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Galectin-9 Promotes Human Trophoblast Cell Invasion through Matrix Metalloproteinase-2 and p38 Signaling Pathway
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作者 feng-run sun Chun-Qing Chen +3 位作者 Min Yu Song-Cun Wang Da-Jin Li Mei-Rong Du 《Reproductive and Developmental Medicine》 CSCD 2018年第1期1-7,共7页
Objective:Adequate extravillous trophoblast(EVT)invasion plays a crucial role in the establishment of successful pregnancy.Insufficient trophoblast migration and invasion can result in defective placentation,which is ... Objective:Adequate extravillous trophoblast(EVT)invasion plays a crucial role in the establishment of successful pregnancy.Insufficient trophoblast migration and invasion can result in defective placentation,which is associated with a number of clinical pathological conditions of pregnancy including spontaneous abortion and preeclampsia.Galectin-9(Gal-9)has a wide variety of regulatory functions in innate and adaptive immunity during infection,tumor growth,and organ transplantation.Methods:We utilized immortalized human first-trimester EVT cells(HTR8/SVneo)for our functional study.We examined the effects of Gal-9 on viability,proliferation,and invasion of HTR8/SVneo cells,as well as on matrix metalloproteinase-2(MMP-2)production in HTR8/SVneo cells.Furthermore,we observed the effects of different MAPK-signaling pathway inhibitors on the stimulatory functions of Gal-9 on HTR8/SVneo cells’invasion.Results:We verified the secretion of Gal-9 by trophoblasts and detected a correlation between low levels of Gal-9 and spontaneous abortion.Gal-9 promoted the invasion of HTR8/SVneo cells through its interaction with Tim-3,not CD44,and subsequently increased MMP-2 production.Blockade of p38 signaling pathway inhibited Gal-9 activities in HTR8/SVneo cells.Conclusion:Gal-9 promotes human trophoblast cell invasion through MMP-2 and p38 signaling pathway in a Tim-3-dependent manner. 展开更多
关键词 Galectin‑9 INVASION Matrix Metalloproteinase‑2 p38 Signaling Pathway Trophoblast Cells
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Altered Carcinoembryonic Antigen-Related Cell Adhesion Molecule 1/T-Cell Immunoglobulin Mucin-3 Signaling Causes the Dysregulation of Decidual CD8+T Cells in the Third Trimester during Preeclamptic Pregnancies
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作者 Chun-Qin Chen Song-Cun Wang +3 位作者 feng-run sun Meng-Die Li Mei-Rong Du Ying Zhang 《Reproductive and Developmental Medicine》 CSCD 2021年第4期206-212,共7页
Objective:To investigate the frequency and function of Tim-3^(+)CD8^(+)T cells in the third trimester of normal pregnancies(NPs)and preeclamptic(PE)pregnancies.Methods:T-cell immunoglobulin mucin-3(Tim-3)expression le... Objective:To investigate the frequency and function of Tim-3^(+)CD8^(+)T cells in the third trimester of normal pregnancies(NPs)and preeclamptic(PE)pregnancies.Methods:T-cell immunoglobulin mucin-3(Tim-3)expression levels of CD8^(+)T cells in the decidua,peripheral blood,and umbilical cord blood obtained from women showing NPs and PE pregnancies were analyzed using flow cytometry.Decidual CD8^(+)T cells were cultured in the presence of recombinant human carcinoembryonic antigen-related cell adhesion molecule 1(CEACAM1)protein and/or Tim-3-specific neutralizing antibodies for analyzing CD107a and intracellular cytokine expression.The placental CEACAM1 protein expression was analyzed using immunohistochemistry.Results:Tim-3^(+)CD8^(+)T cells were more abundant in the decidua than in the peripheral blood.Tim-3 expression in the decidual CD8^(+)T cells was significantly lower in PE patients.Decidual Tim-3^(+)CD8^(+)T cells from PE patients expressed higher levels of CD107a and the Th1-type cytokine IFN-γ,but lower levels of the Th2-type cytokine IL-4.CEACAM1 altered the CD107a,IFN-γ,and IL-4 levels;this was reversed by anti-Tim-3 antibodies.The CEACAM1 protein levels were lower in the placental tissues of women with PE pregnancies than in those of women with NPs.Conclusions:Abnormal CEACAM1/Tim-3 regulation may participate in the development of PE,accompanied by disturbed Th2 cell predominance and higher cytotoxicity of decidual CD8^(+)T cells. 展开更多
关键词 3rd-trimester Carcinoembryonic Antigen-related Cell Adhesion Molecule 1 CD8^(+)T Cells PREECLAMPSIA TIM-3
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