Literature DB >> 9651195

Neuroprotective actions of dipyridamole on cultured CNS neurons.

S E Farinelli1, L A Greene, W J Friedman.   

Abstract

We report that dipyridamole is neuroprotective for a variety of rat embryonic CNS neurons cultured in serum-free basal medium lacking trophic factors or other additives. We also describe the mechanism underlying this action. Neurons died rapidly in basal medium but were rescued in large measure by 10 microM dipyridamole. The protective action of dipyridamole seems to be attributable to its antioxidant property. Vitamin E and N-acetylcysteine provided comparable neuroprotection in basal medium, whereas an array of compounds that mimic other actions of dipyridamole (inhibition of phosphodiesterases, blockade of nucleoside and chloride transport, interference with the multidrug resistance protein, and enhancement of prostacyclin synthesis) failed to promote survival. Thus, a major cause of neuronal death in this system seems to be oxidative stress that is relieved by dipyridamole. Iron plays a significant role in generation of such stress, as indicated by the observations that addition of apotransferrin or iron chelators to basal medium or use of iron-free medium also afforded protection. Although oxidative stress was a major determinant of neuronal death, it was not the only factor. Dipyridamole or other antioxidant measures did not provide sustained neuroprotection. However, provision of insulin, which was not protective alone in basal medium, along with dipyridamole significantly enhanced long-term neuronal survival. Hence, optimal protection requires both trophic support and relief from oxidative stress. These findings lend credence to the potential use of dipyridamole or its derivatives in prevention and/or treatment of CNS injuries and degenerative disorders in which oxidative stress is a significant component.

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Year:  1998        PMID: 9651195      PMCID: PMC6793500     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  57 in total

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Journal:  Free Radic Biol Med       Date:  1995-02       Impact factor: 7.376

10.  Neuroprotective action of cycloheximide involves induction of bcl-2 and antioxidant pathways.

Authors:  K Furukawa; S Estus; W Fu; R J Mark; M P Mattson
Journal:  J Cell Biol       Date:  1997-03-10       Impact factor: 10.539

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  27 in total

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Authors:  C M Troy; S A Rabacchi; W J Friedman; T F Frappier; K Brown; M L Shelanski
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4.  ProNGF induces PTEN via p75NTR to suppress Trk-mediated survival signaling in brain neurons.

Authors:  Wenyu Song; Marta Volosin; Andrea B Cragnolini; Barbara L Hempstead; Wilma J Friedman
Journal:  J Neurosci       Date:  2010-11-17       Impact factor: 6.167

5.  Interleukin-1β enhances neuronal vulnerability to proNGF-mediated apoptosis by increasing surface expression of p75(NTR) and sortillin.

Authors:  S Choi; W J Friedman
Journal:  Neuroscience       Date:  2013-11-06       Impact factor: 3.590

6.  Induction of proneurotrophins and activation of p75NTR-mediated apoptosis via neurotrophin receptor-interacting factor in hippocampal neurons after seizures.

Authors:  Marta Volosin; Christy Trotter; Andrea Cragnolini; Rajappa S Kenchappa; Matthew Light; Barbara L Hempstead; Bruce D Carter; Wilma J Friedman
Journal:  J Neurosci       Date:  2008-09-24       Impact factor: 6.167

7.  Nerve growth factor attenuates proliferation of astrocytes via the p75 neurotrophin receptor.

Authors:  Andrea B Cragnolini; Yangyang Huang; Pradeepa Gokina; Wilma J Friedman
Journal:  Glia       Date:  2009-10       Impact factor: 7.452

8.  Nicotine attenuates beta-amyloid peptide-induced neurotoxicity, free radical and calcium accumulation in hippocampal neuronal cultures.

Authors:  Qiang Liu; Baolu Zhao
Journal:  Br J Pharmacol       Date:  2004-02-02       Impact factor: 8.739

9.  Neuroprotective effect of STAZN, a novel azulenyl nitrone antioxidant, in focal cerebral ischemia in rats: dose-response and therapeutic window.

Authors:  James J Ley; Ludmila Belayev; Isabel Saul; David A Becker; Myron D Ginsberg
Journal:  Brain Res       Date:  2007-05-26       Impact factor: 3.252

10.  Abberant alpha-synuclein confers toxicity to neurons in part through inhibition of chaperone-mediated autophagy.

Authors:  Maria Xilouri; Tereza Vogiatzi; Kostas Vekrellis; David Park; Leonidas Stefanis
Journal:  PLoS One       Date:  2009-05-13       Impact factor: 3.240

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