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The pre- and post-somatic segments of the human type I spiral ganglion neurons – Structural and functional considerations related to cochlear implantation

Authors :
Fredrik Edin
Francesca Atturo
Hubert Löwenheim
Anneliese Schrott-Fischer
Wei Liu
Gunde Rieger
Rudolf Glueckert
Pascal Senn
Michael J.F. Blumer
Helge Rask-Andersen
Source :
Neuroscience, Vol. 284 (2015) pp. 470-482, Neuroscience, Liu, W; Edin, F; Atturo, F; Rieger, G; Löwenheim, H; Senn, Pascal; Blumer, M; Schrott-Fischer, A; Rask-Andersen, H; Glueckert, R (2015). The pre-and post-somatic segments of the human type I spiral ganglion neurons--structural and functional considerations related to cochlear implantation. Neuroscience, 284, pp. 470-482. Elsevier 10.1016/j.neuroscience.2014.09.059
Publication Year :
2015
Publisher :
Elsevier BV, 2015.

Abstract

Highlights • Pre- and post-somatic segments of type I spiral ganglion neurons (SGNs) are unmyelinated in man. • Following hair cell loss and retrograde nerve degeneration SGNs survive as “mono-polar” cells in human deafness. • Non-myelinated Schwann cells may consolidate the neural cell bodies and protect SGNs from further degeneration. • Human SGNs can persist as electrically excitable mono-polar cells even after long-time deafness. • Robust survival of human SGNs is a prerequisite for cochlear implant function.<br />Human auditory nerve afferents consist of two separate systems; one is represented by the large type I cells innervating the inner hair cells and the other one by the small type II cells innervating the outer hair cells. Type I spiral ganglion neurons (SGNs) constitute 96% of the afferent nerve population and, in contrast to other mammals, their soma and pre- and post-somatic segments are unmyelinated. Type II nerve soma and fibers are unmyelinated. Histopathology and clinical experience imply that human SGNs can persist electrically excitable without dendrites, thus lacking connection to the organ of Corti. The biological background to this phenomenon remains elusive. We analyzed the pre- and post-somatic segments of the type I human SGNs using immunohistochemistry and transmission electron microscopy (TEM) in normal and pathological conditions. These segments were found surrounded by non-myelinated Schwann cells (NMSCs) showing strong intracellular expression of laminin-β2/collagen IV. These cells also bordered the perikaryal entry zone and disclosed surface rugosities outlined by a folded basement membrane (BM) expressing laminin-β2 and collagen IV. It is presumed that human large SGNs are demarcated by three cell categories: (a) myelinated Schwann cells, (b) NMSCs and (c) satellite glial cells (SGCs). Their BMs express laminin-β2/collagen IV and reaches the BM of the sensory epithelium at the habenula perforata. We speculate that the NMSCs protect SGNs from further degeneration following dendrite loss. It may give further explanation why SGNs can persist as electrically excitable monopolar cells even after long-time deafness, a blessing for the deaf treated with cochlear implantation.

Subjects

Subjects :
SG, spiral ganglion
Male
NIHL, noise-induced hearing loss
MBP, myelin basic protein
LM, light microscopy
Satellite Cells, Perineuronal
Basement Membrane
Imaging
0302 clinical medicine
Laminin
collagen IV
Scanning
Neurons
0303 health sciences
education.field_of_study
Microscopy
Microscopy, Confocal
biology
AIS, axonal initial segment
General Neuroscience
Middle Aged
Cx43, connexin 43
Cochlear Implantation
Immunohistochemistry
ECM, extracellular matrix
Satellite Cells
SGN, spiral ganglion neuron
medicine.anatomical_structure
Habenula
Confocal
immunohistochemistry
Female
Perineuronal/cytology/metabolism/pathology
Collagen
SGC, satellite glial cell
Spiral Ganglion
IHC, immunohistochemistry
Adult
Neuroscience(all)
Population
PBS, phosphate-buffered saline
Spiral Ganglion/cytology/metabolism/pathology
Dendrite
610 Medicine & health
Electron
Article
03 medical and health sciences
Imaging, Three-Dimensional
Microscopy, Electron, Transmission
Collagen/metabolism
medicine
otorhinolaryngologic diseases
Humans
Transmission
SEM, scanning electron microscopy
EDTA, ethylene-diamine-tetra-acetic acid
type II ganglion cells, small afferent neurons innervating outer hair cells
Nav1.6, Na+-channels
education
TEM, transmission electron microscopy
Spiral ganglion
030304 developmental biology
Basement membrane
NMSC, non-myelinated Schwann cell
Neurons/cytology/metabolism/pathology
spiral ganglion neurons
CI, cochlear implants
Laminin/metabolism
BM, basement membrane
Organ of Corti
Basement Membrane/cytology/metabolism/pathology
non-myelinated Schwann cells
Three-Dimensional
biology.protein
Microscopy, Electron, Scanning
laminin-β2
Soma
Schwann Cells
human cochlea
sense organs
Neuroscience
type I ganglion cells, large afferent neurons innervating inner hair cell
Schwann Cells/cytology/metabolism/pathology
030217 neurology & neurosurgery

Details

ISSN :
03064522
Volume :
284
Database :
OpenAIRE
Journal :
Neuroscience
Accession number :
edsair.doi.dedup.....9fb44a53adc3e428c1265ba026d090f2
Full Text :
https://doi.org/10.1016/j.neuroscience.2014.09.059