Impact of sound exposure and aging on brain-derived neurotrophic factor and tyrosine kinase B receptors levels in dorsal cochlear nucleus 80 days following sound exposure

Neuroscience. 2011 Jan 13:172:453-9. doi: 10.1016/j.neuroscience.2010.10.056. Epub 2010 Oct 27.

Abstract

Recent studies suggested that acute sound exposure resulting in a temporary threshold shift in young adult animals within a series of maladaptive plasticity changes in central auditory structures. Brain-derived neurotrophic factor (BDNF), a member of the neurotrophin family, is involved in post-trauma peripheral hair cell and spiral ganglion cell survival and has been shown to modulate synaptic strength in cochlear nucleus following sound exposure. The present study evaluated levels of BDNF and its receptor (tyrosine kinase B, [TrkB]) in the dorsal cochlear nucleus (DCN) following a unilateral moderate sound exposure in young (7-8 months) and aged (28-29 months) Fischer Brown Norway (FBN) rats. Eighty days post-exposure, auditory brainstem response (ABR) thresholds for young exposed rats approached control values while aged exposed rats showed residual permanent threshold shifts (PTS) relative to aged controls. BDNF protein levels were significantly up-regulated by 9% in young exposed fusiform cells ipsilateral to the exposure. BDNF levels in aged sound-exposed fusiform cells increased 31% ipsilateral to the exposure. Protein levels of the BDNF receptor, TrkB, were also significantly increased in aged but not in young sound-exposed DCN fusiform cells. The present findings suggest a relationship between the up-regulation of BDNF/TrkB and the increase in spontaneous and driven activity previously observed for aged and sound-exposed fusiform cells. This might be due to a selective maladaptive compensatory down-regulation of glycinergic inhibition in DCN fusiform cells.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Acoustic Stimulation / adverse effects
  • Acoustic Stimulation / methods
  • Aging / metabolism*
  • Animals
  • Brain-Derived Neurotrophic Factor / biosynthesis
  • Brain-Derived Neurotrophic Factor / metabolism*
  • Cell Survival / physiology
  • Cochlear Nucleus / metabolism*
  • Cochlear Nucleus / pathology
  • Cochlear Nucleus / physiopathology
  • Disease Models, Animal
  • Hearing Loss, Central / metabolism*
  • Hearing Loss, Central / pathology
  • Hearing Loss, Central / physiopathology
  • Hearing Loss, Noise-Induced / metabolism
  • Hearing Loss, Noise-Induced / pathology
  • Hearing Loss, Noise-Induced / physiopathology
  • Male
  • Noise / adverse effects*
  • Rats
  • Rats, Inbred F344
  • Receptor, trkB / biosynthesis
  • Receptor, trkB / metabolism*

Substances

  • Brain-Derived Neurotrophic Factor
  • Receptor, trkB