Uterine epithelial LIF receptors contribute to implantation chamber formation in blastocyst attachment.
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M. Ikawa | Y. Osuga | Yasushi Hirota | R. Shimizu-Hirota | Tomoko Saito‐Fujita | Norihiko Takeda | Mitsunori Matsuo | Takehiro Hiraoka | S. Aikawa | Shun Akaeda | Yamato Fukui | Tetsuaki Kaku | T. Hirata | Tomoko Saito-Fujita
[1] Y. Osuga,et al. Retinoblastoma protein promotes uterine epithelial cell cycle arrest and necroptosis for embryo invasion , 2021, EMBO reports.
[2] Y. Osuga,et al. Uterine epithelial progesterone receptor governs uterine receptivity through epithelial cell differentiation. , 2020, Endocrinology.
[3] Y. Osuga,et al. Differential roles of uterine epithelial and stromal STAT3 coordinate uterine receptivity and embryo attachment , 2020, Scientific Reports.
[4] Y. Osuga,et al. Levonorgestrel inhibits embryo attachment by eliminating uterine induction of leukemia inhibitory factor. , 2020, Endocrinology.
[5] Rachelle W Johnson,et al. GP130 Cytokines in Breast Cancer and Bone , 2020, Cancers.
[6] S. Dey,et al. Primary decidual zone formation requires Scribble for pregnancy success in mice , 2019, Nature Communications.
[7] S. Dey,et al. Uterine deficiency of high-mobility group box-1 (HMGB1) protein causes implantation defects and adverse pregnancy outcomes , 2019, Cell Death & Differentiation.
[8] Y. Osuga,et al. Uterine receptivity, embryo attachment, and embryo invasion: Multistep processes in embryo implantation , 2019, Reproductive medicine and biology.
[9] Yasushi Hirota. Progesterone governs endometrial proliferation-differentiation switching and blastocyst implantation. , 2019, Endocrine journal.
[10] Y. Osuga,et al. Mdm2‐p53‐SF1 pathway in ovarian granulosa cells directs ovulation and fertilization by conditioning oocyte quality , 2018, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[11] T. Spencer,et al. Uterine glands coordinate on-time embryo implantation and impact endometrial decidualization for pregnancy success , 2018, Nature Communications.
[12] Y. Osuga,et al. HIF2&agr; in the uterine stroma permits embryo invasion and luminal epithelium detachment , 2018, The Journal of clinical investigation.
[13] S. Dey,et al. Tridimensional visualization reveals direct communication between the embryo and glands critical for implantation , 2018, Nature Communications.
[14] F. Petraglia,et al. Decreased Endometrial Expression of Leukemia Inhibitory Factor Receptor Disrupts the STAT3 Signaling in Adenomyosis During the Implantation Window , 2017, Reproductive Sciences.
[15] T. Dagklis,et al. LIF endometrial expression is impaired in women with unexplained infertility while LIF‐R expression in all infertility sub‐groups , 2017, Cytokine.
[16] Y. Osuga,et al. F4/80+ Macrophages Contribute to Clearance of Senescent Cells in the Mouse Postpartum Uterus , 2017, Endocrinology.
[17] C. Stewart,et al. Tissue-Specific Ablation of the LIF Receptor in the Murine Uterine Epithelium Results in Implantation Failure , 2017, Endocrinology.
[18] S. Dey,et al. Planar cell polarity signaling in the uterus directs appropriate positioning of the crypt for embryo implantation , 2016, Proceedings of the National Academy of Sciences.
[19] S. Watowich,et al. STAT3 signaling in immunity. , 2016, Cytokine & growth factor reviews.
[20] D. Yamazaki,et al. The Mg2+ transporter CNNM4 regulates sperm Ca2+ homeostasis and is essential for reproduction , 2016, Journal of Cell Science.
[21] V. Bordignon,et al. Dysregulated leukemia inhibitory factor and its receptor regulated signal transducers and activators of transcription 3 pathway: a possible cause for repeated implantation failure in women with dormant genital tuberculosis? , 2016, Fertility and sterility.
[22] N. Nicola,et al. Leukemia inhibitory factor (LIF). , 2015, Cytokine & growth factor reviews.
