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Results: 20
Number of items: 20
  • den Boon, F. S., Werkman, T. R., Schaafsma-Zhao, Q., Houthuijs, K., Vitalis, T., Kruse, C. G., Wadman, W. J., & Chameau, P. (2015). Activation of type-1 cannabinoid receptor shifts the balance between excitation and inhibition towards excitation in layer II/III pyramidal neurons of the rat prelimbic cortex. Plügers Archiv, 467(7), 1551-1564. https://doi.org/10.1007/s00424-014-1586-z
  • Baggelaar, M. P., Chameau, P. J. P., Kantae, V., Hummel, J., Hsu, K. L., Janssen, F., van der Wel, T., Soethoudt, M., Deng, H., den Dulk, H., Allarà, M., Florea, B. I., Di Marzo, V., Wadman, W. J., Kruse, C. G., Overkleeft, H. S., Hankemeier, T., Werkman, T. R., Cravatt, B. F., & van der Stelt, M. (2015). Highly Selective, Reversible Inhibitor Identified by Comparative Chemoproteomics Modulates Diacylglycerol Lipase Activity in Neurons. Journal of the American Chemical Society, 137(27), 8851-8857. https://doi.org/10.1021/jacs.5b04883
  • den Boon, F. S., Chameau, P., Houthuijs, K., Bolijn, S., Mastrangelo, N., Kruse, C. G., Maccarrone, M., Wadman, W. J., & Werkman, T. R. (2014). Endocannabinoids produced upon action potential firing evoke a Cl− current via type-2 cannabinoid receptors in the medial prefrontal cortex. Plügers Archiv, 466(12), 2257-2268. https://doi.org/10.1007/s00424-014-1502-6
  • Open Access
    den Boon, F. S. (2013). Cannabinoid receptor function in the medial prefrontal cortex. [Thesis, fully internal, Universiteit van Amsterdam].
  • den Boon, F. S., Chameau, P., Schaafsma-Zhao, Q., van Aken, W., Bari, M., Oddi, S., Kruse, C. G., Maccarrone, M., Wadman, W. J., & Werkman, T. R. (2012). Excitability of prefrontal cortical pyramidal neurons is modulated by activation of intracellular type-2 cannabinoid receptors. Proceedings of the National Academy of Sciences of the United States of America, 109(9), 3534-3539. https://doi.org/10.1073/pnas.1118167109
  • Open Access
    Hulzebos, E. M. (2012). (Q)SAR and other (non) testing data in integrated testing strategies using standardised weight of evidence criteria. [Thesis, externally prepared, Universiteit van Amsterdam].
  • Werkman, T. R., McCreary, A. C., Kruse, C. G., & Wadman, W. J. (2011). NK3 Receptors mediate an increase in firing rate of midbrain dopamine neurons of the rat and the guinea pig. Synapse, 65(8), 814-826. https://doi.org/10.1002/syn.20908
  • Blaazer, A. R., Lange, J. H. M., van der Neut, M. A. W., Mulder, A., den Boon, F. S., Werkman, T. R., Kruse, C. G., & Wadman, W. J. (2011). Novel indole and azaindole (pyrrolopyridine) cannabinoid (CB) receptor agonists: design, synthesis, structure-activity relationships, physicochemical properties and biological activity. Journal of Medicinal Chemistry, 46, 5086-5098. https://doi.org/10.1016/j.ejmech.2011.08.021
  • Olijslagers, J. E., Werkman, T. R., McCreary, A. C., Kruse, C. G., & Wadman, W. J. (2006). Modulation of Midbrain Dopamine Neurotransmission by Serotonin, a Versatile Interaction Between Neurotransmitters and Significance for Antipsychotic Drug Action. Current Neuropharmacology, 4, 59-68. https://doi.org/10.2174/157015906775203020
  • Open Access
    Olijslagers, J. E. (2006). Serotonergic modulation of dopamine and GABA inputs to A9 and A10 dopamine neurons and its role in antipsychotic drug efficacy. [Thesis, fully internal, Universiteit van Amsterdam].
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