Literature DB >> 19523929

Immediate neuronal preconditioning by NS1619.

Tamás Gáspár1, Ferenc Domoki, Laura Lenti, Prasad V G Katakam, James A Snipes, Ferenc Bari, David W Busija.   

Abstract

The objectives of our present experiments were to determine whether the BK(Ca) channel agonist NS1619 is able to induce immediate preconditioning in cultured rat cortical neurons and to elucidate the role of BK(Ca) channels in the initiation of immediate preconditioning. NS1619 depolarized mitochondria and increased reactive oxygen species (ROS) generation, but neither of these effects was inhibited by BK(Ca) channel antagonists. NS1619 also activated the extracellular signal-regulated kinase signaling pathways. One-hour treatment with NS1619 induced immediate protection against glutamate excitotoxicity (viability 24 h after glutamate exposure: control, 58.45+/-0.95%; NS1619 50 microM, 78.99+/-0.90%; NS1619 100 microM, 86.89+/-1.20%; NS1619 150 microM, 93.23+/-1.23%; mean+/-SEM; p<0.05 vs. control; n=16-32). Eliminating ROS during the preconditioning phase effectively blocked the development of cytoprotection. In contrast, the BK(Ca) channel blockers iberiotoxin and paxilline, the phosphoinositide 3-kinase inhibitor wortmannin, the protein kinase C blocker chelerythrine, and the mitogen activated protein kinase antagonist PD98059 were unable to antagonize the immediate neuroprotective effect. Finally, preconditioning with NS1619 reduced the calcium load and ROS surge upon glutamate exposure and increased superoxide dismutase activity. Our results indicate that NS1619 is an effective inducer of immediate neuronal preconditioning, but the neuroprotective effect is independent of the activation of BK(Ca) channels.

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Year:  2009        PMID: 19523929      PMCID: PMC2744349          DOI: 10.1016/j.brainres.2009.06.008

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  48 in total

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2.  Transient glucose and amino acid deprivation induces delayed preconditioning in cultured rat cortical neurons.

Authors:  Tamás Gáspár; Béla Kis; James A Snipes; Gábor Lenzsér; Keita Mayanagi; Ferenc Bari; David W Busija
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Review 1.  The Role of NMDA Receptors in the Development of Brain Resistance through Pre- and Postconditioning.

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2.  Mitochondrial respiratory chain and creatine kinase activities following trauma brain injury in brain of mice preconditioned with N-methyl-D-aspartate.

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Review 3.  Mitochondrial mechanisms in cerebral vascular control: shared signaling pathways with preconditioning.

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4.  Preconditioning with the BKCa channel activator NS-1619 prevents ischemia-reperfusion-induced inflammation and mucosal barrier dysfunction: roles for ROS and heme oxygenase-1.

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Review 5.  Mitochondria: the missing link between preconditioning and neuroprotection.

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7.  Measuring Respiration in Isolated Murine Brain Mitochondria: Implications for Mechanistic Stroke Studies.

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8.  Mitochondrial preconditioning: a potential neuroprotective strategy.

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Review 9.  Oxidative Stress and Maxi Calcium-Activated Potassium (BK) Channels.

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Review 10.  BK channel activators and their therapeutic perspectives.

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