Jinzhong Yao, Huan Deng, Peng Wang, Bo Li, Zaisheng Qin
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Finally, CIBERSORT was used to explore immune cell infiltration changes and LRG-immune cell associations post-IS.</p><p><strong>Results: </strong>Nine LRGs were identified, including Spp1, Per2, Col4a1, Sfxn4, C1qbp, Myc, Apln, Cdo1, and Cav1, with Spp1, C1qbp, and Myc highly expressed in microglia. C1qbp and Myc are crucial in the acute phase, while Spp1 impacts both acute and chronic phases of IS. Microglia subcluster analysis revealed four subclusters (MG0-MG3). Immune cell infiltration analysis showed significant associations between these genes and immune cells.</p><p><strong>Conclusion: </strong>In summary, Spp1, C1qbp, and Myc are LRGs that are predominantly expressed in microglia and play regulatory roles in various stages of IS.</p>","PeriodicalId":19715,"journal":{"name":"Open Medicine","volume":"20 1","pages":"20251178"},"PeriodicalIF":1.7000,"publicationDate":"2025-04-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC12032981/pdf/","citationCount":"0","resultStr":"{\"title\":\"Dynamic changes in lactate-related genes in microglia and their role in immune cell interactions after ischemic stroke.\",\"authors\":\"Jinzhong Yao, Huan Deng, Peng Wang, Bo Li, Zaisheng Qin\",\"doi\":\"10.1515/med-2025-1178\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Objectives: </strong>This study aims to elucidate the dynamic changes in lactate-related genes (LRGs) in microglia following ischemic stroke (IS) and their associations with immune cells.</p><p><strong>Methods: </strong>We performed differential expression analysis on bulk-sequencing (GSE30655 and GSE35338) and scRNA-seq data (GSE174574) to identify differentially expressed genes. 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引用次数: 0
摘要
目的:本研究旨在阐明缺血性脑卒中后小胶质细胞乳酸相关基因(LRGs)的动态变化及其与免疫细胞的关系。方法:对bulk-sequencing (GSE30655和GSE35338)和scRNA-seq data (GSE174574)进行差异表达分析,鉴定差异表达基因。这些基因与来自MSigDB的乳酸基因相交,以鉴定脑卒中后LRGs。我们使用t-SNE可视化LRG在不同细胞类型中的分布,并选择小胶质细胞进行细胞间通讯、伪时间和功能富集分析。这些发现与GSE225948 scRNA-seq数据集相结合,以检查IS慢性期的LRG趋势。最后,利用CIBERSORT分析is后免疫细胞浸润变化及lrg -免疫细胞关联。结果:共鉴定出Spp1、Per2、Col4a1、Sfxn4、C1qbp、Myc、Apln、Cdo1、Cav1等9个LRGs,其中Spp1、C1qbp、Myc在小胶质细胞中高表达。C1qbp和Myc在急性期至关重要,而Spp1对IS的急性期和慢性期都有影响。小胶质细胞亚簇分析显示四个亚簇(mg2 - mg3)。免疫细胞浸润分析显示,这些基因与免疫细胞之间存在显著关联。结论:综上所述,Spp1、C1qbp和Myc是主要在小胶质细胞中表达的LRGs,在IS的各个阶段发挥调控作用。
Dynamic changes in lactate-related genes in microglia and their role in immune cell interactions after ischemic stroke.
Objectives: This study aims to elucidate the dynamic changes in lactate-related genes (LRGs) in microglia following ischemic stroke (IS) and their associations with immune cells.
Methods: We performed differential expression analysis on bulk-sequencing (GSE30655 and GSE35338) and scRNA-seq data (GSE174574) to identify differentially expressed genes. These genes were intersected with lactate genes from MSigDB to identify post-stroke LRGs. We used t-SNE to visualize LRG distribution across cell types and selected microglia for cell-cell communication, pseudo time, and functional enrichment analyses. These findings were integrated with the GSE225948 scRNA-seq dataset to examine LRG trends in the chronic phase of IS. Finally, CIBERSORT was used to explore immune cell infiltration changes and LRG-immune cell associations post-IS.
Results: Nine LRGs were identified, including Spp1, Per2, Col4a1, Sfxn4, C1qbp, Myc, Apln, Cdo1, and Cav1, with Spp1, C1qbp, and Myc highly expressed in microglia. C1qbp and Myc are crucial in the acute phase, while Spp1 impacts both acute and chronic phases of IS. Microglia subcluster analysis revealed four subclusters (MG0-MG3). Immune cell infiltration analysis showed significant associations between these genes and immune cells.
Conclusion: In summary, Spp1, C1qbp, and Myc are LRGs that are predominantly expressed in microglia and play regulatory roles in various stages of IS.
期刊介绍:
Open Medicine is an open access journal that provides users with free, instant, and continued access to all content worldwide. The primary goal of the journal has always been a focus on maintaining the high quality of its published content. Its mission is to facilitate the exchange of ideas between medical science researchers from different countries. Papers connected to all fields of medicine and public health are welcomed. Open Medicine accepts submissions of research articles, reviews, case reports, letters to editor and book reviews.