Department of Basic Medicine, Cangzhou Medical College, Cangzhou, China.
Department of Gynaecology, People's Hospital Affiliated to Cangzhou Medical College, Cangzhou, China.
Ann Hum Biol. 2024 Feb;51(1):2334719. doi: 10.1080/03014460.2024.2334719. Epub 2024 Jun 12.
Mitophagy and ferroptosis occur in intracerebral haemorrhage (ICH) but our understanding of mitophagy and ferroptosis-related genes remains incomplete.
This study aims to identify shared ICH genes for both processes.
ICH differentially expressed mitophagy and ferroptosis-related genes (DEMFRGs) were sourced from the GEO database and literature. Enrichment analysis elucidated functions. Hub genes were selected via STRING, MCODE, and MCC algorithms in Cytoscape. miRNAs targeting hubs were predicted using miRWalk 3.0, forming a miRNA-hub gene network. Immune microenvironment variances were assessed with MCP and TIMER. Potential small molecules for ICH were forecasted CMap database.
64 DEMFRGs and ten hub genes potentially involved in various processes like ferroptosis, TNF signalling pathway, MAPK signalling pathway, and NF-kappa B signalling pathway were discovered. Several miRNAs were identified as shared targets of hub genes. The ICH group showed increased infiltration of monocytic lineage and myeloid dendritic cells compared to the Healthy group. Ten potential small molecule drugs (e.g. Zebularine, TWS-119, CG-930) were predicted CMap.
Several shared genes between mitophagy and ferroptosis potentially drive ICH progression TNF, MAPK, and NF-kappa B pathways. These results offer valuable insights for further exploring the connection between mitophagy, ferroptosis, and ICH.
脑溢血(ICH)中存在自噬和铁死亡,但我们对自噬和铁死亡相关基因的了解仍不完整。
本研究旨在鉴定这两个过程共有的 ICH 基因。
从 GEO 数据库和文献中获取 ICH 差异表达的自噬和铁死亡相关基因(DEMFRGs)。通过富集分析阐明功能。在 Cytoscape 中使用 STRING、MCODE 和 MCC 算法选择枢纽基因。使用 miRWalk 3.0 预测针对枢纽基因的 miRNAs,形成 miRNA-枢纽基因网络。使用 MCP 和 TIMER 评估免疫微环境差异。使用 CMap 数据库预测潜在的 ICH 小分子。
发现了 64 个 DEMFRGs 和 10 个潜在参与铁死亡、TNF 信号通路、MAPK 信号通路和 NF-kappa B 信号通路等多种过程的枢纽基因。鉴定出几个 miRNAs 是枢纽基因的共同靶点。ICH 组与健康组相比,单核细胞系和髓样树突状细胞的浸润增加。预测了 10 种潜在的小分子药物(如 Zebularine、TWS-119、CG-930)。
自噬和铁死亡之间的几个共同基因可能通过 TNF、MAPK 和 NF-kappa B 通路驱动 ICH 进展。这些结果为进一步探索自噬、铁死亡和 ICH 之间的联系提供了有价值的见解。