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March 13, 2026International Journal of Molecular Sciences0 citationsOpen Access

Exosome-Enriched Hub Gene Networks Identify Diagnostic Biomarkers and Repurposable Therapeutic Targets in Endometriosis

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MTMeng-Hsiu TsaiSWShaoping WengLSLi-Jen Su

Key Points

  • The aim is to identify non-invasive biomarkers and molecular targets for endometriosis using gene expression data.
  • Reprocessed three GEO microarray cohorts to find consensus gene expression signals.
  • Applied a strict intersection strategy to identify conserved transcriptional signals.
  • Utilized protein–protein interaction topology to prioritize hub genes and connectivity mapping for drug repurposing.
  • Identified 262 differentially expressed genes related to immunity, inflammation, and angiogenesis.
  • Isolated 11 hub genes integral to a immune-adhesion-angiogenesis network.
  • Discovered that 24% of the consensus genes are linked to exosomes, highlighting their potential as liquid biopsy candidates.

Abstract

Endometriosis is a heterogeneous chronic inflammatory disorder associated with substantial diagnostic delay and limited therapeutic options, highlighting the need of robust non-invasive biomarkers and actionable molecular targets to complement existing low-sensitivity tests. To identify conserved pathogenic mechanisms with translational potential, here, we uniformly reprocessed three independent the Gene Expression Omnibus (GEO) microarray cohorts (GSE7305, GSE25628, and GSE11691) and applied a strict, directionally consistent intersection strategy to identify conserved transcriptional signals. We identified 262 consensus differentially expressed genes enriched for immunity/inflammation, cell adhesion and migration, and angiogenesis, consistent with key biological hallmarks of lesion establishment and persistence. Protein–protein interaction topology prioritized 11 highly connected hub genes (VCAM1, CCL2, MCAM, CD14, CD24, FGFR1, SIRPA, CSF1R, S100A9, S100A8, and LY96) that likely act as an integrated immune-adhesion-angiogenesis axis. Notably, 63/262 (24%) of the consensus genes were annotated to the extracellular exosome compartment, supporting their translational relevance as liquid-biopsy candidates. Finally, connectivity mapping using the LINCS L1000 framework nominated small-molecule perturbagens predicted to reverse the endometriosis-associated signature, providing a rational starting point for drug-repurposing experiments. In conclusion, this study elucidates a conserved immune–adhesion–angiogenesis axis driven by an 11-gene hub network in endometriosis. These core regulators represent promising candidates for the development of non-invasive liquid biopsies and precision, non-hormonal therapeutics.

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Cite This Study

Tsai et al. (2026) studied this question.

synapsesocial.com/papers/69b3acc502a1e69014ccebc0https://doi.org/10.3390/ijms27062572
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