Multi-omics-based mapping of decidualization resistance in patients with a history of severe preeclampsia

蜕膜化 间质细胞 生物 Wnt信号通路 上皮-间质转换 激光捕获显微切割 转录组 生物信息学 男科 癌症研究 细胞生物学 医学 下调和上调 遗传学 信号转导 基因 基因表达
作者
Irene Muñoz-Blat,Raúl Pérez-Moraga,Nerea Castillo-Marco,Teresa Cordero,Ana Ochando,Sheila Ortega-Sanchís,Marcos Parras,Rogelio Monfort-Ortíz,Elena Satorres-Pérez,Blanca Novillo-Del Álamo,Alfredo Perales,Matthew Gormley,Sofía Granados-Aparici,Rosa Noguera,Beatriz Rosón,Susan J. Fisher,Carlos Simón,Tamara Garrido‐Gómez
出处
期刊:Nature Medicine [Springer Nature]
标识
DOI:10.1038/s41591-024-03407-7
摘要

Endometrial decidualization resistance (DR) is implicated in various gynecological and obstetric conditions. Here, using a multi-omic strategy, we unraveled the cellular and molecular characteristics of DR in patients who have suffered severe preeclampsia (sPE). Morphological analysis unveiled significant glandular anatomical abnormalities, confirmed histologically and quantified by the digitization of hematoxylin and eosin-stained tissue sections. Single-cell RNA sequencing (scRNA-seq) of endometrial samples from patients with sPE (n = 11) and controls (n = 12) revealed sPE-associated shifts in cell composition, manifesting as a stromal mosaic state characterized by proliferative stromal cells (MMP11 and SFRP4) alongside IGFBP1+ decidualized cells, with concurrent epithelial mosaicism and a dearth of epithelial–stromal transition associated with decidualization. Cell–cell communication network mapping underscored aberrant crosstalk among specific cell types, implicating crucial pathways such as endoglin, WNT and SPP1. Spatial transcriptomics in a replication cohort validated DR-associated features. Laser capture microdissection/mass spectrometry in a second replication cohort corroborated several scRNA-seq findings, notably the absence of stromal to epithelial transition at a pathway level, indicating a disrupted response to steroid hormones, particularly estrogens. These insights shed light on potential molecular mechanisms underpinning DR pathogenesis in the context of sPE. A multi-omics analysis of decidualization resistance, which is implicated in various gynecological and obstetric conditions, in patients with a history of severe preeclampsia revealed defects in the stroma, epithelium and epithelial-to-stromal transition, with findings validated in a separate replication cohort.
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