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pro vyhledávání: '"Jessica Honorato, Ribeiro"'
Autor:
Jessica Honorato Ribeiro, Nazlican Altinisik, Nicholas Rajan, Mieke Verslegers, Sarah Baatout, Jay Gopalakrishnan, Roel Quintens
Publikováno v:
Frontiers in Cell and Developmental Biology, Vol 11 (2023)
DNA-damaging agents and endogenous DNA damage constantly harm genome integrity. Under genotoxic stress conditions, the DNA damage response (DDR) machinery is crucial in repairing lesions and preventing mutations in the basic structure of the DNA. Dif
Externí odkaz:
https://doaj.org/article/ed3e26e6bfff45288688e7af1f7209da
Autor:
Giselle Pinto de Faria Lopes, Rômulo Sperduto Dezonne, Cláudia Pereira, Gabriela Basile Carballo, Valéria Pereira Ferrer, Tania Cristina Leite de Sampaio e Spohr, Jessica Honorato Ribeiro
Publikováno v:
Cellular and Molecular Neurobiology. 41:1227-1244
Glioblastoma (GBM) is the most common adult primary tumor of the CNS characterized by rapid growth and diffuse invasiveness into the brain parenchyma. The GBM resistance to chemotherapeutic drugs may be due to the presence of cancer stem cells (CSCs)
Autor:
Gabriela Basile, Carballo, Jessica Honorato, Ribeiro, Giselle Pinto de Faria, Lopes, Valéria Pereira, Ferrer, Romulo Sperduto, Dezonne, Cláudia Maria, Pereira, Tania Cristina Leite de Sampaio E, Spohr
Publikováno v:
Cellular and molecular neurobiology. 41(6)
Glioblastoma (GBM) is the most common adult primary tumor of the CNS characterized by rapid growth and diffuse invasiveness into the brain parenchyma. The GBM resistance to chemotherapeutic drugs may be due to the presence of cancer stem cells (CSCs)
Autor:
Jessica Honorato Ribeiro, Tania Cristina Leite de Sampaio e Spohr, Diana Matias, Luciana Santos Pessoa, Gabriela Basile Carballo, Ananias Matos Arrais Neto
Publikováno v:
Life Sciences. 257:118027
AimGlioblastoma is an extremely aggressive glioma, resistant to radio and chemotherapy usually performed with temozolomide. One of the main reasons for glioblastoma resistance to conventional therapies is due to the presence of cancer stem-like cells