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Time-series single-cell transcriptomic profiling of luteal-phase endometrium uncovers dynamic characteristics and its dysregulation in recurrent implantation failures
by
Huang, Yuanhua
, Wang, Jue
, Xiao, Xiao
, Zhai, Yanhui
, Liu, Yijun
, Yao, Yuanqing
, Cao, Dandan
, Zhang, Bolun
, Chang, Yi
, Zhu, Kongfu
, Lee, Yin Lau
, Liu, Ye
, Yeung, William Shu Biu
, Cheng, Yanfei
, Shang, Ye
in
38/39
/ 631/114/2397
/ 631/337/2019
/ 692/699/2732/1577
/ Adult
/ Computer applications
/ Dynamic characteristics
/ Embryo Implantation - genetics
/ Endometrium
/ Endometrium - metabolism
/ Epithelial cells
/ Epithelial Cells - metabolism
/ Epithelium
/ Failure
/ Female
/ Gene Expression Profiling - methods
/ Humanities and Social Sciences
/ Humans
/ Implantation
/ Infertility
/ Infertility, Female - genetics
/ Infertility, Female - metabolism
/ Luteal Phase - metabolism
/ multidisciplinary
/ Pattern analysis
/ Science
/ Science (multidisciplinary)
/ Single-Cell Analysis - methods
/ Software
/ Time series
/ Transcriptome
/ Transcriptomics
2025
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Time-series single-cell transcriptomic profiling of luteal-phase endometrium uncovers dynamic characteristics and its dysregulation in recurrent implantation failures
by
Huang, Yuanhua
, Wang, Jue
, Xiao, Xiao
, Zhai, Yanhui
, Liu, Yijun
, Yao, Yuanqing
, Cao, Dandan
, Zhang, Bolun
, Chang, Yi
, Zhu, Kongfu
, Lee, Yin Lau
, Liu, Ye
, Yeung, William Shu Biu
, Cheng, Yanfei
, Shang, Ye
in
38/39
/ 631/114/2397
/ 631/337/2019
/ 692/699/2732/1577
/ Adult
/ Computer applications
/ Dynamic characteristics
/ Embryo Implantation - genetics
/ Endometrium
/ Endometrium - metabolism
/ Epithelial cells
/ Epithelial Cells - metabolism
/ Epithelium
/ Failure
/ Female
/ Gene Expression Profiling - methods
/ Humanities and Social Sciences
/ Humans
/ Implantation
/ Infertility
/ Infertility, Female - genetics
/ Infertility, Female - metabolism
/ Luteal Phase - metabolism
/ multidisciplinary
/ Pattern analysis
/ Science
/ Science (multidisciplinary)
/ Single-Cell Analysis - methods
/ Software
/ Time series
/ Transcriptome
/ Transcriptomics
2025
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Time-series single-cell transcriptomic profiling of luteal-phase endometrium uncovers dynamic characteristics and its dysregulation in recurrent implantation failures
by
Huang, Yuanhua
, Wang, Jue
, Xiao, Xiao
, Zhai, Yanhui
, Liu, Yijun
, Yao, Yuanqing
, Cao, Dandan
, Zhang, Bolun
, Chang, Yi
, Zhu, Kongfu
, Lee, Yin Lau
, Liu, Ye
, Yeung, William Shu Biu
, Cheng, Yanfei
, Shang, Ye
in
38/39
/ 631/114/2397
/ 631/337/2019
/ 692/699/2732/1577
/ Adult
/ Computer applications
/ Dynamic characteristics
/ Embryo Implantation - genetics
/ Endometrium
/ Endometrium - metabolism
/ Epithelial cells
/ Epithelial Cells - metabolism
/ Epithelium
/ Failure
/ Female
/ Gene Expression Profiling - methods
/ Humanities and Social Sciences
/ Humans
/ Implantation
/ Infertility
/ Infertility, Female - genetics
/ Infertility, Female - metabolism
/ Luteal Phase - metabolism
/ multidisciplinary
/ Pattern analysis
/ Science
/ Science (multidisciplinary)
/ Single-Cell Analysis - methods
/ Software
/ Time series
/ Transcriptome
/ Transcriptomics
2025
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Time-series single-cell transcriptomic profiling of luteal-phase endometrium uncovers dynamic characteristics and its dysregulation in recurrent implantation failures
Journal Article
Time-series single-cell transcriptomic profiling of luteal-phase endometrium uncovers dynamic characteristics and its dysregulation in recurrent implantation failures
2025
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Overview
Understanding human endometrial dynamics in the establishment of endometrial receptivity remains a challenge, which limits early diagnosis and treatment of endometrial-factor infertility. Here, we decode the endometrial dynamics of fertile women across the window of implantation and characterize the endometrial deficiency in women with recurrent implantation failure. A computational model capable of both temporal prediction and pattern discovery is used to analyze single-cell transcriptomic data from over 220,000 endometrial cells. The time-series atlas highlights a two-stage stromal decidualization process and a gradual transitional process of the luminal epithelial cells across the window of implantation. In addition, a time-varying gene set regulating epithelium receptivity is identified, based on which the recurrent implantation failure endometria are stratified into two classes of deficiencies. Further investigation uncovers a hyper-inflammatory microenvironment for the dysfunctional endometrial epithelial cells of recurrent implantation failure. The holistic characterization of the physiological and pathophysiological window of implantation and a computational tool trained on this temporal atlas provide a platform for future therapeutic developments.
Time-series single-cell transcriptomic characterization of luteal-phase endometrium in fertile women with a variational autoencoder model uncovers the association of decreased epithelial receptivity and hyperinflammatory microenvironment in recurrent implantation failures.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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