Gene Expression in Endometriosis
This study investigated how ectopic lesions alter eutopic endometrial gene expression in baboons, revealing that endometriosis impacts microRNA, Notch1, AKT, MAPK, ERK, and HIF1A-STAT3 signaling pathways, causing progesterone resistance and impaired decidualization.
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References (100)
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- Aberrant Endometrial DNA Methylome and Associated Gene Expression in Women with Endometriosis via openalex
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- Akt as a possible intracellular mediator for decidualization in human endometrial stromal cells via openalex
- Altered expression of microRNA-451 in eutopic endometrium of baboons ( Papio anubis ) with endometriosis via openalex
- Altered expression of progesterone receptor isoforms A and B in human eutopic endometrium in endometriosis patients via openalex
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- A Modified Baboon Model for Endometriosis via openalex
- Analysis of menstrual effluent: diagnostic potential for endometriosis via openalex
- Aromatase inhibitor treatment limits progression of peritoneal endometriosis in baboons via openalex
- cAMP-Response Element-Binding 3-Like Protein 1 (CREB3L1) is Required for Decidualization and its Expression is Decreased in Women with Endometriosis via openalex
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- Contribution of Bone Marrow-Derived Stem Cells to Endometrium and Endometriosis via openalex
- Co-operation between the AKT and ERK signaling pathways may support growth of deep endometriosis in a fibrotic microenvironment in vitro† via openalex
- COUP-TFII Regulates Human Endometrial Stromal Genes Involved in Inflammation via openalex
- Decreased Notch Pathway Signaling in the Endometrium of Women With Endometriosis Impairs Decidualization via openalex
- Differential Expression of MicroRNAs between Eutopic and Ectopic Endometrium in Ovarian Endometriosis via openalex
- Differentially-Expressed miRNAs in Ectopic Stromal Cells Contribute to Endometriosis Development: The Plausible Role of miR-139-5p and miR-375 via openalex
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- FKBP4 is regulated by HOXA10 during decidualization and in endometriosis via openalex
- Functional MicroRNA Involved in Endometriosis via openalex
- Gene Expression Analysis of Endometrium Reveals Progesterone Resistance and Candidate Susceptibility Genes in Women with Endometriosis via openalex
- Genome-Wide DNA Methylation Analysis Predicts an Epigenetic Switch for GATA Factor Expression in Endometriosis via openalex
- Genome-wide genetic analyses highlight mitogen-activated protein kinase (MAPK) signaling in the pathogenesis of endometriosis via openalex
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- Hypoxia-Induced MicroRNA-20a Expression Increases ERK Phosphorylation and Angiogenic Gene Expression in Endometriotic Stromal Cells via openalex
- Hypoxia‐inhibited dual‐specificity phosphatase‐2 expression in endometriotic cells regulates cyclooxygenase‐2 expression via openalex
- Incidence of Laparoscopically Confirmed Endometriosis by Demographic, Anthropometric, and Lifestyle Factors via openalex
- Increased Activation of the PI3K/AKT Pathway Compromises Decidualization of Stromal Cells from Endometriosis via openalex
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- Peritoneal endometriosis, ovarian endometriosis, and adenomyotic nodules of the rectovaginal septum are three different entities via openalex
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- Protein kinase inhibitors can control the progression of endometriosis <i>in vitro</i> and <i>in vivo</i> via openalex
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- Role of Estrogen Receptor-β in Endometriosis via openalex
- Role of microRNAs in Gynecological Pathology via openalex
- Steroidogenic Enzyme and Key Decidualization Marker Dysregulation in Endometrial Stromal Cells from Women with Versus Without Endometriosis1 via openalex
- Stromal cells from endometriotic lesions and endometrium from women with endometriosis have reduced decidualization capacity via openalex
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