4.4 Article

Phenidone protects the nigral dopaminergic neurons from LPS-induced neurotoxicity

Journal

NEUROSCIENCE LETTERS
Volume 445, Issue 1, Pages 1-6

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.neulet.2008.08.053

Keywords

Lipopolysaccharide; Cyclooxygenase; Lipooxygenase; Parkinson's disease

Categories

Funding

  1. Ministry of Science and Technology, Republic of Korea [M103KV010013-081K2201-01310]
  2. BK 21

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Anti-inflammatory drugs such as ibuprofen appear to prevent the development of Parkinson's disease (PD); however, long-term use has undesirable side-effects. A new strategy for anti-inflammatory drug therapy is using a dual inhibitor of COX and lipooxygenase (LOX). Here, we compared the dopaminergic neuroprotective property of phenidone (a dual COX and LOX inhibitor) with COX or LOX inhibitors including SC-560 (a COX-1 inhibitor), aspirin (a COX-1/2 inhibitor), meloxicam (a preferential COX-2 inhibitor), caffeic acid (a 5-LOX inhibitor), and esculetin (a 5, 12-LOX inhibitor) in our lipopolysaccharide (LPS)-induced PD animal model. Our results show that COX-2 and 5-LOX play a major role in LPS-induced dopaminergic neurotoxicity, as meloxicam and phenidone attenuated LPS-induced oxidative stress and meloxicam, phenidone, and caffeic acid attenuated dopaminergic neurodegeneration, while SC-560, aspirin, and esculetin did not. In addition, phenidone was superior in attenuating LPS-induced dopaminergic neurodegeneration and microglia activation, probably as a result of dual inhibition of COX-2 and LOX. Therefore, dual inhibition of COX and LOX with phenidone represents a promising new candidate for anti-inflammatory drug therapy, and may provide a novel therapeutic approach for inflammation-related neurodegenerative diseases including PD. (C) 2008 Elsevier Ireland Ltd. All rights reserved.

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