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1140 related items for PubMed ID: 16541462

  • 21. Steroidogenic acute regulatory protein in ovarian follicles of gonadotropin-stimulated rats is regulated by a gonadotropin-releasing hormone agonist.
    Irusta G, Parborell F, Peluffo M, Manna PR, Gonzalez-Calvar SI, Calandra R, Stocco DM, Tesone M.
    Biol Reprod; 2003 May; 68(5):1577-83. PubMed ID: 12606484
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  • 22. Growth differentiation factor-9 has divergent effects on proliferation and steroidogenesis of bovine granulosa cells.
    Spicer LJ, Aad PY, Allen D, Mazerbourg S, Hsueh AJ.
    J Endocrinol; 2006 May; 189(2):329-39. PubMed ID: 16648300
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  • 23. Transforming growth factor-beta1 inhibits luteinization and promotes apoptosis in bovine granulosa cells.
    Zheng X, Boerboom D, Carrière PD.
    Reproduction; 2009 Jun; 137(6):969-77. PubMed ID: 19307427
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  • 24. Effects of kisspeptin-10 on progesterone secretion in cultured chicken ovarian granulosa cells from preovulatory (F1-F3) follicles.
    Xiao Y, Ni Y, Huang Y, Wu J, Grossmann R, Zhao R.
    Peptides; 2011 Oct; 32(10):2091-7. PubMed ID: 21924307
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  • 25. Role of adiponectin in regulating ovarian theca and granulosa cell function.
    Lagaly DV, Aad PY, Grado-Ahuir JA, Hulsey LB, Spicer LJ.
    Mol Cell Endocrinol; 2008 Mar 12; 284(1-2):38-45. PubMed ID: 18289773
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  • 26. Development and validation of a short-term, serum-free culture system for bovine granulosa cells: evaluation of the effects of somatotropin and growth hormone-releasing factor on estradiol production.
    Jimenez-Krassel F, Ireland JJ.
    J Dairy Sci; 2002 Jan 12; 85(1):68-78. PubMed ID: 11860123
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  • 27. Expression of messenger ribonucleic acids of luteinizing hormone and follicle-stimulating hormone receptors in granulosa and theca layers of chicken preovulatory follicles.
    Zhang C, Shimada K, Saito N, Kansaku N.
    Gen Comp Endocrinol; 1997 Mar 12; 105(3):402-9. PubMed ID: 9073502
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  • 28. Insulin-like growth factor (IGF) 2 stimulates steroidogenesis and mitosis of bovine granulosa cells through the IGF1 receptor: role of follicle-stimulating hormone and IGF2 receptor.
    Spicer LJ, Aad PY.
    Biol Reprod; 2007 Jul 12; 77(1):18-27. PubMed ID: 17360960
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  • 29. Amount of mRNA and localization of vascular endothelial growth factor and its receptors in the ovarian follicle during estrous cycle of water buffalo (Bubalus bubalis).
    Babitha V, Panda RP, Yadav VP, Chouhan VS, Dangi SS, Khan FA, Singh G, Bag S, Taru Sharma G, Silvia WJ, Sarkar M.
    Anim Reprod Sci; 2013 Mar 12; 137(3-4):163-76. PubMed ID: 23375984
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  • 30. Effect of resistin on granulosa and theca cell function in cattle.
    Spicer LJ, Schreiber NB, Lagaly DV, Aad PY, Douthit LB, Grado-Ahuir JA.
    Anim Reprod Sci; 2011 Mar 12; 124(1-2):19-27. PubMed ID: 21315524
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  • 31. Gonadotrophin responsiveness, aromatase activity and insulin-like growth factor binding protein content of bovine ovarian follicles during the first follicular wave.
    Rhodes FM, Peterson AJ, Jolly PD.
    Reproduction; 2001 Oct 12; 122(4):561-9. PubMed ID: 11570963
    [Abstract] [Full Text] [Related]

  • 32. Changes in messenger ribonucleic acid encoding luteinizing hormone receptor, cytochrome P450-side chain cleavage, and aromatase are associated with recruitment and selection of bovine ovarian follicles.
    Bao B, Garverick HA, Smith GW, Smith MF, Salfen BE, Youngquist RS.
    Biol Reprod; 1997 May 12; 56(5):1158-68. PubMed ID: 9160714
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  • 33. Gonadotropin regulation of testosterone production by primary cultured theca and granulosa cells of Atlantic croaker: I. Novel role of CaMKs and interactions between calcium- and adenylyl cyclase-dependent pathways.
    Benninghoff AD, Thomas P.
    Gen Comp Endocrinol; 2006 Jul 12; 147(3):276-87. PubMed ID: 16542656
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  • 34. Steroidogenesis in the preovulatory porcine follicle.
    Conley AJ, Howard HJ, Slanger WD, Ford JJ.
    Biol Reprod; 1994 Oct 12; 51(4):655-61. PubMed ID: 7819446
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  • 35. Participation of mitogen-activated protein kinase in luteinizing hormone-induced differential regulation of steroidogenesis and steroidogenic gene expression in mural and cumulus granulosa cells of mouse preovulatory follicles.
    Su YQ, Nyegaard M, Overgaard MT, Qiao J, Giudice LC.
    Biol Reprod; 2006 Dec 12; 75(6):859-67. PubMed ID: 16943367
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  • 36. Spatial differences within the membrana granulosa in the expression of focimatrix and steroidogenic capacity.
    Nguyen T, Lee S, Hatzirodos N, Hummitzsch K, Sullivan TR, Rodgers RJ, Irving-Rodgers HF.
    Mol Cell Endocrinol; 2012 Nov 05; 363(1-2):62-73. PubMed ID: 22863478
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  • 37. Regulation of expression of ovarian mRNA encoding steroidogenic enzymes and gonadotrophin receptors by FSH and GH in hypogonadotrophic cattle.
    Garverick HA, Baxter G, Gong J, Armstrong DG, Campbell BK, Gutierrez CG, Webb R.
    Reproduction; 2002 May 05; 123(5):651-61. PubMed ID: 12006093
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  • 38. Stimulatory effect of LH, PGE2 and progesterone on StAR protein, cytochrome P450 cholesterol side chain cleavage and 3beta hydroxysteroid dehydrogenase gene expression in bovine luteal cells.
    Rekawiecki R, Nowik M, Kotwica J.
    Prostaglandins Other Lipid Mediat; 2005 Dec 05; 78(1-4):169-84. PubMed ID: 16303614
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  • 39. Effects of vitamins C and E on steroidogenic enzymes mRNA expression in polychlorinated biphenyl (Aroclor 1254) exposed adult rat Leydig cells.
    Murugesan P, Muthusamy T, Balasubramanian K, Arunakaran J.
    Toxicology; 2007 Apr 11; 232(3):170-82. PubMed ID: 17280759
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  • 40. Kit ligand actions on ovarian stromal cells: effects on theca cell recruitment and steroid production.
    Parrott JA, Skinner MK.
    Mol Reprod Dev; 2000 Jan 11; 55(1):55-64. PubMed ID: 10602274
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