Axonal sprouting in the dorsal cochlear nucleus affects gap-prepulse inhibition following noise exposure

  • Han, K.-H.
  • Mun, S.-K.
  • Sohn, S.
  • Piao, X.-Y.
  • Park, I.
  • 외 1명
Citations

WEB OF SCIENCE

11
Citations

SCOPUS

10

초록

One of the primary theories of the pathogenesis of tinnitus involves maladaptive auditory.somatosensory plasticity in the dorsal cochlear nucleus (DC N), which is assumed to be due to axonal sprouting. Although a disrupted balance between auditory and somatosensory inputs may occur following hearing damage and may induce tinnitus, examination of this phenomenon employed a model of hearing damage that does not account for the causal relationship between these changes and tinnitus. The present study aimed to investigate changes in auditory-somatosensory innervation and the role that axonal sprouting serves in this process by comparing results between animals with and without tinnitus. Rats were exposed to a noise-inducing temporary threshold shift and were subsequently divided into tinnitus and non-tinnitus groups based on the results of gap prepulse inhibition of the acoustic startle reflex. DC Ns were collected from rats divided into three sub.groups according to the number of weeks (1, 2 or 3) following noise exposure, and the protein levels of vesicular glutamate transporter 1 (VGLUT1), which is associated with auditory input to the DC N, and VGLUT2, which is in turn primarily associated with somatosensory inputs, were assessed. In addition, factors related to axonal sprouting, including growth-associated protein 43 (GAP43), postsynaptic density protein 95, synaptophysin, α-thalassemia/mental retardation syndrome X-linked homolog (ATRX), growth differentiation factor 10 (GDF10), and leucine-rich repeat and immunoglobulin domain-containing 1, were measured by western blot analyses. Compared to the non-tinnitus group, the tinnitus group exhibited a significant decrease in VGLUT1 at 1 week and a significant increase in VGLUT2 at 3 weeks post-exposure. In addition, rats in the tinnitus group exhibited significant increases in GAP43 and GDF10 protein expression levels in their DC N at 3 weeks following noise exposure. Results from the present study provided further evidence that changes in the neural input distribution to the DC N may cause tinnitus and that axonal sprouting underlies these alterations. © 2019 Spandidos Publications. All rights reserved.

키워드

Axonal sproutingDorsal cochlear nucleusGap prepulse inhibition of the acoustic startle reflexHearing lossTinnitusACOUSTIC TRAUMANMDA RECEPTORSHEARING-LOSSTINNITUSPLASTICITYGROWTHSYNAPTOPHYSINPROJECTIONSPREVALENCETRANSPORTERS
제목
Axonal sprouting in the dorsal cochlear nucleus affects gap-prepulse inhibition following noise exposure
저자
Han, K.-H.Mun, S.-K.Sohn, S.Piao, X.-Y.Park, I.Chang, M.
DOI
10.3892/ijmm.2019.4316
발행일
2019-10
유형
Article
저널명
International Journal of Molecular Medicine
44
4
페이지
1473 ~ 1483

파일 다운로드