Cabrera, Y., Koymans, K. J., Poe, G. R., Kessels, H. W., Van Someren, E. J. W., & Wassing, R. (2024). Overnight neuronal plasticity and adaptation to emotional distress. Nature Reviews Neuroscience, 25(4), 253-271. https://doi.org/10.1038/s41583-024-00799-w[details]
Martins, I. M., Lima, A., de Graaff, W., Cristóvão, J. S., Brosens, N., Aronica, E., Kluskens, L. D., Gomes, C. M., Azeredo, J., & Kessels, H. W. (2024). M13 phage grafted with peptide motifs as a tool to detect amyloid-β oligomers in brain tissue. Communications biology, 7, Article 134. https://doi.org/10.1038/s42003-024-05806-5[details]
de Vries, L. E., Huitinga, I., Kessels, H. W., Swaab, D. F., & Verhaagen, J. (2024). The concept of resilience to Alzheimer's Disease: current definitions and cellular and molecular mechanisms. Molecular Neurodegeneration, 19(1), 33. https://doi.org/10.1186/s13024-024-00719-7
2023
Brosens, N., Simon, C., Kessels, H. W., Lucassen, P. J., & Krugers, H. J. (2023). Early life stress lastingly alters the function and AMPA-receptor composition of glutamatergic synapses in the hippocampus of male mice. Journal of Neuroendocrinology, 35(12), Article e13346. https://doi.org/10.1111/jne.13346[details]
Lumeij, L. B., van Huijstee, A. N., Cappaert, N. L. M., & Kessels, H. W. (2023). Variance analysis as a method to predict the locus of plasticity at populations of non-uniform synapses. Frontiers in Cellular Neuroscience, 17, Article 1232541. https://doi.org/10.3389/fncel.2023.1232541[details]
Zhang, T., Musheshe, N., van der Veen, C. H. J. T. M., Kessels, H. W., Dolga, A., De Deyn, P., Eisel, U., & Schmidt, M. (2023). The Expression of Epac2 and GluA3 in an Alzheimer's Disease Experimental Model and Postmortem Patient Samples. Biomedicines, 11(8), Article 2096. https://doi.org/10.3390/biomedicines11082096[details]
Dore, K., Carrico, Z., Alfonso, S., Marino, M., Koymans, K., Kessels, H. W., & Malinow, R. (2021). PSD-95 protects synapses from β-amyloid. Cell Reports, 35(9), Article 109194. https://doi.org/10.1016/j.celrep.2021.109194[details]
Grieco, F., Bernstein, B. J., Biemans, B., Bikovski, L., Burnett, C. J., Cushman, J. D., van Dam, E. A., Fry, S. A., Richmond-Hacham, B., Homberg, J. R., Kas, M. J. H., Kessels, H. W., Koopmans, B., Krashes, M. J., Krishnan, V., Logan, S., Loos, M., McCann, K. E., Parduzi, Q., ... Noldus, L. P. J. J. (2021). Measuring Behavior in the Home Cage: Study Design, Applications, Challenges, and Perspectives. Frontiers in Behavioral Neuroscience, 15, Article 735387. https://doi.org/10.3389/fnbeh.2021.735387[details]
Zimmer, T. S., David, B., Broekaart, D. W. M., Schidlowski, M., Ruffolo, G., Korotkov, A., van der Wel, N. N., van Rijen, P. C., Mühlebner, A., van Hecke, W., Baayen, J. C., Idema, S., François, L., van Eyll, J., Dedeurwaerdere, S., Kessels, H. W., Surges, R., Rüber, T., Gorter, J. A., ... Aronica, E. (2021). Seizure-mediated iron accumulation and dysregulated iron metabolism after status epilepticus and in temporal lobe epilepsy. Acta Neuropathologica, 142(4), 729-759. https://doi.org/10.1007/s00401-021-02348-6[details]
Krugers, H., Kessels, H., & Lucassen, P. (2020). Plasticiteit in de hersenen; synaptische plasticiteit en adulte neurogenese. In O. van den Heuvel, Y. van den Werf, B. Schmand, & B. Sabbe (Eds.), Leerboek neurowetenschappen voor de klinische psychiatrie (pp. 52-58). Boom. [details]
van Huijstee, A. N., & Kessels, H. W. (2020). Variance analysis as a tool to predict the mechanism underlying synaptic plasticity. Journal of Neuroscience Methods, 331, Article 108526. https://doi.org/10.1016/j.jneumeth.2019.108526[details]
