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Altered Gene Expression in the Testis of Infertile Patients with Nonobstructive Azoospermia

机译:患有非机构厌氧症患者的睾丸睾丸中的改变基因表达

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Background . The molecular mechanism of nonobstructive azoospermia (NOA) remains unclear. The aim of this study was to identify gene expression changes in NOA patients and to explore potential biomarkers and therapeutic targets. Methods . The gene expression profiles of GSE45885 and GSE145467 were collected from the Gene Expression Omnibus (GEO) database, and the differences between NOA and normal spermatogenesis were analyzed. Enrichment analysis was performed to explore biological functions for common differentially expressed genes (DEGs) in GSE45885 and GSE145467. Coexpression analysis of DEGs in GSE45885 was performed, and two modules with the highest correlation with NOA were screened. Key genes were then screened from the intersection genes of the two modules and common DEGs and PPI network. The expression of key genes was validated by quantitative real-time polymerase chain reaction (qRT-PCR) experiments. Finally, through miRTarBase, miRDB, and RAID, the miRNAs were predicted to regulate key genes, respectively. Results . A total of 345 common DEGs were identified and they were mainly related to spermatogenesis, insulin signaling pathway. Coexpression analysis of DEGs in GSE45885 yielded eight modules; MEblack and MEturquoise had the highest correlation with NOA. Six genes in MEturquoise and RNF141 in MEblack were identified as key genes. qRT-PCR experiments validated the differential expression of key genes between NOA and control. Furthermore, RNF141 was regulated by the largest number of miRNAs. Conclusion . Our findings suggest that the significant change expression of key genes may be potential markers and therapeutic targets of NOA and may have some impact on the development of NOA.
机译:背景 。非磁性化学血吸虫(NOA)的分子机制仍不清楚。本研究的目的是鉴定NOA患者的基因表达变化并探索潜在的生物标志物和治疗目标。方法 。从基因表达综合(Geo)数据库收集GSE45885和GSE145467的基因表达谱,分析了NOA和正常精子发生之间的差异。进行富集分析以探讨GSE45885和GSE145467中常见的差异表达基因(DEGS)的生物学功能。进行了GSE45885中DEG的共表达分析,筛选了与NOA相关最高的两个模块。然后从两个模块和常见的DEG和PPI网络的交叉点基因筛选键基因。通过定量实时聚合酶链反应(QRT-PCR)实验验证了关键基因的表达。最后,通过Mirtarbase,Mirtbase和RAID,预测MIRNA分别调节关键基因。结果 。鉴定了总共345只常见的常见次数,它们主要与精子发生有关,胰岛素信号传导途径。 GSE45885中DEGS的共用分析产生了八个模块; Meblack和Meturquoise与NOA相关的最高相关性。 MeCurrquoise中的六个基因和MeBlack中的RNF141被鉴定为关键基因。 QRT-PCR实验验证了NOA和控制之间的关键基因的差异表达。此外,RNF141受到最大数量的miRNA。结论 。我们的研究结果表明,关键基因的显着变化表达可能是NOA的潜在标志物和治疗目标,可能对NOA的发展产生一些影响。

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