Repositorio Dspace

ListarNeurociencias.artículos por tema "Diferenciación Celular"

ListarNeurociencias.artículos por tema "Diferenciación Celular"

Ordenar por:Orden:Resultados:

  • Camilletti, María Andrea; Chirino Felker, Gonzalo Tomás; Castañeda, Sheila; Zabalegui, Federico; Amin, Guadalupe; Belgorosky, Alicia; Ciaccio, Marta; Di Palma, Maria Isabel; Vaiani, Elisa; Waisman, Ariel; Miriuka, Santiago Gabriel; Pérez Millán, María Inés; Moro, Lucia Natalia (Elsevier, 2025-07-15)
    Forkhead box A2 (FOXA2) is a pioneer transcription factor, necessary for human development. Mutations in FOXA2 were recently associated with congenital hypopituitarism (CH); however, the pathogenic mechanism remains unknown. ...
  • Freiberger, Rosa Nicole; López, Cynthia Alicia Marcela; Sviercz, Franco Agustin; Jarmoluk, Patricio; Palma, María Belén; García, Marcela Nilda; Quarleri, Jorge; Delpino, M. Victoria (Frontiers Media, 2025-07-17)
    Introduction: Adipose tissue regulates metabolic homeostasis and serves as a reservoir for mesenchymal stem cells (MSCs), which differentiate into osteoblasts and adipocytes, balancing bone and lipid metabolism. Bone loss ...
  • La Greca, Alejandro; Scarafía, María Agustina; Hernández Cañás, María Clara; Pérez, Nelba; Castañeda, Sheila; Colli, Carolina; Miqueas Möbbs, Alan; Santín Velazque, Natalia Lucía; Neiman, Gabriel; Garate, Ximena; Aban, Cyntia; Waisman, Ariel; Moro, Lucía Natalia; Sevlever, Gustavo Emilio; Luzzani, Carlos Daniel; Miriuka, Santiago Gabriel (Public Library of Science, 2020-05-05)
    PIWI-interacting RNAs (piRNAs) are a class of non-coding RNAs initially thought to be restricted exclusively to germline cells. In recent years, accumulating evidence has demonstrated that piRNAs are actually expressed in ...
  • Solari, Claudia; Petrone, María Victoria; Toro, Ayelén; Vázquez Echegaray, Camila; Cosentino, María Soledad; Waisman, Ariel; Francia, Marcos; Barañao, Lino; Miriuka, Santiago Gabriel; Guberman, Alejandra S. (Biomed Central, 2019-07-01)
    OBJECTIVE: Redox homeostasis maintenance is essential to bring about cellular functions. Particularly, embryonic stem cells (ESCs) have high fidelity mechanisms for DNA repair, high activity of different antioxidant enzymes ...

Buscar en DSpace


Listar

Mi cuenta