主页 文献库文献详情
PMID: 41772202 已发表 · ppublish 英语

Single-nucleus multi-omics dissection of dysregulated trophoblast development and disrupted immune microenvironment in complete hydatidiform moles.

Science China. Life sciences ·第 69 卷 ·第 7 期 ·2026-07-00

Chen X, Yu R, Gao X, Zhang X, Gao Y, Han Y, Lu M, Xie H, Zou Y, Xu P, Chen ZJ, Yu Y, Zhao H, Zhao R

摘要

Hydatidiform mole (HM) is driven by aberrant trophoblast proliferation, disrupting embryonic development and leading to pregnancy loss with increased risk of malignant progression. Despite its clinical significance, the cellular and molecular heterogeneity of HM remains poorly characterized. To address this, we integrated single-nucleus RNA sequencing (snRNA-seq), single-nucleus transposase-accessible chromatin sequencing (snATAC-seq), and spatial transcriptomics to construct a cell-resolved atlas of androgenetic complete HM compared with gestational age-matched controls. The three major trophoblast lineages exhibit distinct differentiation relationships and functional associations: villous cytotrophoblast (VCT) are trophoblast cells with stemness, which can differentiate into hormone-secreting syncytiotrophoblast (SCT) and invasive migratory extravillous trophoblast (EVT). Our findings demonstrate that imprinted genes exhibited cell-type-specific expression patterns in HM, with more pronounced dysregulation in trophoblasts compared to non-trophoblast cells. We identified a deficiency of the progenitor subpopulation VCT1 with inactivation of the stemness-maintaining core transcription factor TP63. The invasive and migratory capacities of EVT were enhanced in HM, along with hyperactivation of the transcription factor MYCN and intensified crosstalk with the immune microenvironment. The SCT-Mature1 compartment displayed impaired maturation and downregulation of placenta-specific hormones, including PSG, CSH, and PAPPA. Machine learning analysis identified RASA1 as a novel key regulator characterized by its specific low expression in HM, which was further validated using hTSC (human trophoblast stem cell) to be involved in SCT differentiation. Potential therapeutic targets, such as MYCN and RASA1, and the diagnostic utility of monitoring placenta-specific hormone levels, are expected. Together, our findings establish a framework for understanding HM-specific placental dysfunction and developing future targeted diagnoses and therapies.

关键词
gene imprint hydatidiform moles multi-omics snRNA-seq trophoblast development
文献信息
期刊
Science China. Life sciences
期刊简称
Sci China Life Sci
ISSN
1869-1889
发表日期
2026-07-00
语言
英语
国家/地区
China
NLM ID
101529880
分析服务
分析服务

联系地址

山东省济南市章丘区文博路2号

齐鲁师范学院 genelibs生信实验室

山东省济南市高新区舜华路750号

大学科技园北区F座4单元2楼

电话: 0531-88819269

微信公众号

关注微信订阅号,实时查看信息,关注医学生物学动态。


商务邮箱

E-mail: [email protected]