Integrated lipidomics and transcriptomics reveal the key role of ceramides in the development of endometriosis

Clicks: 5
ID: 324796
2026
Article Quality & Performance Metrics
Overall Quality
Not rated
Combines reader engagement with the AI quality analysis. This article has not been analysed, so there is no overall score — reader engagement is measured and shown alongside.
AI Quality Assessment
Not analyzed
Readership in this journal
Emerging

Ranked #25 of 29 articles by views in molecular human reproduction

Most read Least read

Bar heights use a square-root scale.

Mint this article as an NFT
Not yet minted

Create a permanent, verifiable on-chain record of this article on the Scimatic Network. The NFT is held in your Journament account, and you can withdraw it to your own wallet at any time.

5 SUSD one-off · no wallet required
Abstract
Endometriosis (EMs) is a chronic gynecological disease with poorly understood pathogenesis. This study integrated lipidomics and transcriptomics to systematically investigate aberrant sphingolipid metabolism in EMs, aiming to identify pathogenic mechanisms and therapeutic targets. Differential metabolites and genes in EMs lesions were identified through multi-omics profiling, followed by gene-metabolite network construction via MetaboAnalyst. EMs mouse models were established by intraperitoneal endometrial transplantation. Mice received ceramide or EMs therapeutics for two weeks. Lesion size, cytokines, ceramide levels, apoptosis, SMPD3 expression, and CD206+ macrophage infiltration were assessed using ELISA, TUNEL, Western blot, RT‑qPCR, flow cytometry, and dual immunofluorescence. Integrated analysis revealed substantial metabolic and transcriptional alterations in EMs lesions. Sphingomyelin (SM) emerged as a central network hub, while ceramide (Cer), generated via SMPD3-mediated SM hydrolysis, was markedly accumulated in lesions. In vivo, exogenous Cer(d18:1/20:0) supplementation exacerbated ceramide accumulation, enhanced anti-apoptotic capacity, intensified inflammatory responses, and promoted CD206+ macrophages infiltration. Conversely, effective EMs therapeutics suppressed ceramide accumulation, downregulated macrophage SMPD3 expression, and reduced CD206+ macrophages infiltration. Collectively, we identify the SM-SMPD3-Cer axis as a novel metabolic driver of EMs progression. Pathological ceramide accumulation facilitates lesion development by promoting inflammation, enhancing CD206+ macrophages polarization, and suppressing apoptosis. These findings provide new metabolic insights and a theoretical foundation for ceramide-targeted therapeutic strategies in endometriosis.
Reference Key
openalex_W7202252840 Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors Shanshan Mei, Nan Ding, Mengyi Cheng, Chen Zhang, Jinli Miao, Mengli Liu, Xiaojun Shi, Xinyan Wang
Journal molecular human reproduction
Year 2026
DOI
10.1093/molehr/gaag047
URL
Keywords Keywords not found

Citations

No citations found. To add a citation, contact the admin at info@scimatic.org

No comments yet. Be the first to comment on this article.