Authors
Jiahui Xiao, Shuyi Yu, Shiru Xu, Guanying You, Meilan Mo, Ruochun Lian, Cong Chen, Xueling Zhang, Yuye Li
Published in
Reproduction (Cambridge, England). Sep 07, 2026. Epub Sep 07, 2026.
Abstract
Chronic endometritis (CE) is a persistent inflammatory disorder of the endometrium that is increasingly recognized as an important cause of reproductive failure. However, the molecular mechanisms by which CE impairs endometrial receptivity remain incompletely understood. Here, we found that decidualization markers IGFBP1 and PRL were significantly decreased in CE patients, accompanied by abnormal glandular architecture. Transcriptomic analysis revealed sphingolipid metabolism as a dysregulated pathway, with SphK1 markedly downregulated. S1P levels were reduced in both CE tissues and LPS-treated stromal cells during decidualization. Functional experiments confirmed that SphK1 is essential for this process, and its deficiency impairs decidualization. Mechanistically, transcription factor C/EBPδ directly bound and activated the SphK1 promoter. CE endometrium showed reduced C/EBPδ and SphK1, alongside increased LC3B, indicating autophagic dysregulation. Furthermore, S1P was demonstrated to act extracellularly through the G protein-coupled receptor S1PR3 to maintain autophagic homeostasis, thereby regulating endometrial decidualization. In conclusion, suppression of the C/EBPδ-SphK1 axis impairs decidualization with excessive autophagy, revealing a mechanistic link between chronic inflammation, sphingolipid dysregulation, and reproductive failure.
PMID:
42704675
Bibliographic data and abstract were imported from PubMed on 08 Sep 2026.
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