Differentiation of reactive-like astrocytes cultured on nanofibrillar and comparative culture surfaces

To investigate the directive importance of nanophysical properties on the morphological and protein expression responses of dibutyryladenosine cyclic monophosphate (dBcAMP)-treated cerebral cortical astrocytes . Elasticity and work of adhesion characterizations of culture surfaces were performed usi...

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Veröffentlicht in:Nanomedicine (London, England) England), 2015-03, Vol.10 (4), p.529-545
Hauptverfasser: Tiryaki, Volkan Müjdat, Ayres, Virginia M, Ahmed, Ijaz, Shreiber, David I
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Sprache:eng
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Zusammenfassung:To investigate the directive importance of nanophysical properties on the morphological and protein expression responses of dibutyryladenosine cyclic monophosphate (dBcAMP)-treated cerebral cortical astrocytes . Elasticity and work of adhesion characterizations of culture surfaces were performed using atomic force microscopy and combined with previous surface roughness and polarity results. The morphological and biochemical differentiation of dBcAMP-treated astrocytes cultured on promising nanofibrillar scaffolds and comparative culture surfaces were investigated by immunocytochemistry, colocalization, super resolution microscopy and atomic force microscopy. The dBcAMP-treated astrocyte responses were further compared with untreated astrocyte responses. Nanofibrillar scaffold properties were shown to reduce immunoreactivity responses while poly- -lysine-functionalized Aclar (Ted Pella Inc., CA, USA) properties were shown to induce responses reminiscent of glial scar formation. The comparison study indicated that directive cues may differ in wound-healing versus quiescent situations.
ISSN:1743-5889
1748-6963
DOI:10.2217/nnm.14.33