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Genetic Ablation of Pannexin1 Protects Retinal Neurons from Ischemic Injury

Overview of attention for article published in PLOS ONE, February 2012
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Title
Genetic Ablation of Pannexin1 Protects Retinal Neurons from Ischemic Injury
Published in
PLOS ONE, February 2012
DOI 10.1371/journal.pone.0031991
Pubmed ID
Authors

Galina Dvoriantchikova, Dmitry Ivanov, David Barakat, Alexander Grinberg, Rong Wen, Vladlen Z. Slepak, Valery I. Shestopalov

Abstract

Pannexin1 (Panx1) forms large nonselective membrane channel that is implicated in paracrine and inflammatory signaling. In vitro experiments suggested that Panx1 could play a key role in ischemic death of hippocampal neurons. Since retinal ganglion cells (RGCs) express high levels of Panx1 and are susceptible to ischemic induced injury, we hypothesized that Panx1 contributes to rapid and selective loss of these neurons in ischemia. To test this hypothesis, we induced experimental retinal ischemia followed by reperfusion in live animals with the Panx1 channel genetically ablated either in the entire mouse (Panx1 KO), or only in neurons using the conditional knockout (Panx1 CKO) technology. Here we report that two distinct neurotoxic processes are induced in RGCs by ischemia in the wild type mice but are inactivated in Panx1KO and Panx1 CKO animals. First, the post-ischemic permeation of RGC plasma membranes is suppressed, as assessed by dye transfer and calcium imaging assays ex vivo and in vitro. Second, the inflammasome-mediated activation of caspase-1 and the production of interleukin-1β in the Panx1 KO retinas are inhibited. Our findings indicate that post-ischemic neurotoxicity in the retina is mediated by previously uncharacterized pathways, which involve neuronal Panx1 and are intrinsic to RGCs. Thus, our work presents the in vivo evidence for neurotoxicity elicited by neuronal Panx1, and identifies this channel as a new therapeutic target in ischemic pathologies.

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Geographical breakdown

Country Count As %
Canada 2 2%
Spain 1 1%
United States 1 1%
Chile 1 1%
Unknown 76 94%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 12 15%
Student > Master 12 15%
Researcher 11 14%
Student > Bachelor 11 14%
Professor > Associate Professor 8 10%
Other 14 17%
Unknown 13 16%
Readers by discipline Count As %
Agricultural and Biological Sciences 27 33%
Neuroscience 12 15%
Medicine and Dentistry 11 14%
Biochemistry, Genetics and Molecular Biology 9 11%
Immunology and Microbiology 1 1%
Other 3 4%
Unknown 18 22%