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Browsing Neurociencias by Author "Isaja, Luciana"

Browsing Neurociencias by Author "Isaja, Luciana"

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  • Mucci, Sofía; Isaja, Luciana; Rodríguez Varela, María Soledad; Ferriol Laffouillere, Sofía Luján; Marazita, Mariela Claudia; Videla Richardson, Guillermo Agustín; Sevlever, Gustavo Emilio; Scassa, María Élida; Romorini, Leonardo (Nature Publishing Group, 2022-10-05)
    Human embryonic and induced pluripotent stem cells are self-renewing pluripotent stem cells (hPSCs) that can differentiate into a wide range of specialized cells. Although moderate hypoxia (5% O2) improves hPSC self-renewal, ...
  • Isaja, Luciana; Mucci, Sofía; Vera, Jonathan; Rodríguez Varela, María Soledad; Marazita, Mariela Claudia; Morris-Hanon, Olivia; Videla Richardson, Guillermo Agustín; Sevlever, Gustavo Emilio; Scassa, María Élida; Romorini, Leonardo (Nature Publishing Group, 2020-10-26)
    Human embryonic and induced pluripotent stem cells (hESCs and hiPSCs) are self-renewing human pluripotent stem cells (hPSCs) that can differentiate to a wide range of specialized cells. Notably, hPSCs enhance their ...
  • Isaja, Luciana; Ferriol Laffouillere, Sofía Luján; Mucci, Sofía; Rodríguez Varela, María Soledad; Romorini, Leonardo (Springer, 2021-10-06)
    Human embryonic stem cells (hESCs) can differentiate into any cell lineage (pluripotency potential) derived from the three germ layers: ectoderm, mesoderm, and endoderm. Pluripotency is usually demonstrated in vitro by ...
  • Nievas, Micaela; Romorini, Leonardo; Isaja, Luciana; Clas, Giulia S.; Rodríguez Varela, María Soledad; Mucci, Sofía; Itzcovich, Tatiana; de Ambrosi, Bruno; Scassa, María Élida; Sevlever, Gustavo Emilio; Surace, Ezequiel Ignacio; Marazita, Mariela Claudia (Elsevier, 2023-03-22)
    Human induced pluripotent stem cell (hiPSC) line INEUi001-A was reprogrammed from peripheral blood mononuclear cells (PBMC) using the lentiviral-hSTEMCCA-loxP vector. PBMCs were obtained from a 75- year-old female ALS/FTD ...
  • Isaja, Luciana; Rodríguez Varela, María Soledad; Marazita, Mariela Claudia; Mucci, Sofía; Itzcovich, Tatiana; Chrem Méndez, Patricio Alexis; Niikado, Matías; Ferriol Laffouillere, Sofía Luján; Allegri, Ricardo Francisco; Martinetto, Horacio; Sevlever, Gustavo Emilio; Scassa, María Élida; Surace, Ezequiel Ignacio; Romorini, Leonardo (Elsevier, 2021-04-05)
    Human induced pluripotent stem cells (hiPSC) line FLENIi001-A was reprogrammed from dermal fibroblasts using the lentiviral-hSTEMCCA-loxP vector. Fibroblasts were obtained from a skin biopsy of a 72-year-old Caucasian male ...
  • Rodríguez Varela, María Soledad; Mucci, Sofía; Videla Richardson, Guillermo Agustín; Isaja, Luciana; Sevlever, Gustavo Emilio; Scassa, María Élida; Romorini, Leonardo (Elsevier, 2021-01-21)
    Human pluripotent stem cells (hPSCs), like embryonic (hESCs) and induced pluripotent stem cells (hiPSCs), exhibit an unusual cell cycle structure characterized by a short G1 phase and cells being most of time in S phase. ...
  • Morris-Hanon, Olivia; Marazita, Mariela Claudia; Romorini, Leonardo; Isaja, Luciana; Fernandez-Espinosa, Damián Darío; Sevlever, Gustavo Emilio; Scassa, María Élida; Videla Richardson, Guillermo Agustín (Springer, 2019-05-23)
    Glioblastoma multiforme is the most aggressive primary brain tumor. Current knowledge suggests that the growth and recurrence of these tumors are due in part to the therapy-resistant glioma stem cell subpopulation, which ...
  • Mucci, Sofía; Rodríguez Varela, María Soledad; Isaja, Luciana; Ferriol Laffouillere, Sofía Luján; Sevlever, Gustavo Emilio; Scassa, María Élida; Romorini, Leonardo (Cell Press, 2022-06-18)
    The analysis of morphological features of neurons derived from human pluripotent stem cells (hPSCs) is important to describe neuronal phenotypes and changes observed throughout development. Using free and easily accessible ...
  • Marks, María Paula; Giménez, Carla Alejandra; Isaja, Luciana; Vera, Mariana Belén; Borzone, Francisco Raúl; Pereyra-Bonnet, Federico; Romorini, Leonardo; Videla Richardson, Guillermo Agustín; Chasseing, Norma Alejandra; Calvo, Juan Carlos; Vellón, Luciano (Springer-Verlag, 2024-02-28)
    Purpose: De novo synthesis of cholesterol and its rate-limiting enzyme, 3-hydroxy-3-methylglutharyl-coenzyme A reductase (HMGCR), is deregulated in tumors and critical for tumor cell survival and proliferation. However, ...

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