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Behavioral Assessments of Spontaneous Locomotion in a Murine MPTP-induced Parkinson's Disease Model
Published on: January 7, 2019
Manganese mixture inhalation is a reliable Parkinson disease model in rats
Javier Sanchez-Betancourt1, Veronica Anaya-Martínez, Ana Luisa Gutierrez-Valdez
1Neuromorphology Lab, Facultad de Estudios Superiores Iztacala, UNAM, Av. de los Barrios 1, Los Reyes Iztacala, Tlalnepantla, Edo. Mex. 54090, Mexico.
Abstract:
Manganese (Mn) is an essential trace metal. Regardless of its essentiality, it has been reported that the overexposure causes neurotoxicity manifested as extrapyramidal symptoms similar to those observed in Parkinson disease (PD). Recently, our group reported that mice that inhaled for 5 months the mixture of manganese chloride (MnCl(2)) and manganese acetate Mn(OAc)(3) developed movement abnormalities, significant loss of substantia nigra compacta (SNc) dopaminergic neurons, dopamine depletion and improved behavior with l-DOPA treatment. However, this model has only been characterized in mice. In order to have a well-supported and generalizable model in rodents, we used male Wistar rats that inhaled a mixture of 0.04 M MnCl(2) and 0.02 M Mn(OAc)(3), 1h three times a week for 6 months. Before Mn exposure, animals were trained to perform motor tests (Beam-walking and Single-pellet reaching tasks) and were evaluated each week after the exposure. The mixture of MnCl(2)/Mn(OAc)(3) caused alterations in the motor tests, 75.95% loss of SNc dopaminergic neurons, and no cell alterations in Globus Pallidus or striatum. With these results we conclude that the inhalation of the mixture of Mn compounds is a useful model in rodents for the study of PD.
Insights
Manganese (Mn) overexposure in rats caused neurotoxicity, mimicking Parkinson disease (PD) symptoms. This study validates a new rodent model for investigating Mn-induced PD.
Area of Science:
- Neuroscience
- Toxicology
- Environmental Health
Background:
- Manganese (Mn) is essential but toxic at high levels.
- Mn overexposure can cause neurotoxicity resembling Parkinson disease (PD).
- Previous studies established a mouse model for Mn-induced neurotoxicity.
Purpose of the Study:
- To develop and validate a generalized rodent model for studying manganese-induced Parkinsonism.
- To assess the effects of inhaled manganese compounds in male Wistar rats.
Main Methods:
- Rats inhaled a mixture of manganese chloride (MnCl2) and manganese acetate (Mn(OAc)3) for 6 months.
- Motor function was assessed weekly using Beam-walking and Single-pellet reaching tasks.
- Post-exposure analysis included quantifying dopaminergic neuron loss in the substantia nigra compacta (SNc).
Main Results:
- Inhaled Mn compounds induced motor deficits in rats.
- A significant loss of 75.95% of SNc dopaminergic neurons was observed.
- No cellular alterations were noted in the Globus Pallidus or striatum.
Conclusions:
- Inhalation of MnCl2/Mn(OAc)3 mixture is a valid rodent model for Parkinson disease research.
- This model effectively replicates key pathological features of Mn-induced neurotoxicity relevant to PD.
