Imaging collective cell migration and hair cell regeneration in the sensory lateral line


Abstract:

The accessibility of the lateral line system and its amenability to long-term in vivo imaging transformed the developing lateral line into a powerful model system to study fundamental morphogenetic events, such as guided migration, proliferation, cell shape changes, organ formation, organ deposition, cell specification and differentiation. In addition, the lateral line is not only amenable to live imaging during migration stages but also during postembryonic events such as sensory organ tissue homeostasis and regeneration. The robust regenerative capabilities of the mature, mechanosensory lateral line hair cells, which are homologous to inner ear hair cells and the ease with which they can be imaged, have brought zebrafish into the spotlight as a model to develop tools to treat human deafness. In this chapter, we describe protocols for long-term in vivo confocal imaging of the developing and regenerating lateral line. © 2016 Elsevier Inc.

Año de publicación:

2016

Keywords:

  • Primordium
  • Collective migration
  • Zebrafish embryo
  • Sensory system
  • Spatial Analysis
  • Confocal imaging
  • Time lapse
  • Hair cells
  • REGENERATION
  • Transgenic lines

Fuente:

googlegoogle
scopusscopus

Tipo de documento:

Article

Estado:

Acceso restringido

Áreas de conocimiento:

  • Biología celular
  • Biología

Áreas temáticas:

  • Fisiología y materias afines
  • Historia natural de los organismos