Guided growth of auditory neurons: Bioactive particles towards gapless neural - electrode interface.

Abstract:

:Cochlear implant (CI) is a successful device to restore hearing. Despite continuous development, frequency discrimination is poor in CI users due to an anatomical gap between the auditory neurons and CI electrode causing current spread and unspecific neural stimulation. One strategy to close this anatomical gap is guiding the growth of neuron dendrites closer to CI electrodes through targeted slow release of neurotrophins. Biodegradable calcium phosphate hollow nanospheres (CPHSs) were produced and their capacity for uptake and release of neurotrophins investigated using 125I-conjugated glia cell line-derived neurotrophic factor (GDNF). The CPHSs were coated onto CI electrodes and loaded with neurotrophins. Axon guidance effect of slow-released neurotrophins from the CPHSs was studied in an in vitro 3D culture model. CPHS coating bound and released GDNF with an association rate constant 6.3 × 103 M-1s-1 and dissociation rate 2.6 × 10-5 s-1, respectively. Neurites from human vestibulocochlear ganglion explants found and established physical contact with the GDNF-loaded CPHS coating on the CI electrodes placed 0.7 mm away. Our results suggest that neurotrophin delivery through CPHS coating is a plausible way to close the anatomical gap between auditory neurons and electrodes. By overcoming this gap, selective neural activation and the fine hearing for CI users become possible.

journal_name

Biomaterials

journal_title

Biomaterials

authors

Li H,Edin F,Hayashi H,Gudjonsson O,Danckwardt-Lillieström N,Engqvist H,Rask-Andersen H,Xia W

doi

10.1016/j.biomaterials.2016.12.020

subject

Has Abstract

pub_date

2017-04-01 00:00:00

pages

1-9

eissn

0142-9612

issn

1878-5905

pii

S0142-9612(16)30728-1

journal_volume

122

pub_type

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