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Publication : Disruption in connexin-based communication is associated with intracellular Ca²⁺ signal alterations in astrocytes from Niemann-Pick type C mice.

First Author  Sáez PJ Year  2013
Journal  PLoS One Volume  8
Issue  8 Pages  e71361
PubMed ID  23977027 Mgi Jnum  J:206348
Mgi Id  MGI:5550050 Doi  10.1371/journal.pone.0071361
Citation  Saez PJ, et al. (2013) Disruption in connexin-based communication is associated with intracellular Ca(2)(+) signal alterations in astrocytes from Niemann-Pick type C mice. PLoS One 8(8):e71361
abstractText  Reduced astrocytic gap junctional communication and enhanced hemichannel activity were recently shown to increase astroglial and neuronal vulnerability to neuroinflammation. Moreover, increasing evidence suggests that neuroinflammation plays a pivotal role in the development of Niemann-Pick type C (NPC) disease, an autosomal lethal neurodegenerative disorder that is mainly caused by mutations in the NPC1 gene. Therefore, we investigated whether the lack of NPC1 expression in murine astrocytes affects the functional state of gap junction channels and hemichannels. Cultured cortical astrocytes of NPC1 knock-out mice (Npc1(-)/(-)) showed reduced intercellular communication via gap junctions and increased hemichannel activity. Similarly, astrocytes of newborn Npc1(-)/(-) hippocampal slices presented high hemichannel activity, which was completely abrogated by connexin 43 hemichannel blockers and was resistant to inhibitors of pannexin 1 hemichannels. Npc1(-)/(-) astrocytes also showed more intracellular Ca(2)(+) signal oscillations mediated by functional connexin 43 hemichannels and P2Y(1) receptors. Therefore, Npc1(-)/(-) astrocytes present features of connexin based channels compatible with those of reactive astrocytes and hemichannels might be a novel therapeutic target to reduce neuroinflammation in NPC disease.
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