The Disintegrin Kistrin Inhibits Neurite Extension from Spiral Ganglion Explants Cultured on Laminin

The influence of laminin-1 (LN) and tenascin-C (TN), extracellular matrix molecules expressed spatially and temporally along the neural growth route from spiral ganglion (SG) neurons to the cochlear sensory cells, was evaluated in cultured SG explants from postnatal day 4 rats. Increasing concentrat...

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Veröffentlicht in:Audiology & neurotology 2001-03, Vol.6 (2), p.57-65
Hauptverfasser: Aletsee, Christoph, Mullen, Lina, Kim, David, Pak, Kwang, Brors, Dominik, Dazert, Stefan, Ryan, Allen F.
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Sprache:eng
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Zusammenfassung:The influence of laminin-1 (LN) and tenascin-C (TN), extracellular matrix molecules expressed spatially and temporally along the neural growth route from spiral ganglion (SG) neurons to the cochlear sensory cells, was evaluated in cultured SG explants from postnatal day 4 rats. Increasing concentrations of LN resulted in a strong, dose-dependent increase in the length of neurites and in a higher number of neural processes, while varying TN concentrations had relatively minor effects on both parameters. The results suggest differential receptor activation by LN and TN. When explants grown on LN were treated with Kistrin, an inhibitor of the αvβ3 integrin, the LN-induced increase in neurite length was reduced in a dose-dependent manner. However, the number of extending neurites was not affected, indicating that different receptors mediate this response, perhaps by increasing neuronal survival.
ISSN:1420-3030
1421-9700
DOI:10.1159/000046811