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Author Title [ Type(Desc)] Year
Filters: Author is Teixeira, N.A.  [Clear All Filters]
Journal Article
Costa, M. A., Fonseca, B. M., Keating, E., Teixeira, N. A., & Correia-da-Silva, G. (2014). 2-Arachidonoylglycerol effects in cytotrophoblasts: Metabolic enzymes expression and apoptosis in BeWo cells. Reproduction, 147(3), 301 - 311.
Costa, M. A., Keating, E., Fonseca, B. M., Teixeira, N. A., & Correia-da-Silva, G. (2015). 2-Arachidonoylglycerol impairs human cytotrophoblast cells syncytialization: Influence of endocannabinoid signalling in placental development. Molecular and Cellular Endocrinology, 399, 386 - 394.
Fonseca, B. M., Correia-da-Silva, G., & Teixeira, N. A. (2009). Anandamide-Induced Cell Death: Dual Effects in Primary Rat Decidual Cell Cultures. Placenta, 30(8), 686 - 692.
Fonseca, B. M., Correia-da-Silva, G., Taylor, A. H., Lam, P. M. W., et al. (2012). Characterisation of the endocannabinoid system in rat haemochorial placenta. Reproductive Toxicology, 34(3), 347 - 356.
Varela, C. L., Amaral, C., Correia-da-Silva, G., Carvalho, R. A., et al. (2013). Design, synthesis and biochemical studies of new 7α-allylandrostanes as aromatase inhibitors. Steroids, 78(7), 662 - 669.
Fonseca, B. M., Correia-da-Silva, G., Taylor, A. H., Lam, P. M. W., et al. (2010). The endocannabinoid 2-arachidonoylglycerol (2-AG) and metabolizing enzymes during rat fetoplacental development: A role in uterine remodelling. International Journal of Biochemistry and Cell Biology, 42(11), 1884 - 1892.
Costa, M. A., Fonseca, B. M., Teixeira, N. A., & Correia-da-Silva, G. (2015). The endocannabinoid anandamide induces apoptosis in cytotrophoblast cells: Involvement of both mitochondrial and death receptor pathways. Placenta, 36(1), 69 - 76.
Fonseca, B. M., Correia-da-Silva, G., Almada, M., Costa, M. A., & Teixeira, N. A. (2013). The endocannabinoid system in the postimplantation period: A role during decidualization and placentation. International Journal of Endocrinology, 2013.
Fonseca, B. M., Costa, M. A., Almada, M., Correia-da-Silva, G., & Teixeira, N. A. (2013). Endogenous cannabinoids revisited: A biochemistry perspective. Prostaglandins and Other Lipid Mediators, 102-103, 13 - 30.
Fonseca, B. M., Teixeira, N. A., Almada, M., Taylor, A. H., et al. (2011). Modulation of the novel cannabinoid receptor - GPR55 - during rat fetoplacental development. Placenta, 32(6), 462 - 469.
Cepa, M., Correia-da-Silva, G., Tavares da Silva, E. J., Roleira, F. M. F., et al. (2008). Molecular mechanisms of aromatase inhibition by new A, D-ring modified steroids. Biological Chemistry, 389(9), 1183 - 1191.
Fonseca, B. M., Correia-da-Silva, G., Taylor, A. H., Lam, P. M. W., et al. (2010). N-acylethanolamine levels and expression of their metabolizing enzymes during pregnancy. Endocrinology, 151(8), 3965 - 3974.
Cepa, M., Correia-da-Silva, G., da Silva, E., Roleira, F. M. F., et al. (2008). New steroidal aromatase inhibitors: Suppression of estrogen-dependent breast cancer cell proliferation and induction of cell death. BMC Cell Biology, 9.
Correia-da-Silva, G., Bell, S. C., Pringle, J. H., & Teixeira, N. A. (2005). Patterns of expression of Bax, Bcl-2 and Bcl-xL in the implantation site in rat during pregnancy. Placenta, 26(10), 796 - 806.
Correia-da-Silva, G., Bell, S. C., Pringle, J. H., & Teixeira, N. A. (2004). Patterns of uterine cellular proliferation and apoptosis in the implantation site of the rat pregnancy. Placenta, 25(6), 538 - 547.
Fonseca, B. M., Correia-da-Silva, G., & Teixeira, N. A. (2012). The rat as an animal model for fetoplacental development: A reappraisal of the post-implantation period. Reproductive Biology, 12(2), 97 - 118.
Fonseca, B. M., Correia-da-Silva, G., Taylor, A. H., Konje, J. C., et al. (2009). Spatio-temporal expression patterns of anandamide-binding receptors in rat implantation sites: Evidence for a role of the endocannabinoid system during the period of placental development. Reproductive Biology and Endocrinology, 7.
Almeida, A., Correia-da-Silva, G., Cepa, M., Bell, S. C., & Teixeira, N. A. (2007). Synergistic induction of apoptosis in primary rat decidual cells by INF-γ and TNF. Molecular Reproduction and Development, 74(3), 371 - 377.

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