O repositorio dixital RUNA

    • Español
    • Galego
    • English
  • Galego 
    • Español
    • Galego
    • English
  • Login
RUNABibliosaúdeXunta de galicia. Consellería de sanidadeServicio Galego de saúde
  • REPOSITORIO
  • SOBRE NÓS
    • Sobre RUNA
    • Normativa
    • Política Sergas
  • AXUDA
    • Axuda
    • FAQ
  •   RUNA Principal
  • Publicación científica
  • Ver ítem
JavaScript is disabled for your browser. Some features of this site may not work without it.

Programmed cell senescence during mammalian embryonic development

Muñoz-Espín, D.; Cañamero, M.; Maraver, A.; Gómez-López, G.; Contreras, J.; Murillo-Cuesta, S.; Rodríguez-Baeza, A.; Varela-Nieto, I.; Ruberte, J.; Collado Rodríguez, Manuel; Serrano, M.
Thumbnail
Estatísticas
Estatísticas
Article has an altmetric score of 207
Ver Estatísticas de uso
Identificadores
Identificadores
URI: http://hdl.handle.net/20.500.11940/3668
PMID: 24238962
DOI: 10.1016/j.cell.2013.10.019
ISSN: 0092-8674
Rexistro completo
Servizos
Servizos
RISMendeleyLinksolver
Visualización ou descarga de ficheiros
Visualización ou descarga de ficheiros
Cell . 2013 Nov 21;155(5):1104-18 (7.225Mb)
Data de publicación
2013
Título da revista
CELL
Tipo de contido
Artigo
Resumo
Cellular senescence disables proliferation in damaged cells, and it is relevant for cancer and aging. Here, we show that senescence occurs during mammalian embryonic development at multiple locations, including the mesonephros and the endolymphatic sac of the inner ear, which we have analyzed in detail. Mechanistically, senescence in both structures is strictly dependent on p21, but independent of DNA damage, p53, or other cell-cycle inhibitors, and it is regulated by the TGF-beta/SMAD and PI3K/FOXO pathways. Developmentally programmed senescence is followed by macrophage infiltration, clearance of senescent cells, and tissue remodeling. Loss of senescence due to the absence of p21 is partially compensated by apoptosis but still results in detectable developmental abnormalities. Importantly, the mesonephros and endolymphatic sac of human embryos also show evidence of senescence. We conclude that the role of developmentally programmed senescence is to promote tissue remodeling and propose that this is the evolutionary origin of damage-induced senescence.

Navega

Todo RUNAColecciónsCentrosAutoresTítulosDeCSMeSHCIETipo de contidoEsta colecciónCentrosAutoresTítulosDeCSMeSHCIETipo de contido

Estatísticas

Ver Estatísticas de uso

DE INTERESE

Sobre Acceso AbertoDereitos de autor
TwitterRSS
Xunta de Galicia
© Xunta de Galicia. Información mantida e publicada na internet pola Consellería de Sanidade o Servizo Galego de Saúde
Aviso legal | RSS
Galicia
 

 

Picked up by 14 news outlets
Blogged by 11
Posted by 33 X users
Referenced in 25 patents
On 2 Facebook pages
Referenced in 3 Wikipedia pages
Mentioned in 1 Google+ posts
Highlighted by 1 platforms
1497 readers on Mendeley
See more details