic processes in pathogenesis of these conditions. The biosynthetic process of carbohydrate derivatives may serve a key role during the development of high myopia. There were 10 hub genes and PropionylâCoA Carboxylase Subunit β could potentially serve as a biomarker. Drugs that could modulate their function were predicted; cyclosporine, tretinoin and acetaminophen may exert a broad influence on these hub genes. Hub gene networks based on the miRNAs were constructed to predict 44 associated long nonâcoding RNAs and 98 transcription factors. The present findings offer novel insights into the molecular mechanisms of ageârelated cataracts and high myopia and propose potential therapeutic targets.
Comprehensive bioinformatics analysis of metabolismârelated microRNAs in high myopia in young and old adults with ageârelated cataracts.
对患有年龄相关性白内障的青年和老年人高度近视中代谢相关microRNA进行综合生物信息学分析
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作者:Huang Fanfan, Chen Yanyi, Wu Jiaxue, Zheng Shijie, Huang Rongxi, Wan Wenjuan, Hu Ke
| 期刊: | Molecular Medicine Reports | 影响因子: | 3.500 |
| 时间: | 2025 | 起止号: | 2025 Feb |
| doi: | 10.3892/mmr.2024.13411 | 研究方向: | 代谢 |
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