Unraveling pathogenesis, biomarkers and potential therapeutic agents for endometriosis associated with disulfidptosis

Xiaoxuan Zhao1,2, Yang Zhao3, Yuanyuan Zhang4

  • 1Department of Traditional Chinese Medicine (TCM) Gynecology, Hangzhou TCM Hospital Affiliated to Zhejiang Chinese Medical University, Hangzhou, China.

Abstract

Insights

This study reveals a strong link between disulfidptosis and endometriosis (EMs). Researchers identified key genes and potential therapeutic compounds, offering new avenues for diagnosing and treating EMs.

Area of Science:

  • Biomedical Science
  • Molecular Biology
  • Genetics

Background:

  • Endometriosis (EMs) is a complex gynecological condition with an unknown cause.
  • Disulfidptosis, a programmed cell death pathway triggered by disulfide stress, presents a potential therapeutic target.
  • The role of disulfidptosis-related genes (DRGs) in EMs pathogenesis is not well understood.

Purpose of the Study:

  • To investigate the involvement of DRGs in EMs.
  • To identify novel diagnostic markers for EMs.
  • To discover potential therapeutic compounds for EMs based on disulfidptosis.

Main Methods:

  • Bioinformatics analysis of eutopic and ectopic endometrial tissues.
  • Differential gene expression analysis and protein-protein interaction network construction.
  • Machine learning algorithms (BLR, LASSO, SVM-RFE, XGBoost) for signature gene identification.
  • Immune infiltration analysis and validation in a murine model.

Main Results:

  • EMs is significantly associated with disulfidptosis, with identified DRGs in eutopic and ectopic tissues.
  • Hub genes correlated with the immune microenvironment in EMs were identified.
  • Machine learning models accurately predicted EMs using signature genes (e.g., IQGAP1, SLC7A11, CD2AP, MYH10, PDLIM1).
  • Twelve compounds were screened, with tretinoin showing therapeutic potential in a murine model.

Conclusions:

  • A significant association between disulfidptosis and EMs has been confirmed.
  • The identified signature genes and compounds hold promise for EMs diagnosis and treatment.
  • Further research into disulfidptosis mechanisms in EMs could lead to groundbreaking therapeutic strategies.

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