Uyaniker, S., van der Spek, S. J. F., Reinders, N. R., Xiong, H., Li, K. W., Bossers, K., Smit, A. B., Verhaagen, J., & Kessels, H. W. (2019). The Effects of Sindbis Viral Vectors on Neuronal Function. Frontiers in Cellular Neuroscience, 13, Article 362. https://doi.org/10.3389/fncel.2019.00362[details]
Lesuis, S. L., Hoeijmakers, L., Korosi, A., de Rooij, S. R., Swaab, D. F., Kessels, H. W., Lucassen, P. J., & Krugers, H. J. (2018). Vulnerability and resilience to Alzheimer's disease: early life conditions modulate neuropathology and determine cognitive reserve. Alzheimer's Research & Therapy, 10, Article 95. https://doi.org/10.1186/s13195-018-0422-7[details]
Zhao, J., Verwer, R. W. H., Gao, S-F., Qi, X-R., Lucassen, P. J., Kessels, H. W., & Swaab, D. F. (2018). Prefrontal alterations in GABAergic and glutamatergic gene expression in relation to depression and suicide. Journal of Psychiatric Research, 102, 261-274. Advance online publication. https://doi.org/10.1016/j.jpsychires.2018.04.020[details]
Gutierrez-Castellanos, N., Da Silva-Matos, C. M., Zhou, K., Canto, C. B., Renner, M. C., Koene, L. M. C., Ozyildirim, O., Sprengel, R., Kessels, H. W., & de Zeeuw, C. I. (2017). Motor Learning Requires Purkinje Cell Synaptic Potentiation through Activation of AMPA-Receptor Subunit GluA3. Neuron, 93(2), 409-424. Advance online publication. https://doi.org/10.1016/j.neuron.2016.11.046
Renner, M. C., Albers, E. H. H., Gutierrez-Castellanos, N., Reinders, N. R., van Huijstee, A. N., Xiong, H., Lodder, T. R., & Kessels, H. W. (2017). Synaptic Plasticity through Activation of GluA3-containing AMPA-receptors. eLife, 6, Article e25462. https://doi.org/10.7554/eLife.25462
2016
Reinders, N. R., Pao, Y., Renner, M. C., da Silva-Matos, C. M., Lodder, T. R., Malinow, R., & Kessels, H. W. (2016). Amyloid-β effects on synapses and memory require AMPA-receptor subunit GluA3. Proceedings of the National Academy of Sciences of the United States of America.
Wang, F., Kessels, H. W., & Hu, H. (2014). The mouse that roared: neural mechanisms of social hierarchy. Trends in Neurosciences.
2013
Kessels, H. W., Nabavi, S., & Malinow, R. (2013). Metabotropic NMDA receptor function is required for beta-amyloid-induced synaptic depression. Proceedings of the National Academy of Sciences of the United States of America.
Nabavi, S., Kessels, H. W., Alphonso, S., Aow, J., Fox, R., & Malinow, R. (2013). Metabotropic NMDA receptor function is required for NMDA receptor-dependent long-term depression. Proceedings of the National Academy of Sciences of the United States of America.
2010
Kessels, H. W., Nguyen, L. N., Nabavi, S., & Malinow, R. (2010). The prion protein as a receptor for amyloid-beta. Nature.
Prijs / subsidie
Kessels, H. (2014). The Alzheimer Prize.
2024
Brosens, A. A. D. (2024). Stress effects on the developing and adult brain: Synaptic and network mechanisms underlying memory and disease. [Thesis, fully internal, Universiteit van Amsterdam]. [details]
Bouhuis, A. L. (2022). The role of central amygdala neuronal types in drug-related and appetitive behaviors. [Thesis, fully internal, Universiteit van Amsterdam]. [details]
van Huijstee, A. N. (2020). μ, σ and β in synaptic plasticity: A study of synapse organization and plasticity based on variance in synaptic responses. [Thesis, fully internal, Universiteit van Amsterdam]. [details]
Reinders, N. R. (2019). Forgetting GluA3: The discovery of GluA3 plasticity and its role in Alzheimer’s disease. [Thesis, fully internal, Universiteit van Amsterdam]. [details]
Zhao, J. (2018). Prefrontal gene expression changes in mood disorders and suicide. [Thesis, externally prepared, Universiteit van Amsterdam]. [details]
Renner, M. C. (2016). The discovery of GluA3-dependent synaptic plasticity. [Thesis, fully internal, Universiteit van Amsterdam]. Uitgeverij BOXPress. [details]
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