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Differentiation of an auditory neuronal cell line suitable for cell transplantation (2005)
  • Nicholl,
  • A.J.,
  • Kneebone,
  • A.,
  • Davies,
  • D.,
  • Cacciabue-Rivolta,
  • D.I.,
  • Rivolta,
  • M.N.,
  • Coffey,
  • P.,
  • Holley,
  • M.C.

Abstract
The auditory neuroblast cell line US/VOT-N33 (N33), which is conditionally immortal, was studied as an in vitro model for the differentiation of spiral ganglion neurons (SGNs) and as a candidate for cell transplantation in rodents. It expresses numerous molecular markers characteristic of auditory neuroblasts, including the transcription factors GATA3, NeuroD, Brn3a and Islet1, as well as the neuronal cytoskeletal protein beta3-tubulin. It displays active migratory behaviour in vitro and in vivo. In the presence of the fibroblast growth factors FGF1 or FGF2 it differentiates bipolar morphologies similar to those of native SGNs. In coculture with neonatal cochlear tissue it is repelled from epithelial surfaces but not from native SGNs, alongside which it extends parallel neuronal processes. When injected into the retina in vivo, EGFP-labelled N33 cells were traced for 1-2 weeks and migrated rapidly within the subretinal space. Cells that found their way into the retinal ganglion cell layer extended multiple processes but did not express beta3-tubulin. The ability of N33 to migrate, to differentiate, to localize with native SGNs in vitro and to survive in vivo suggests that they provide an effective model for SGN differentiation and for cell transplantation into the ear

Publication details
Repository UCL Research Publications Index (MyOPIA) (United Kingdom)
Keywords Animals, Animals,Newborn, Basic Helix-Loop-Helix Transcription Factors, Brain-Derived Neurotrophic Factor, Cell Count, Cell Differentiation, Cell Line, Cell Movement, Cell Transplantation, Cells,Cultured, Cochlea, Coculture Techniques, Comparative Study, cytology, DIFFERENTIATION, DNA-Binding Proteins, Dose-Response Relationship,Drug, Drug Combinations, drug effects, Fibroblast Growth Factor 1, Fibroblast Growth Factor 2, Fibroblast Growth Factors, ganglion cell, GATA3 Transcription Factor, Gene Expression Regulation,Developmental, Green Fluorescent Proteins, growth & development, Immunohistochemistry, In Vitro, metabolism, methods, Mice, Mice,Inbred C57BL, MORPHOLOGY, MOUSE, NERVE, Nerve Tissue Proteins, Neurons, Neurotrophin 3, Organ of Corti, pharmacology, physiology, physiopathology, Proteins, Rats, Research Support,Non-U.S.Gov't, Retina, Time Factors, Trans-Activators, Transcription Factor Brn-3, Transcription Factor Brn-3A, Transcription Factors, Transfection, transplantation, Tubulin, Wounds and Injuries
Type JOUR
Relation 343-353