[23] Peter W Zandstra,et al. LIF signaling in stem cells and development , 2015, Development.
[24] Terry P Yamaguchi,et al. Appropriate crypt formation in the uterus for embryo homing and implantation requires Wnt5a-ROR signaling. , 2014, Cell reports.
[25] S. Dey,et al. MicroRNA-200a locally attenuates progesterone signaling in the cervix, preventing embryo implantation. , 2014, Molecular endocrinology.
[26] S. Dey,et al. Lactoferrin-iCre: a new mouse line to study uterine epithelial gene function. , 2014, Endocrinology.
[27] S. Dey,et al. Uterine deletion of Gp130 or Stat3 shows implantation failure with increased estrogenic responses. , 2013, Molecular endocrinology.
[28] Jae Hee Lee,et al. Signal transducer and activator of transcription‐3 (Stat3) plays a critical role in implantation via progesterone receptor in uterus , 2013, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[29] M. Ikawa,et al. SPACA1-deficient male mice are infertile with abnormally shaped sperm heads reminiscent of globozoospermia , 2012, Development.
[30] K. Kaestner,et al. Foxa2 Is Essential for Mouse Endometrial Gland Development and Fertility1 , 2010, Biology of reproduction.
[31] A. Stavreus-Evers,et al. Disturbances in the LIF pathway in the endometrium among women with unexplained infertility. , 2009, Fertility and sterility.
[32] Sudhansu K. Dey,et al. Roadmap to embryo implantation: clues from mouse models , 2006, Nature Reviews Genetics.
[33] H. Lim,et al. Evidence for heterodimeric association of leukemia inhibitory factor (LIF) receptor and gp130 in the mouse uterus for LIF signaling during blastocyst implantation. , 2006, Reproduction.
[34] Jeff Reese,et al. Molecular cues to implantation. , 2004, Endocrine reviews.
[35] A. Stavreus-Evers,et al. Coexpression of pinopodes and leukemia inhibitory factor, as well as its receptor, in human endometrium. , 2003, Fertility and sterility.
[36] R. Behringer,et al. Requirement of Bmpr1a for Müllerian duct regression during male sexual development , 2002, Nature Genetics.
[37] S. Dey,et al. Adult tissue angiogenesis: evidence for negative regulation by estrogen in the uterus. , 2001, Molecular endocrinology.
[38] W. Alvord,et al. Dual control of LIF expression and LIF receptor function regulate Stat3 activation at the onset of uterine receptivity and embryo implantation , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[39] C. Stewart,et al. Leukemia inhibitory factor can substitute for nidatory estrogen and is essential to inducing a receptive uterus for implantation but is not essential for subsequent embryogenesis. , 2000, Endocrinology.
[40] S. Dey,et al. Dysregulation of EGF family of growth factors and COX-2 in the uterus during the preattachment and attachment reactions of the blastocyst with the luminal epithelium correlates with implantation failure in LIF-deficient mice. , 2000, Molecular endocrinology.
[41] M. Katsuki,et al. STAT3 activation is sufficient to maintain an undifferentiated state of mouse embryonic stem cells , 1999, The EMBO journal.
[42] S. Akira,et al. Stat3 activation is responsible for IL-6-dependent T cell proliferation through preventing apoptosis: generation and characterization of T cell-specific Stat3-deficient mice. , 1998, Journal of immunology.
[43] A. Smith,et al. Self-renewal of pluripotent embryonic stem cells is mediated via activation of STAT3. , 1998, Genes & development.
[44] S. Akira,et al. Targeted disruption of the mouse Stat3 gene leads to early embryonic lethality. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[45] J. Pollard,et al. Leukemia inhibitory factor (LIF) and LIF receptor expression in human endometrium suggests a potential autocrine/paracrine function in regulating embryo implantation. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[46] M. Klagsbrun,et al. Heparin-binding EGF-like growth factor gene is induced in the mouse uterus temporally by the blastocyst solely at the site of its apposition: a possible ligand for interaction with blastocyst EGF-receptor in implantation. , 1994, Development.
[47] C. Stewart,et al. Blastocyst implantation depends on maternal expression of leukaemia inhibitory factor , 1992, Nature.