Postnatal expression of TrkB receptor in rat vestibular nuclear neurons responsive to horizontal and vertical linear accelerations

Chun-Wai MA, Fu-Xing ZHANG, Chun-Hong LAI, Suk-King LAI, Kin Lam Ken YUNG, Daisy Kwok-Yan SHUM, Ying-Shing CHAN

Research output: Contribution to journalArticlespeer-review

7 Citations (Scopus)

Abstract

We examined the maturation expression profile of tyrosine kinase B (TrkB) receptor in rat vestibular nuclear neurons that were activated by sinusoidal linear acceleration along the horizontal or vertical axis. The otolithic origin of Fos expression in these neurons was confirmed with labyrinthectomized controls and normal controls, which showed only sporadically scattered Fos-labeled neurons in the vestibular nucleus. In P4-6 test rats, no Fos-labeled neurons were found in the vestibular nucleus, but the medial and spinal vestibular neurons showed weak immunoreactivity for TrkB. The intensity of TrkB immunoreactivity in vestibular nuclear neurons progressively increased in the second postnatal week but remained low in adults. From P7 onward, TrkB-expressing neurons responded to horizontal or vertical otolithic stimulation with Fos expression. The number of Fos-labeled vestibular nuclear neurons expressing TrkB increased with age, from 13-43% in P7 rats to 85-90% in adult rats. Our results therefore suggest that TrkB/neurotrophin signaling plays a dominant role in modulating vestibular nuclear neurons for the coding of gravity-related horizontal head movements and for the regulation of vestibular-related behavior during postnatal development. Copyright © 2012 Wiley Periodicals, Inc.

Original languageEnglish
Pages (from-to)612-625
JournalThe Journal of Comparative Neurology
Volume521
Issue number3
Early online dateJul 2012
DOIs
Publication statusPublished - Feb 2013

Citation

Ma, C.-W., Zhang, F.-X., Lai, C.-H., Lai, S.-K., Yung, K. K.-L., Shum, D. K.-Y., & Chan, Y.-S. (2013). Postnatal expression of TrkB receptor in rat vestibular nuclear neurons responsive to horizontal and vertical linear accelerations. The Journal of Comparative Neurology, 521(3), 612-625. https://doi.org/10.1002/cne.23193

Keywords

  • TrkB
  • Fos
  • Vestibular nucleus
  • Otolith organs
  • Linear acceleration

Fingerprint

Dive into the research topics of 'Postnatal expression of TrkB receptor in rat vestibular nuclear neurons responsive to horizontal and vertical linear accelerations'. Together they form a unique fingerprint.