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Published on: October 26, 2010
Rotenone Exposure During Development Conditions Parkinsonian Phenotype in Young Adult Rats
Margarita Gómez-Chavarín1, Patricia Padilla2, Mireya Velázquez-Paniagua1
1Physiology Department, Medicine School, National University of Mexico, Ciudad de México 04500, Mexico.
Abstract:
Current studies suggest that environmental toxins may play a significant role in the fetal origins of Parkinson's disease (PD). Significant evidence from animal experiments has demonstrated that these toxins can disrupt fetal neurodevelopment. PD is a neurodegenerative disorder related to the loss of dopaminergic neurons in the substantia nigra pars compacta (S. nigra) and accumulation of α-synuclein (α-syn) in the brain. Parkinson's disease has long been associated with an idiopathic etiology, with environmental or ontogenetic factors as causes; however, the list of causal agents continues to expand as their effects are investigated at different stages of development. To explore the potential ontogenetic origins of PD, we exposed female rats subcutaneously (s.c.) to 1 mg/kg of the pesticide rotenone (ROT)-21 days during gestation, 21 days of breastfeeding, or 42 days in both periods-and assessed its long-term effects on their pups in adulthood. Our findings reveal that ROT exposure induces the degeneration of dopaminergic neurons in the S. nigra of adult rats. We administered ROT to dams during specific developmental stages and examined the nigrostriatal pathway and its functionality in offspring upon reaching young adulthood. Our results showed that perinatal ROT exposure led to (1) diminished motor skills, (2) greater concentrations of α-syn in the caudate nucleus (C. nucleus) and S. nigra, (3) reduced numbers of tyrosine hydroxylase immunoreactive neurons, and (4) hypomethylation of global 5-methylcytosine DNA compared to control rats at 60 days of age. The effects were more pronounced in rats exposed to ROT in utero and in both the in utero and breastfeeding periods, with fewer effects observed in those exposed only during breastfeeding. Thus, our findings suggest that exposure to ROT during the early developmental stages predisposes rats to Parkinsonian symptoms later in adulthood.
Insights
Environmental pesticide rotenone exposure during development can cause Parkinson's disease symptoms in adult rats. Prenatal exposure showed the most significant effects, impacting motor skills and brain neurochemistry.
Area of Science:
- Neuroscience
- Toxicology
- Developmental Biology
Background:
- Parkinson's disease (PD) is a neurodegenerative disorder linked to dopaminergic neuron loss and alpha-synuclein accumulation.
- Environmental toxins are increasingly implicated in the fetal origins of PD, disrupting neurodevelopment.
- The specific developmental stages and agents contributing to PD etiology require further investigation.
Purpose of the Study:
- To investigate the long-term effects of rotenone (ROT) exposure during critical developmental periods in rats on Parkinson's disease-like pathology.
- To determine if perinatal ROT exposure can predispose offspring to neurodegeneration and motor deficits in adulthood.
Main Methods:
- Female rats were exposed to the pesticide rotenone (ROT) during gestation, breastfeeding, or both periods.
- Offspring were assessed in adulthood for motor skills, alpha-synuclein (α-syn) levels, dopaminergic neuron counts, and DNA methylation.
- The integrity and function of the nigrostriatal pathway were examined.
Main Results:
- Perinatal ROT exposure induced dopaminergic neuron degeneration in the substantia nigra (S. nigra) of adult rats.
- Offspring exhibited diminished motor skills, increased α-syn in the caudate nucleus (C. nucleus) and S. nigra, and reduced tyrosine hydroxylase-positive neurons.
- Hypomethylation of global 5-methylcytosine DNA was observed in exposed rats.
- Effects were most severe with in utero and combined in utero/breastfeeding exposure.
Conclusions:
- Early-life exposure to the environmental toxin rotenone can lead to Parkinson's disease-like symptoms in adulthood.
- Developmental stage influences susceptibility, with prenatal exposure being particularly detrimental.
- These findings highlight the critical role of environmental factors during development in PD pathogenesis.
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