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Toxicity of dieldrin for dopaminergic neurons in mesencephalic cultures
J Sanchez-Ramos1, A Facca, A Basit
1Department of Neurology, University of South Florida, James A. Haley VA Medical Center, Research 151, 13000 Bruce B Downs Boulevard, Tampa, Florida 33612, USA.
Abstract:
Dieldrin can be retained for decades in lipid-rich tissue and has been measured in some postmortem PD brains. Dieldrin has been reported to deplete brain monoamines in several species and has been shown to inhibit mitochondrial respiration. To further investigate the possibility that it may be involved in the pathogenesis of parkinsonism, its toxicity for dopaminergic (DA) neurons was assessed in a mesencephalic cell culture model. Primary neuronal cultures of mesencephalic neurons were prepared from fetal rats or fetal mice, grown for 1 week and incubated with Dieldrin (0.01-100 microM) for 24 or 48 h. Toxicity for DA neurons was determined by measuring density of surviving tyrosine hydroxylase immunoreactive (TH-ir) cells. Toxicity for gamma-aminobutyric acid (GABA)-ergic neurons was determined by measuring survival of glutamate decarboxylase (GAD)-ir neurons. General, nonselective cytotoxicity was determined by counting cells visualized by phase contrast microscopy or by DAPI-stained cells with fluorescence microscopy. Dieldrin exposure for 24 h resulted in a dose-dependent decrease in survival of TH-IR cells (DA neurons) with a 50% decrease (EC50) produced by 12 microM in rat mesencephalic cultures. Dieldrin also produced a dose- and time-dependent decrease in mouse DA-ergic and GABA-ergic neurons in mouse mesencephalic cultures. GABA-ergic neurons were less sensitive to the toxin compared to DA-ergic neurons. Cellular uptake of 3H-DA was also affected by lower concentrations of Dieldrin (EC50 = 7.98 microM) than uptake of 3H-GABA (EC50 = 43 microM). Thus, Dieldrin appears to be a relatively selective DA-ergic neurotoxin in mesencephalic cultures. Dieldrin, which may be ubiquitous in the environment, is proposed as an agent which can initiate and promote dopaminergic neurodegeneration in susceptible individuals.
Insights
The pesticide Dieldrin selectively damages dopaminergic (DA) neurons, a key cell type affected in Parkinson's disease. This environmental toxin may initiate or worsen neurodegeneration in susceptible individuals.
Area of Science:
- Neuroscience
- Toxicology
- Environmental Health
Background:
- Dieldrin, a persistent environmental pollutant, accumulates in lipid-rich tissues.
- Previous studies indicate Dieldrin depletes brain monoamines and inhibits mitochondrial respiration.
- Dieldrin has been detected in postmortem Parkinson's disease (PD) brains, suggesting a potential role in PD pathogenesis.
Purpose of the Study:
- To investigate the neurotoxic effects of Dieldrin on dopaminergic (DA) neurons.
- To assess the selectivity of Dieldrin's toxicity towards DA neurons compared to other neuronal types.
- To evaluate Dieldrin's potential role in the pathogenesis of parkinsonism.
Main Methods:
- Primary mesencephalic neuronal cultures from fetal rats and mice were exposed to Dieldrin (0.01-100 microM) for 24 or 48 hours.
- DA neuron survival was quantified by counting tyrosine hydroxylase-immunoreactive (TH-ir) cells.
- Gamma-aminobutyric acid (GABA)-ergic neuron survival was assessed by counting glutamate decarboxylase (GAD)-ir neurons.
- Non-selective cytotoxicity was determined using phase contrast and fluorescence microscopy.
Main Results:
- Dieldrin exposure caused a dose-dependent decrease in TH-ir (DA) neuron survival, with an EC50 of 12 microM in rat cultures.
- Dieldrin exhibited dose- and time-dependent toxicity towards both DA and GABA-ergic neurons in mouse cultures.
- DA neurons were more sensitive to Dieldrin than GABA-ergic neurons.
- Dieldrin inhibited 3H-DA uptake at lower concentrations (EC50 = 7.98 microM) than 3H-GABA uptake (EC50 = 43 microM).
Conclusions:
- Dieldrin acts as a selective neurotoxin for dopaminergic neurons in mesencephalic cultures.
- The environmental pesticide Dieldrin is proposed as a potential initiator or promoter of dopaminergic neurodegeneration in susceptible individuals.