Zobrazeno 1 - 10
of 47
pro vyhledávání: '"L. Tauber"'
Autor:
Stefanie Zschäbitz, Nadine Biernath, Thomas Hilser, Alexander Höllein, Friedemann Zengerling, Jozefina Cascucelli, Pia Paffenholz, Daniel Seidl, Christoph Lutz, Katrin Schlack, Dorothea Kingreen, Niklas Klümper, Philipp Ivanyi, Gunhild von Amsberg, Hendrik Heers, Florian Roghmann, Robert L. Tauber, Richard Cathomas, Luisa Hofer, Günter Niegisch, Melanie Klee, Roland Ehrenberg, Andreas Hassler, Boris A. Hadaschik, Viktor Grünwald, Christopher Darr
Publikováno v:
European Urology Open Science, Vol 53, Iss , Pp 31-37 (2023)
Background: Treatment options for patients with urothelial cancer (UC) refractory to platinum and immunotherapy are limited and survival is short. Enfortumab vedotin (EV) is a monoclonal anti-NECTIN4 antibody conjugated to monomethyl auristatin. It w
Externí odkaz:
https://doaj.org/article/bd7cfc5ca9a44412a57048e564c5b88c
Publikováno v:
Future Medicinal Chemistry. 15:225-227
Publikováno v:
Journal of Chemical Education. 99:1183-1189
Publikováno v:
Journal of Chemical Education. 98:651-654
This paper describes the design and effectiveness of a 360° (identified as 360) virtual laboratory tour which was implemented in a second-year undergraduate chemistry subject to familiarize the students with the research laboratory environment, equi
Publikováno v:
Future Medicinal Chemistry. 12:2179-2190
Poly(ADP-ribose) polymerase (PARP) members PARP1 and PARP14 belong to an 18-member superfamily of post-translational modifying enzymes. A library of 9 novel non-NAD analog amine compounds was designed, synthesized and evaluated for inhibitory activit
Publikováno v:
Future Medicinal Chemistry. 12:1729-1741
Aim: ADP-ribosyl transferase member 8 (ARTD8) of the ARTD superfamily has been identified as a possible anti-cancer, antiviral and anti-inflammatory target. Method: Pure actives from natural products with a documented anti-cancer activity were docked
Publikováno v:
Future Medicinal Chemistry. 12:1657-1667
This review aims to reflect upon the major developments in PARP14 research from late 2017 to early 2020. In doing so, this report will focus on the continual elucidation of PARP14’s function including an emerging role in viral replication. This is
Autor:
J.M. Oliva-Martínez, Ull Solís, Z.C. Lopez, G.S. Carvalho, L.R. Galagovsky, J.L. Domènech Blanco, M.J. García, M.M. de la Fuente, I.R. Albadalejo, V.M. Jiménez, Á.B. López, E. de la Torre Fernández, G.R. Andrés, J.C. Yáñez, J.S. Martín, E.E. Ramos, S.I. Cazares, J.M. Campanario Larguero, N.S. Puig, N.Y. Torres Merchan, Á.B. Rodríguez, E.B. Jiménez, C.G. Merino Rubilar, B. Puig, P.B. Anaya, A.E. Esteves Santiago, A.V. Pena, C.E. Reigosa Castro, J.M. Ramón, A. Nortes, M.E. Basté, M.J. Cáceres García, I.G.-R. Gayoso, I.F. Palomares, J.M. Chamoso Sánchez, M. Fonolleda, E.M. González, R.V. Carbonell, T.F. Blanco, C.J. Gestal, A.M. Blancafort, Á.G. Martínez, P.R. Richard, K. Boukafri, V.S. López, M.P. Jiménez Aleixandre, A.M. Machado, E. Castro-Rodríguez, B.G. Alfonso, M.J.J. Traver Ribes, C.G. Rodríguez, J.F. Ruiz Hidalgo, R.J. Pérez, G. Torregrosa-Gironés, J. Carrasquer, C.M. Losada, F.C. Císcar, E.F. Amórtegui Cedeño, W.L. Cedro, P.D. Diago Nebot, M.E. Durán García, M.N. Fraile, L.P. de Eulate, M.R. Jiménez-Liso, M.C. Cañadas, I.S. Alex, A. Ezquerra, L.C. Garrote, J.C. Doménech, B. Cantero, M.C. Naya Riveiro, A.L. de Longhi, V. Martín, B.B. Torija, J.D. Godino, R.B. López, A.M. Criado García-Legaz, Sánchez, M.J. Beltrán Meneu, V.A. Cuadrado, R.L.