Multi-level validation of high expression of PLAUR, FOSL2, and SLC11A1 in aortic dissection and their clinical

Zhenpeng Yuan1, Ruihan Chen1, Rong Fan1

  • 1The First Affiliated Hospital, Zhejiang University School of Medicine, 1367 West Wenyi Rd., Yuhang District, Hangzhou, Zhejiang Province, China.

PubMed

Insights

Researchers identified a new macrophage subpopulation, AD-mac, crucial in early aortic dissection (AD) pathogenesis. Key genes like PLAUR, FOSL2, and SLC11A1 were upregulated, offering potential diagnostic and therapeutic targets for AD.

Area of Science:

  • Immunology
  • Cardiovascular Biology
  • Genomics

Background:

  • Macrophages play a critical role in immune responses and influence the development and treatment of aortic dissection (AD).
  • Understanding macrophage heterogeneity in the AD microenvironment is essential for identifying pathogenic mechanisms.

Purpose of the Study:

  • To characterize macrophage subpopulations in aortic dissection using single-cell RNA sequencing.
  • To identify the functional and regulatory networks of AD-associated macrophages (AD-mac).
  • To discover novel molecular signatures and potential therapeutic targets for AD.

Main Methods:

  • Single-cell RNA sequencing (scRNA-seq) to analyze macrophage heterogeneity.
  • Computational tools including CellChat, Monocle, and CytoTRACE for functional analysis.
  • Machine learning algorithms (LASSO, SVM-RFE, RF, Boruta, DT) applied to bulk RNA-seq data.
  • Validation in human AD patient tissues and a murine AD model.

Main Results:

  • Identification of a novel macrophage subpopulation, AD-mac, prevalent in early AD stages.
  • Unraveling intercellular communication and regulatory networks of AD-mac.
  • Discovery of a panel of characteristic AD genes, including upregulated PLAUR, FOSL2, and SLC11A1 in human and murine AD tissues.
  • Confirmation of PLAUR, FOSL2, and SLC11A1 expression in CD68-positive macrophages within AD tissues.

Conclusions:

  • This study elucidates key pathogenic macrophage subpopulations and their gene networks in AD.
  • Identified AD-mac and associated genes offer potential as diagnostic biomarkers.
  • Findings provide a foundation for developing novel therapeutic strategies for aortic dissection.

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