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Auflistung Neurociencias.artículos nach Autor "Lombardi, Antonella"

Auflistung Neurociencias.artículos nach Autor "Lombardi, Antonella"

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  • Aban, Cyntia; Lombardi, Antonella; Neiman, Gabriel; Biani, María Celeste; La Greca, Alejandro; Waisman, Ariel; Moro, Lucía Natalia; Sevlever, Gustavo Emilio; Miriuka, Santiago Gabriel; Luzzani, Carlos Daniel (Nature Publishing Group, 2021-01-21)
    Epithelial to mesenchymal transition (EMT) is a critical cellular process that has been well characterized during embryonic development and cancer metastasis and it also is implicated in several physiological and pathological ...
  • Martire-Greco, Daiana; La Greca, Alejandro; Castillo Montañez, Luis; Biani, María Celeste; Lombardi, Antonella; Birnberg-Weiss, Federico; Norris, Alessandra; Sacerdoti, Flavia; Amaral, María Marta; Rodrigues-Rodriguez, Nahuel; Pittaluga, Jose Ramón; Furmento, Verónica Alejandra; Landoni, Verónica Inés; Miriuka, Santiago Gabriel; Luzzani, Carlos Daniel; Fernández, Gabriela Cristina (Lippincott Williams & Wilkins, 2023-04-11)
    Background : Mesenchymal stem cells (MSCs) can be activated by different bacterial toxins. Lipopolysaccharides and Shiga Toxin (Stx) are the main toxins necessary for hemolytic uremic syndrome development. The main etiological ...
  • Pagnotta, Priscila; Gantov, Mariana; Fletcher, Sabrina; Lombardi, Antonella; Crosbie, María Lujan; Santiso, Natalia; Ursino, Anabela; Frascarolli, Celeste; Amato, Alicia; Dreszman, Rubén; Calvo, Juan Carlos; Toneatto, Judith (Frontiers Research Foundation, 2023-04-26)
    Background: Stromal adipocytes and tumor breast epithelial cells undergo a mutual metabolic adaptation within tumor microenvironment. Therefore, browning and lipolysis occur in cancer associated adipocytes (CAA). However, ...
  • Pérez-Sosa, Camilo; Sanluis-Verdes, Anahí; Waisman, Ariel; Lombardi, Antonella; Rosero, Gustavo; La Greca, Alejandro; Bhansali, Shekhar; Bourguignon, Natalia; Luzzani, Carlos Daniel; Pérez, Maximiliano S.; Miriuka, Santiago Gabriel; Lerner, Betiana (Royal Society Publishing, 2022-01-12)
    Microfluidic tools have recently made possible many advances in biological and biomedical research. Research in fields such as physics, engineering, chemistry and biology have combined to produce innovation in microfluidics ...

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