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Differential gene expression in decidualized human endometrial stromal cells induced by different stimuli
by
Maekawa, Ryo
, Doi-Tanaka, Yumiko
, Fujimura, Taishi
, Sato, Shun
, Sugino, Norihiro
, Shiroshita, Amon
, Tamura, Isao
, Shirafuta, Yuichiro
, Taketani, Toshiaki
in
17β-Estradiol
/ 692/163
/ 692/163/2743
/ Acetic acid
/ Angiogenesis
/ Cells, Cultured
/ Cyclic AMP
/ Decidua - metabolism
/ Endometrium
/ Endometrium - metabolism
/ Estrogens
/ Female
/ Gene Expression
/ Humanities and Social Sciences
/ Humans
/ Immune system
/ Medroxyprogesterone acetate
/ Medroxyprogesterone Acetate - pharmacology
/ Menstruation
/ multidisciplinary
/ Nucleotide sequence
/ Ontology
/ RNA - metabolism
/ Science
/ Science (multidisciplinary)
/ Signal transduction
/ Stromal cells
/ Stromal Cells - metabolism
/ Transcriptomes
2024
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Differential gene expression in decidualized human endometrial stromal cells induced by different stimuli
by
Maekawa, Ryo
, Doi-Tanaka, Yumiko
, Fujimura, Taishi
, Sato, Shun
, Sugino, Norihiro
, Shiroshita, Amon
, Tamura, Isao
, Shirafuta, Yuichiro
, Taketani, Toshiaki
in
17β-Estradiol
/ 692/163
/ 692/163/2743
/ Acetic acid
/ Angiogenesis
/ Cells, Cultured
/ Cyclic AMP
/ Decidua - metabolism
/ Endometrium
/ Endometrium - metabolism
/ Estrogens
/ Female
/ Gene Expression
/ Humanities and Social Sciences
/ Humans
/ Immune system
/ Medroxyprogesterone acetate
/ Medroxyprogesterone Acetate - pharmacology
/ Menstruation
/ multidisciplinary
/ Nucleotide sequence
/ Ontology
/ RNA - metabolism
/ Science
/ Science (multidisciplinary)
/ Signal transduction
/ Stromal cells
/ Stromal Cells - metabolism
/ Transcriptomes
2024
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Differential gene expression in decidualized human endometrial stromal cells induced by different stimuli
by
Maekawa, Ryo
, Doi-Tanaka, Yumiko
, Fujimura, Taishi
, Sato, Shun
, Sugino, Norihiro
, Shiroshita, Amon
, Tamura, Isao
, Shirafuta, Yuichiro
, Taketani, Toshiaki
in
17β-Estradiol
/ 692/163
/ 692/163/2743
/ Acetic acid
/ Angiogenesis
/ Cells, Cultured
/ Cyclic AMP
/ Decidua - metabolism
/ Endometrium
/ Endometrium - metabolism
/ Estrogens
/ Female
/ Gene Expression
/ Humanities and Social Sciences
/ Humans
/ Immune system
/ Medroxyprogesterone acetate
/ Medroxyprogesterone Acetate - pharmacology
/ Menstruation
/ multidisciplinary
/ Nucleotide sequence
/ Ontology
/ RNA - metabolism
/ Science
/ Science (multidisciplinary)
/ Signal transduction
/ Stromal cells
/ Stromal Cells - metabolism
/ Transcriptomes
2024
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Differential gene expression in decidualized human endometrial stromal cells induced by different stimuli
Journal Article
Differential gene expression in decidualized human endometrial stromal cells induced by different stimuli
2024
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Overview
Decidualization can be induced by culturing human endometrial stromal cells (ESCs) with several decidualization stimuli, such as cAMP, medroxyprogesterone acetate (MPA) or Estradiol (E
2
). However, it has been unclear how decidualized cells induced by different stimuli are different. We compared transcriptomes and cellular functions of decidualized ESCs induced by different stimuli (MPA, E
2
+ MPA, cAMP, and cAMP + MPA). We also investigated which decidualization stimulus induces a closer in vivo decidualization. Differentially expressed genes (DEGs) and altered cellular functions by each decidualization stimuli were identified by RNA-sequence and gene-ontology analysis. DEGs was about two times higher for stimuli that use cAMP (cAMP and cAMP + MPA) than for stimuli that did not use cAMP (MPA and E
2
+ MPA). cAMP-using stimuli altered the cellular functions including angiogenesis, inflammation, immune system, and embryo implantation whereas MPA-using stimuli (MPA, E
2
+ MPA, and cAMP + MPA) altered the cellular functions associated with insulin signaling. A public single-cell RNA-sequence data of the human endometrium was utilized to analyze in vivo decidualization. The altered cellular functions by in vivo decidualization were close to those observed by cAMP + MPA-induced decidualization. In conclusion, decidualized cells induced by different stimuli have different transcriptome and cellular functions. cAMP + MPA may induce a decidualization most closely to in vivo decidualization.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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