Articles dans des revues avec comité de lecture (63)

  1. 49. Uyttersprot, N., Allgeier, A., Baptist, M., Christophe, D., Coppee, F., Coulonval, K., Deleu, S., Depoortere, F., Dremier, S., Lamy, F., Ledent, C., Maenhaut, C., Miot, F., Panneels, V., Parma, J., Parmentier, M., Pirson, I., Pohl, V., Roger, P. P., Savonet, V., Taton, M., Tonacchera, M., Van Sande, J., Wilkin, F., Vassart, G., & Dumont, J. E. (1997). The cAMP in thyroid: from the TSH receptor to mitogenesis and tumorigenesis. Advances in second messenger and phosphoprotein research, 31, 125-140.
  2. 50. Roger, P. P., Christophe, D., Dumont, J. E., & Pirson, I. (1997). The dog thyroid primary culture system: a model of the regulation of function, growth and differentiation by cyclic AMP and other well defined signaling cascades (invited review). European Journal of Endocrinology, 137, 579-598. doi:10.1530/eje.0.1370579
  3. 51. Pirson, I., Coulonval, K., Lamy, F., & Dumont, J. E. (1996). c-Myc expression is controlled by the mitogenic cAMP-cascade in thyrocytes. Journal of cellular physiology, 168(1), 59-70. doi:10.1002/(SICI)1097-4652(199607)168:1<59::AID-JCP8>3.0.CO;2-7
  4. 52. Pichon, B., Jimenez-Cervantes Frigo, C., Pirson, I., Maenhaut, C., & Christophe, D. (1996). Induction of Nerve Growth Factor-Induced Gene-B (NGFI-B) as an early event in the cyclic adenosine monophosphate response of dog thyrocytes in primary culture. Endocrinology, 137, 4691-4698. doi:10.1210/en.137.11.4691
  5. 53. Pichon, B., Jimenez-Cervantes Frigo, C., Pirson, I., Maenhaut, C., & Christophe, D. (1996). The cAMP pathway markedly induces the NGFI-B expression in dog thyrocytes in primary culture. Journal of Endocrinological Investigation, 19, 49.
  6. 54. Burikhanov, R., Coulonval, K., Pirson, I., Lamy, F., Dumont, J. E., & Roger, P. P. (1996). Thyrotropin via cyclic AMP induces insulin receptor expression and insulin co-stimulation of growth and amplifies insulin and insulin-like growth factor signalling pathways in dog thyroid epithelial cells. The Journal of biological chemistry, 271, 29400-29406. doi:10.1074/jbc.271.46.29400
  7. 55. Ledent, C., Parma, J., Pirson, I., Taton, M., Roger, P. P., Maenhaut, C., Van Sande, J., Pohl, V., Lamy, F., & Parmentier, M. (1995). Positive control of proliferation by the cyclic AMP cascade: an oncogenic mechanism of hyper-functional adenoma. Journal of endocrinological investigation, 18(2), 120-122. doi:10.1007/BF03349717
  8. 56. Maenhaut, C., Pirson, I., Baptist, M., Lamy, F., Miot, F., Roger, P. P., & Dumont, J. E. (1995). La cascade mitogénique de l'AMPc dans la thyroïde et dans d'autres tissus. MS. Médecine sciences, 11, 204-2013.
  9. 57. Pirson, I., & Dumont, J. E. (1994). Jun B expression is regulated differently by three mitogenic pathways in thyrocytes. Experimental cell research, 214(2), 561-569. doi:10.1006/excr.1994.1294
  10. 58. Swillens, S., & Pirson, I. (1994). Highly sensitive control of transcriptional activity by factor heterodimerization. Biochemical journal, 301 ( Pt 1), 9-12.
  11. 59. Pirson, I., Reuse, S., & Dumont, J. E. (1994). Regulation of the Max gene expression by different mitogenic pathways in dog primary thyrocytes. Experimental cell research, 210(1), 33-38. doi:10.1006/excr.1994.1005
  12. 60. Ledent, C., Parmentier, M., Maenhaut, C., Taton, M., Pirson, I., Lamy, F., Roger, P. P., & Dumont, J. E. (1991). The TSH cyclic AMP cascade in the control of thyroid cell proliferation: the story of a concept. Thyroidology / A.P.R.I.M, 3(3), 97-101.

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