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A Nanoscale Interface Promoting Molecular and Functional Differentiation of Neural Cells

Articolo
Data di Pubblicazione:
2016
Abstract:
Potassium channels and aquaporins expressed by astrocytes are key players in the maintenance of cerebral homeostasis and in brain pathophysiologies. One major challenge in the study of astrocyte membrane channels in vitro, is that their expression pattern does not resemble the one observed in vivo. Nanostructured interfaces represent a significant resource to control the cellular behaviour and functionalities at micro and nanoscale as well as to generate novel and more reliable models to study astrocytes in vitro. However, the potential of nanotechnologies in the manipulation of astrocytes ion channels and aquaporins has never been previously reported. Hydrotalcite-like compounds (HTlc) are layered materials with increasing potential as biocompatible nanoscale interface. Here, we evaluate the effect of the interaction of HTlc nanoparticles films with primary rat neocortical astrocytes. We show that HTlc films are biocompatible and do not promote gliotic reaction, while favouring astrocytes differentiation by induction of F-actin fibre alignment and vinculin polarization. Western Blot, Immunofluorescence and patch-clamp revealed that differentiation was accompanied by molecular and functional up-regulation of both inward rectifying potassium channel Kir 4.1 and aquaporin 4, AQP4. The reported results pave the way to engineering novel in vitro models to study astrocytes in a in vivo like condition.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
neural cells
Elenco autori:
Bonetti, Simone; Formaggio, Francesco; Saracino, Emanuela; Barbalinardo, Marianna; Pistone, Assunta; Posati, Tamara; Muccini, Michele; Valle, Francesco; Benfenati, Valentina; Zamboni, Roberto
Autori di Ateneo:
BARBALINARDO MARIANNA
BENFENATI VALENTINA
BONETTI SIMONE
MUCCINI MICHELE
POSATI TAMARA
SARACINO EMANUELA
VALLE FRANCESCO
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/318716
Pubblicato in:
SCIENTIFIC REPORTS
Journal
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URL

https://www.nature.com/articles/srep31226
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