Intraneuronal aluminum potentiates iron-induced oxidative stress in cultured rat hippocampal neurons.
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Abstract | :
Aluminum can facilitate Fe-mediated oxidative injury, which may contribute to Al neurotoxicity. It has been reported that Al potentiates Fe-induced oxidative stress in cultured granule cells, suggesting a mechanism for Al facilitation of Fe-mediated oxidative injury. However, the relationship of intracellular Al concentration to Fe-induced oxidative stress has not been reported. In the present study, neuronal oxidative stress and survival were investigated. Embryo rat hippocampal neuron cultures were treated with Al2(SO4)3 and/or FeSO4. An ionophore, A23187, was utilized to facilitate cellular Al uptake. Intraneuronal Al concentration was ascertained by laser microprobe mass spectrometry (LMMS). Neuronal oxidative stress was measured by confocal laser scanning microscopy, using 2,7-dichlorofluorescin diacetate (DCFH-DA) as a probe. The study showed that neuronal Al uptake was facilitated by the ionophore and that an increase of intraneuronal Al concentration potentiated Fe-induced oxidative stress and neuronal death. The results indicate that Al potentiation of Fe-induced oxidative stress might contribute to Al facilitation of oxidative injury, and thus to Al neurotoxicity. |
Year of Publication | :
1996
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Journal | :
Brain research
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Volume | :
743
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Issue | :
1-2
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Number of Pages | :
271-7
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Date Published | :
1996
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ISSN Number | :
0006-8993
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URL | :
https://linkinghub.elsevier.com/retrieve/pii/S0006-8993(96)01055-4
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DOI | :
10.1016/s0006-8993(96)01055-4
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Short Title | :
Brain Res
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