4.4 Article

Identification of an miRNA Regulatory Network and Candidate Markers for Ischemic Stroke Related to Diabetes

期刊

INTERNATIONAL JOURNAL OF GENERAL MEDICINE
卷 14, 期 -, 页码 3213-3223

出版社

DOVE MEDICAL PRESS LTD
DOI: 10.2147/IJGM.S319503

关键词

type 2 diabetes mellitus; ischemic stroke; miRNAs; candidate gene; immune response

资金

  1. Project of Qingxiu District of Nanning Scientific Research and Technology Development Plan [2020058]
  2. Project of Guigang Scientific Research and Technology Development Plan [1908002]
  3. Scientific Research Project of Guangxi Health Commission [Z20200212, Z20200146, Z20210200, Z20210683]
  4. First Batch of High-level Talent Scientific Research Projects of the Affiliated Hospital of Youjiang Medical University for Nationalities in 2019 [R20196308]
  5. High-Level Medical Expert Training Program of Guangxi 139 Plan Funding [G201903049]
  6. Guangxi Medical and Health Key Discipline Construction Project (Department of Emergency Medicine, The First People's Hospital of Nanning)

向作者/读者索取更多资源

This study identified coexpression modules and candidate genes in T2DM and ischemic stroke, with a focus on immune-related biological functions and signaling pathways. MiR-576-3p was found to play significant regulatory roles in both conditions.
Purpose: Type 2 diabetes mellitus (T2DM) increases the risk of ischemic stroke and poor prognosis. This study aimed to identify molecular mechanisms that are dysregulated in T2DM-associated ischemic stroke and candidate genes that might serve as biomarkers. Methods: The top 25% variance genes in the GSE21321 and GSE22255 datasets were analyzed for coexpression. The differentially expressed mRNAs (DEmRs) between patients with T2DM or ischemic stroke and controls were analyzed. Then, the union of overlapping coexpressed genes and overlapping DEmRs was analyzed. The miRNAs differentially expressed in T2DM-associated ischemic stroke were also analyzed. CIBERSORT was used to evaluate the levels of infiltration by immune cells in T2DM-associated stroke. Results: Thirteen coexpression modules were identified in T2DM and 10 in ischemic stroke, and 594 module genes were shared between the two conditions. A total of 4452 mRNAs differentially expressed between T2DM patients and controls were identified, as were 2390 mRNAs differentially expressed between ischemic stroke and controls. The 771 union genes were enriched mainly in immune-related biological functions and signaling pathways. UBE2N, TGFB3, EXOSC1, and VIM were identified as candidate markers. In addition, we identified miR-576-3p as having the most regulatory roles in both T2DM and ischemic stroke. Mast cell activation was significantly down-regulated in T2DM but up-regulated in ischemic stroke. Conclusion: These findings provide numerous testable hypotheses about the pathways underlying T2DM-associated ischemic stroke, which may help identify therapeutic targets.

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