-G. Lucio-Villegas, V.M. Niño, B.B.I. Farràs, C.P. Gómez, T.G. Astudillo, Á.L. Cortés Gracia, A.B. Benarroch, Ó.R. Lozano Lucia, V. Font, R.M. Del Pozo, M.M. Chico, M.L. Callejo, J.N. Cornejo, B. Oliveras, M.R. Lemini, M.P. Martínez-Agut, L. Ordóñez, J.M. Marbán Prieto, S.G. Dall’alba, A.Q. Armenteros, J.G. Pérez, A. de Pro Bueno, J.M. Calvo Hernández, M.C. Machín, L. Andrade, J.H. Durango Urrego, M.F. Petit Pérez, J.C. Gutiérrez, E.C. Martínez, C.S. Castro, R.M. Farfán Márquez, A. Estepa, P.M. Iglesia, F.J. Perales Palacios, J.G. Sánchez, M.T. Ortega, N.S. Pairó, V.A. Costa, A.J. Pastor, A.M. Oller, J. Otero, M.C. Parraguez González, J.C. Llobet, N.B. Martínez, V.G. Catalán, A.C. Ros, J.Á. Meneses Villagrá, M. de Los Angeles Fanaro Cavalli, J.D. Casal, F. Kong, C.A. Martínez Rivera, M.R. Quintanilla-Gatica, E.A. Fernández, C.L. Esteban, I.T. Sandoval Cáceres, A. Adúriz-Bravo, J.M. Muñoz Escolano, L.M. Casas, C.M. Fernández Escalona, E.S. Ramírez, G. Maguregi-González, M.P. Álvarez, Á.C. de la Fuente, E.B. Hernández, M. Trigueros, P.F. Martínez, B.C. Pérez, M.R. Wilhelmi, M.Á. Montes Navarro, L. Collazo, M.M. Gea, M.L. Oliveras Contreras, G.S. Matamoros García, C.V. Rapp, A.J. Franco-Mariscal, M.I. Hernández Rodríguez, J.M. Domínguez Castiñeiras, M.M. Mar, M.C. Valcarce, M.B. Martínez Peña, M. Del Mar Aragón-Méndez, C.M. Gámez, A. Bruno, C.F. Verdú, J.A. Llorens Molina, M.Á. Murga-Menoyo, M. Del Mar Moreno Moreno, R.O. Rey, J.I. Murillo, A.M. Abril Gallego, R.R. Uclés, M.C. Armenta, A.S. Sandra Visokolskis, M.-C. Ricoy, A. Noda, B.V. Bernal, P. Gavilán, M. Molina, S.L. Ramos, J.A. Fernández Plaza, H.C. Solar Bezmalinovic, J.B. Farre, F.A. Delgado, J.L. Lupiañez Gómez, J.P. Díaz, M.C. Domínguez Sales, M.R. Ariza, E.G. García Arteaga, M.M. Martínez Aznar, J.G. Aranzabal, N.A. Povedano, L. Tauber, R. Nebot, L.O. García, Á.V. Alonso, F.T. Martínez, L.J. Rodríguez-Muñiz, P. Tuzón, A.R. Corica, M. Morentin, J.B. Plaza, A.R. Esteve Martínez, P.S. Vázquez, A.M. Moreno, C.L. Joglar, S.G. Barros, F.G. García, M.J. Fuentes Silveira, A. Marbà-Tallada, A. Acher, J.A. González-Calero, B.M. Gil, A.S. Alcaide, C. Batanero, N.C. Rodríguez, C.E. Machado, J.S. Matarredona, G.C. Bernat, V.L. Felicetti, J.M. Gavilán Izquierdo, J.C. Rivadulla López, A.B. Alcaraz, F.M. Rodríguez Vásquez, L.A. Gordo, C. Ferrés, F.J. García García, J.M. Torregrosa, M.Á. Lires, L.C. Uribe, F.J. Ruiz Ortega, J.A. Maymí, A. García-Carmona, M.P. Jiménez Tejada
Publikováno v:
Enseñanza de las Ciencias. Revista de investigación y experiencias didácticas. 37:5-8
Publikováno v:
Future Medicinal Chemistry
Understanding the potential association between the poly (ADP-ribose) polymerase member 14 (PARP14) and the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) may aid in understanding the host immunopathological response to the virus. PARP1
Mediterranean mid-altitude sites are critical for the survival of plant species allowing for elevational vegetation shifts in response to high-amplitude climate variability. Pollen records from the southern Balkans have underlined the importance of t
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______2127::3e0cff562b2e1f07a16a3183c5b7fc38
https://pergamos.lib.uoa.gr/uoa/dl/object/uoadl:2993305
https://pergamos.lib.uoa.gr/uoa/dl/object/uoadl:2993305