Literature DB >> 18283156

Promotion of neurite outgrowth and axon guidance in spiral ganglion cells by netrin-1.

Kenneth H Lee1, Mark E Warchol.   

Abstract

OBJECTIVE: To identify the expression of netrin-1, a diffusible chemoattractive molecule, and its receptor, deleted in colorectal carcinoma (DCC), in the developmentally mature inner ear, and to determine its effects on axon length and guidance in cultured auditory neurons.
DESIGN: Messenger RNA (mRNA) and protein expression of netrin-1 and DCC were identified in the organ of Corti and spiral ganglion cells using reverse transcription-polymerase chain reaction (RT-PCR) and fluorescence immunohistochemical analysis. In vitro experiments examined the effects of exogenous netrin-1 on spiral ganglion cell axon length. Auditory neurons were cocultured with a cell line secreting netrin-1 to determine the effect on direction of axon extension.
SUBJECTS: Young C57 mice and posthatched white leghorn chicks.
RESULTS: Netrin-1 and DCC mRNA expression were found in the mouse organ of Corti and spiral ganglion cells by RT-PCR. Application of exogenous netrin-1 led to a dosage-dependent increase in neurite length in cultured spiral ganglion cells. Chick acoustic ganglion cells cocultured with netrin-1-secreting cells demonstrated statistically significant preferential extension toward the source of netrin-1 (P = .04).
CONCLUSIONS: Netrin-1 and DCC are expressed in the organ of Corti and spiral ganglion cells of developmentally mature mice. Exogenous netrin-1 promotes dosage-dependent neurite growth in vitro. Mature auditory neurons preferentially direct neurite extension toward netrin-1 released in culture. These findings may lead to the development of strategies to optimize the interface between electrode arrays and spiral ganglion cells, resulting in improved cochlear implant performance.

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Year:  2008        PMID: 18283156     DOI: 10.1001/archoto.2007.6

Source DB:  PubMed          Journal:  Arch Otolaryngol Head Neck Surg        ISSN: 0886-4470


  11 in total

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Review 2.  Connecting the ear to the brain: Molecular mechanisms of auditory circuit assembly.

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Review 5.  Prospects for replacement of auditory neurons by stem cells.

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Review 6.  Making connections in the inner ear: recent insights into the development of spiral ganglion neurons and their connectivity with sensory hair cells.

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Review 8.  Resolution of Cochlear Inflammation: Novel Target for Preventing or Ameliorating Drug-, Noise- and Age-related Hearing Loss.

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9.  Alginate-encapsulated brain-derived neurotrophic factor-overexpressing mesenchymal stem cells are a promising drug delivery system for protection of auditory neurons.

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10.  Dcc Mediates Functional Assembly of Peripheral Auditory Circuits.

Authors:  Young J Kim; Sheng-zhi Wang; Stephen Tymanskyj; Le Ma; Huizhong W Tao; Li I Zhang
Journal:  Sci Rep       Date:  2016-04-04       Impact factor: 4.379

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