Fulgencio Ruso Julve

Postdoctoral Fellow - Department of Pharmacology
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Room Department of Pharmacology, A2.3051
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Visiting address Sognsvannsveien 20 Rikshospitalet 0372 Oslo
Postal address Postboks 1057 Blindern 0316 Oslo
Tags: Immunology, antibodies, biodistribution

Selected publications

Tulika, T., Pedersen, R. W., Rimbault, C., Ahmadi, S., Rivera-de-Torre, E., Fernández-Quintero, M. L., Loeffler, J. R., Bohn, M. F., Ljungars, A., Ledsgaard, L., Voldborg, B. G., Ruso-Julve, F., Andersen, J. T., & Laustsen, A. H. (2023). Phage display assisted discovery of a pH-dependent anti-α-cobratoxin antibody from a natural variable domain library. Protein science: a publication of the Protein Society32(12), e4821. https://doi.org/10.1002/pro.4821 (Contribution)

Wade, J., Rimbault, C., Ali, H., Ledsgaard, L., Rivera-de-Torre, E., Abou Hachem, M., Boddum, K., Mirza, N., Bohn, M. F., Sakya, S. A., Ruso-Julve, F., Andersen, J. T., & Laustsen, A. H. (2022). Generation of Multivalent Nanobody-Based Proteins with Improved Neutralization of Long α-Neurotoxins from Elapid Snakes. Bioconjugate chemistry33(8), 1494–1504. https://doi.org/10.1021/acs.bioconjchem.2c00220 (*Co-corresponding)

García-Díaz, N., Casar, B., Alonso-Alonso, R., Quevedo, L., Rodríguez, M., Ruso-Julve, F., Esteve-Codina, A., Gut, M., Gru, A. A., González-Vela, M. C., Gut, I., Rodriguez-Peralto, J. L., Varela, I., Ortiz-Romero, P. L., Piris, M. A., & Vaqué, J. P. (2022). PLCγ1/PKCθ Downstream Signaling Controls Cutaneous T-Cell Lymphoma Development and Progression. The Journal of investigative dermatology142(5), 1391–1400.e15. https://doi.org/10.1016/j.jid.2021.09.024 (Contribution)

Ruso-Julve, F., Pombero, A., Pilar-Cuéllar, F., García-Díaz, N., Garcia-Lopez, R., Juncal-Ruiz, M., Castro, E., Díaz, Á., Vazquez-Bourgón, J., García-Blanco, A., Garro-Martinez, E., Pisonero, H., Estirado, A., Ayesa-Arriola, R., López-Giménez, J., Mayor, F., Jr, Valdizán, E., Meana, J., Gonzalez-Maeso, J., Martínez, S., … Crespo-Facorro, B. (2019). Dopaminergic control of ADAMTS2 expression through cAMP/CREB and ERK: molecular effects of antipsychotics. Translational psychiatry9(1), 306. https://doi.org/10.1038/s41398-019-0647-7. (*First author).

Gilabert-Juan, J., López-Campos, G., Sebastiá-Ortega, N., Guara-Ciurana, S., Ruso-Julve, F., Prieto, C., Crespo-Facorro, B., Sanjuán, J., & Moltó, M. D. (2019). Time dependent expression of the blood biomarkers EIF2D and TOX in patients with schizophrenia. Brain, behavior, and immunity80, 909–915. https://doi.org/10.1016/j.bbi.2019.05.015 (Contribution)

Sainz, J., Prieto, C., Ruso-Julve, F., & Crespo-Facorro, B. (2018). Blood Gene Expression Profile Predicts Response to Antipsychotics. Frontiers in molecular neuroscience11, 73. https://doi.org/10.3389/fnmol.2018.00073 (Third author)

Lopez-Gimenez, J. F., de la Fuente Revenga, M., Ruso-Julve, F., Saunders, J. M., Moreno, J. L., Crespo-Facorro, B., & González-Maeso, J. (2017). Validation of schizophrenia gene expression profile in a preclinical model of maternal infection during pregnancy. Schizophrenia research189, 217–218. https://doi.org/10.1016/j.schres.2017.02.005 (Third author)
Published Nov. 11, 2021 12:33 PM - Last modified Jan. 12, 2024 2:18 PM