4.5 Article

Polysulfide protects midbrain dopaminergic neurons from MPP+-induced degeneration via enhancement of glutathione biosynthesis

Journal

JOURNAL OF PHARMACOLOGICAL SCIENCES
Volume 137, Issue 1, Pages 47-54

Publisher

JAPANESE PHARMACOLOGICAL SOC
DOI: 10.1016/j.jphs.2018.04.004

Keywords

Parkinson disease; Dopamine neuron; Oxidative stress; Neuroprotection; Reactive sulfur species

Funding

  1. Smoking Research Foundation
  2. JSPS KAKENHI, MEXT, Japan [16H04673, 16K15204]
  3. MEXT, Japan
  4. Grants-in-Aid for Scientific Research [16H04673, 16K15204] Funding Source: KAKEN

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Polysulfides are endogenous sulfur-containing molecular species that may regulate various cellular functions. Here we examined the effect of polysulfides exogenously applied to rat midbrain slice cultures, to address their potential neuroprotective actions. Na2S3 at concentrations of 10 mu M or higher prevented 1-methyl-4-phenylpyridinium (MPP+)-induced loss of dopaminergic neurons. Na2S4 at 10 mu M also protected dopaminergic neurons from MPP+ cytotoxicity, whereas Na2S and Na2S2 at the same concentration had no significant effect. We also found that Na2S3 (10 mu M) prevented MPP+-induced increase in intracellular reactive oxygen species as detected by 2',7'-dichlorofluorescein fluorescence. In addition, the protective effect of Na2S3 was abolished by L-buthionine sulfoximine, an inhibitor of glutathione synthesis. In cellular models of neurons (SH-SY5Y cells) and glial cells (C6 cells), Na2S3 (30 and 100 mu M) increased expression of mRNAs encoding the subunits of glutamate cysteine ligase, the rate-limiting enzyme for glutathione biosynthesis. Consistently, the cellular content of total glutathione was increased by Na2S3, and the effect was more prominent in SH-SY5Y cells than in C6 cells. These results suggest that polysulfides are efficient neuroprotectants superior to monosulfur species such as H2S and HS, and that the neuroprotective effect of polysulfides is mediated by upregulation of glutathione biosynthesis. (C) 2018 The Authors. Production and hosting by Elsevier B.V. on behalf of Japanese Pharmacological Society.

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