Literature DB >> 21935732

Differential effect of nimodipine in attenuating iron-induced toxicity in brain- and blood-brain barrier-associated cell types.

J A Lockman1, W J Geldenhuys, K A Bohn, S F Desilva, D D Allen, C J Van der Schyf.   

Abstract

Metal homeostasis is increasingly being evaluated as a therapeutic target in stroke and neurodegenerative diseases. Metal dysregulation has been shown to lead to protein aggregation, plaque formation and neuronal death. In 2007, we first reported that voltage-gated calcium channels act as a facile conduit for the entry of free ferrous (Fe(2+)) ions into neurons. Herein, we evaluate differential iron toxicity to central nervous system cells and assess the ability of the typical L-type voltage-gated calcium channel blocker nimodipine to attenuate iron-induced toxicity. The data demonstrate that iron sulfate induces a dose-dependent decrease in cell viability in rat brain endothelial cells (RBE4; LC(50) = 150 μM), neuronal cells (Neuro-2α neuroblastoma; LC(50) = 400 μM), and in astrocytes (DI TNC1; LC(50) = 1.1 mM). Pre-treatment with nimodipine prior to iron sulfate exposure provided a significant (P < 0.05) increase in viable cell numbers for RBE4 (2.5-fold), Neuro2-α (~2-fold), and nearly abolished toxicity in primary neurons. Astrocytes were highly resistant to iron toxicity compared to the other cell types tested and nimodipine had no (P > 0.05) protective effect in these cells. The data demonstrate variable susceptibility to iron overload conditions in different cell types of the brain and suggest that typical L-type voltage-gated calcium channel blockers (here represented by nimodipine), may serve as protective agents in conditions involving iron overload, particularly in cell types highly susceptible to iron toxicity.

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Year:  2011        PMID: 21935732     DOI: 10.1007/s11064-011-0591-2

Source DB:  PubMed          Journal:  Neurochem Res        ISSN: 0364-3190            Impact factor:   3.996


  58 in total

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  7 in total

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3.  Nifedipine prevents iron accumulation and reverses iron-overload-induced dopamine neuron degeneration in the substantia nigra of rats.

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Journal:  Neurotox Res       Date:  2012-01-19       Impact factor: 3.911

4.  Inhibition of Toll-Like Receptor-4 (TLR-4) Improves Neurobehavioral Outcomes After Acute Ischemic Stroke in Diabetic Rats: Possible Role of Vascular Endothelial TLR-4.

Authors:  Yasir Abdul; Mohammed Abdelsaid; Weiguo Li; R Clinton Webb; Jennifer C Sullivan; Guangkuo Dong; Adviye Ergul
Journal:  Mol Neurobiol       Date:  2018-06-16       Impact factor: 5.590

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Journal:  Front Pharmacol       Date:  2014-04-21       Impact factor: 5.810

7.  Protective effects of nimodipine and lithium against aluminum-induced cell death and oxidative stress in PC12 cells.

Authors:  Jamileh Saberzadeh; Mehdi Omrani; Mohammad Ali Takhshid
Journal:  Iran J Basic Med Sci       Date:  2016-11       Impact factor: 2.699

  7 in total

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