Articles dans des revues avec comité de lecture (16)

  1. 1. Temido-Ferreira, M., Ferreira, D. G., Batalha, V. L., Marques-Morgado, I., Coelho, J., Pereira, P., Gomes, R., Pinto, A., Carvalho, S., Canas, P., Cuvelier, L., Buée-Scherrer, V., Faivre, E., Baqi, Y., Müller, C. E., Pimentel, J., Schiffmann, S. N., Buée, L., Bader, M., Outeiro, T. F., Blum, D., Cunha, R. A., Marie, H., Pousinha, P., & Lopes, L. V. (2020). Age-related shift in LTD is dependent on neuronal adenosine A2A receptors interplay with mGluR5 and NMDA receptors. Molecular psychiatry, 25(8), 1876-1900. doi:10.1038/s41380-018-0110-9
  2. 2. Dardou, D., Monlezun, S., Foerch, P., Courade, J.-P., Cuvelier, L., De Ryck, M., & Schiffmann, S. N. (2013). A role for Sv2c in basal ganglia functions. Brain research, 1507, 61-73. doi:10.1016/j.brainres.2013.02.041
  3. 3. Dardou, D., Dassesse, D., Cuvelier, L., Deprez, T., De Ryck, M., & Schiffmann, S. N. (2011). Distribution of SV2C mRNA and protein expression in the mouse brain with a particular emphasis on the basal ganglia system. Brain research, 1367, 130-145. doi:10.1016/j.brainres.2010.09.063
  4. 4. Bantubungi, K., Blum, D., Cuvelier, L., Wislet-Gendebien, S., Rogister, B., Brouillet, E., & Schiffmann, S. N. (2008). Stem cell factor and mesenchymal and neural stem cell transplantation in a rat model of Huntington's disease. Molecular and cellular neurosciences, 37(3), 454-470. doi:10.1016/j.mcn.2007.11.001
  5. 5. Guntz, E., Dumont, H., Roussel, C., Gall, D., Dufrasne, F., Cuvelier, L., Blum, D., Schiffmann, S. N., & Sosnowski, M. (2005). Effects of remifentanil on N-methyl-D-aspartate receptor: an electrophysiologic study in rat spinal cord. Anesthesiology, 102(6), 1235-1241.
  6. 6. Blum, D., Hemming, F. J., Galas, M.-C., Torch, S., Cuvelier, L., Schiffmann, S. N., & Sadoul, R. (2004). Increased Alix (apoptosis-linked gene-2 interacting protein X) immunoreactivity in the degenerating striatum of rats chronically treated by 3-nitropropionic acid. Neuroscience letters, 368(3), 309-313. doi:10.1016/j.neulet.2004.07.046
  7. 7. Galas, M.-C., Bizat, N., Cuvelier, L., Bantubungi, K., Brouillet, E., Schiffmann, S. N., & Blum, D. (2004). Death of cortical and striatal neurons induced by mitochondrial defect involves differential molecular mechanisms. Neurobiology of disease, 15(1), 152-159.
  8. 8. Blum, D., Galas, M.-C., Cuvelier, L., & Schiffmann, S. N. (2004). Chronic intoxication with 3-nitropropionic acid in rats induces the loss of striatal dopamine terminals without affecting nigral cell viability. Neuroscience letters, 354(3), 234-238.
  9. 9. Blum, D., Galas, M.-C., Pintor, A., Brouillet, E., Ledent, C., Muller, C. E., Bantubungi, K., Galluzzo, M., Gall, D., Cuvelier, L., Rolland, A.-S., Popoli, P., & Schiffmann, S. N. (2003). A dual role of adenosine A2A receptors in 3-nitropropionic acid-induced striatal lesions: implications for the neuroprotective potential of A2A antagonists. The Journal of neuroscience, 23(12), 5361-5369.
  10. 10. Blum, D., Galas, M.-C., Gall, D., Cuvelier, L., & Schiffmann, S. N. (2002). Striatal and cortical neurochemical changes induced by chronic metabolic compromise in the 3-nitropropionic model of Huntington's disease. Neurobiology of disease, 10(3), 410-426.
  11. 11. Blum, D., Gall, D., Cuvelier, L., & Schiffmann, S. N. (2001). Topological analysis of striatal lesions induced by 3-nitropropionic acid in the Lewis rat. NeuroReport, 12(8), 1769-1772.
  12. 12. Depaepe, V., Cuvelier, L., Thöny, B., & Grégoire, A. (2000). Pterin-4α-carbinolamine dehydratase in rat brain. I. Patterns of co-localization with tyrosine hydroxylase. Molecular brain research, 75(1), 76-88. doi:10.1016/S0169-328X(99)00297-1

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