The library will operate on a duty schedule between 22 December 2025 and 4 January 2026. During this period, it will be possible to upload publications, but all other services will be suspended.
Hennequart, S. C.,
Paavilainen, T.,
O'Dwyer, M.,
Révészné Tóth, R.,
Carty, M. P.,
Samali, A.,
Szegezdi, É.:
G2/M Arrest Sensitises Erythroid Leukemia Cells to TRAIL-induced Apoptosis.
J. Leuk. 4 (1), 1-5, 2015.
Kiss, I.,
Kovácsné Oskolás, H.,
Révészné Tóth, R.,
Bouillet, P.,
Tóth, K. Á.,
Fülöp, A.,
Scholtz, B.,
Ledent, C.,
Fésüs, L.,
Szondy, Z.:
Adenosine A2A receptor-mediated cell death of mouse thymocytes involves adenylate cyclase and Bim and is negatively regulated by Nur77.
Eur. J. Immunol. 36 (6), 1559-1571, 2006.
Fésüs, L.,
Révészné Tóth, R.,
Mádi, A.:
Az apoptóziskutatás története.
In: Apoptózis. Szerk.: Kopper László, Fésüs László, Medicina, Budapest, 15-34, 2002. ISBN: 9632427963
Révészné Tóth, R.,
Szegezdi, É.,
Reichert, U.,
Bernardon, J. M.,
Michel, S.,
Ancian, P.,
Kis-Tóth, K.,
Macsári, Z.,
Fésüs, L.,
Szondy, Z.:
Activation-induced apoptosis and cell surface expression of Fas (CD95) ligand are reciprocally regulated by retinoic acid receptor alpha and gamma and involve nur77 in T cells.
Eur. J. Immunol. 31 (5), 1382-1391, 2001.
Szondy, Z.,
Révészné Tóth, R.,
Szegezdi, É.,
Reichert, U.,
Ancian, P.,
Fésüs, L.:
Cell death in HIV pathogenesis and its modulation by retinoids.
Ann. N. Y. Acad. Sci. 946, 95-107, 2001.
Q2
Biochemistry, Genetics and Molecular Biology (miscellaneous)
D1
History and Philosophy of Science
Q2
Neuroscience (miscellaneous)
1999
7.
Révészné Tóth, R.,
Szegezdi, É.,
Molnár, G.,
Lord, J. M.,
Fésüs, L.,
Szondy, Z.:
Regulation of cell surface expression of Fas (CD95) ligand and susceptibility to Fas (CD95)-mediated apoptosis in activation-induced T cell death involves calcineurin and protein kinase C, respectively.
Eur. J. Immunol. 29 (2), 383-393, 1999.
Szondy, Z.,
Reichert, U.,
Bernardon, J. M.,
Michel, S.,
Révészné Tóth, R.,
Karászi, É.,
Fésüs, L.:
Inhibition of activation-induced apoptosis of thymocytes by all-trans- and 9-cis-retinoic acid is mediated via retinoic acid receptor alpha.
Biochem. J. 331 (3), 767-774, 1998.
Szondy, Z.,
Molnár, P. P.,
Nemes, Z.,
Boyiadzis, M.,
Kedei, N.,
Révészné Tóth, R.,
Fésüs, L.:
Differential expression of tissue transglutaminase during in vivo apoptosis of thymocytes induced via distinct signalling pathways.
FEBS Lett. 404 (2-3), 307-313, 1997.
Szondy, Z.,
Reichert, U.,
Bernardon, J. M.,
Michel, S.,
Révészné Tóth, R.,
Ancian, P.,
Ajzner, É.,
Fésüs, L.:
Induction of apoptosis by retinoids and retinoic acid receptor gamma-selective compounds in mouse thymocytes through a novel apoptosis pathway.
Mol. Pharmacol. 51 (6), 972-982, 1997.