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Metab Brain Dis ; 30(3): 829-37, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25796222

ABSTRACT

Near infrared radiation (NIR) has been shown to be neuroprotective against neurological diseases including stroke and brain trauma, but the underlying mechanisms remain poorly understood. In the current study we aimed to investigate the hypothesis that NIR may protect neurons by attenuating oxygen-glucose deprivation (OGD)-induced nitric oxide (NO) production and modulating cell survival/death signaling. Primary mouse cortical neurons were subjected to 4 h OGD and NIR was applied at 2 h reoxygenation. OGD significantly increased NO level in primary neurons compared to normal control, which was significantly ameliorated by NIR at 5 and 30 min post-NIR. Neither OGD nor NIR significantly changed neuronal nitric oxide synthase (nNOS) mRNA or total protein levels compared to control groups. However, OGD significantly increased nNOS activity compared to normal control, and this effect was significantly diminished by NIR. Moreover, NIR significantly ameliorated the neuronal death induced by S-Nitroso-N-acetyl-DL-penicillamine (SNAP), a NO donor. Finally, NIR significantly rescued OGD-induced suppression of p-Akt and Bcl-2 expression, and attenuated OGD-induced upregulation of Bax, BAD and caspase-3 activation. These results suggest NIR may protect against OGD at least partially through reducing NO production by down-regulating nNOS activity, and modulating cell survival/death signaling.


Subject(s)
Down-Regulation/radiation effects , Glucose/deficiency , Glucose/radiation effects , Infrared Rays , Nitric Oxide Synthase Type I/metabolism , Nitric Oxide Synthase Type I/radiation effects , Animals , Cell Hypoxia/physiology , Cell Hypoxia/radiation effects , Cells, Cultured , Cerebral Cortex/metabolism , Cerebral Cortex/radiation effects , Female , Mice , Mice, Inbred C57BL , Neurons/metabolism , Neurons/radiation effects , Oxidation-Reduction/radiation effects , Oxygen/metabolism , Oxygen/radiation effects , Pregnancy
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