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Subchronic polychlorinated biphenyl (aroclor 1254) exposure produces oxidative damage and neuronal death of ventral midbrain dopaminergic systems

  • Donna W. Lee
  • , Sarah A. Notter
  • , Mona Thiruchelvam
  • , Daniel P. Dever
  • , Richard Fitzpatrick
  • , Paul J. Kostyniak
  • , Deborah A. Cory-slechta
  • , Lisa A. Opanashuk
  • University of Rochester
  • Rutgers - The State University of New Jersey, Newark
  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

54 Scopus citations

Abstract

Recent epidemiologic studies have demonstrated a link between organochlorine and pesticide exposure to an enhanced risk for neurodegenerative disorders such as Parkinson's disease (PD). A common biological phenomenon underlying cell injury associated with both polychlorinated biphenyl (PCB) exposure and dopaminergic neurodegeneration during aging is oxidative stress (OS). In this study, we tested the hypothesis that oral PCB exposure, via food ingestion, impairs dopamine systems in the adult murine brain. We determined whether PCB exposure was associated with OS in dopaminergic neurons, a population of cells that selectively degenerate in PD. After 4 weeks of oral exposure to the PCB mixture Aroclor 1254, several congeners, mostly ortho substituted, accumulated throughout the brain. Significant increases in locomotor activity were observed within 2 weeks, which persisted after cessation of PCB exposure. Stereologic analyses revealed a significant loss of dopaminergic neurons within the substantia nigra and ventral tegmental area. However, striatal dopamine levels were elevated, suggesting that compensatory mechanisms exist to maintain dopamine homeostasis, which could contribute to the observed increases in locomotor activity following PCB exposure. Biochemical experiments revealed alterations in OS markers, including increases in SOD and HO-1 levels and the presence of oxidatively modified lipids and proteins. These findings were accompanied by elevated iron levels within the striatal and midbrain regions, perhaps due to the observed dysregulation of transferrin receptors and ferritin levels following PCB exposure. In this study, we suggest that both OS and the uncoupling of iron regulation contribute to dopamine neuron degeneration and hyperactivity following PCB exposure.

Original languageEnglish
Pages (from-to)496-508
Number of pages13
JournalToxicological Sciences
Volume125
Issue number2
DOIs
StatePublished - Feb 2012

Keywords

  • Environment
  • Iron
  • Neurodegeneration
  • Organochlorines
  • Oxidative stress
  • Parkinson's disease

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