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Published on: January 7, 2019
Are there common biochemical and molecular mechanisms controlling manganism and parkisonism
1Department of Pharmacology and Toxicology, University at Buffalo, 11 Cary Hall, Buffalo, NY, 14228, USA. jaroth@buffalo.edu
Abstract:
Over the past several decades there has been considerable progress in our basic knowledge as to the mechanisms and factors regulating Mn toxicity. The disorder known as manganism is associated with the preferential accumulation of Mn in the globus pallidus of the basal ganglia which is generally considered to be the major and initial site of injury. Because the area of the CNS comprising the basal ganglia is very complex and dependent on the precise function and balance of several neurotransmitters, it is not surprising that symptoms of manganism often overlap with that of Parkinson's disease. The fact that neurological symptoms and onset of Mn toxicity are quite broad and can vary unpredictably probably reflects specific genetic variance of the physiological and biochemical makeup within the basal ganglia in any individual. Differences in response to Mn overexposure are, thus, likely due to underlying genetic variability which ultimately presents in deviations in both susceptibility as well as the characteristics of the neurological lesions and symptoms expressed. Although chronic exposure to Mn is not the initial causative agent provoking Parkinsonism, there is evidence suggesting that persistent exposure can predispose an individual to acquire dystonic movements associated with Parkinson's disease. As noted in this review, there appears to be common threads between the two disorders, as mutations in the genes, parkin and ATP13A2, associated with early onset of Parkinsonism, may also predispose an individual to develop Mn toxicity. Mutations in both genes appear to effect transport of Mn into the cell. These genetic difference coupled with additional environmental or nutritional factors must also be considered as contributing to the severity and onset of manganism.
Insights
Manganese (Mn) toxicity, or manganism, primarily affects the basal ganglia, causing symptoms that overlap with Parkinson's disease. Genetic variations influence individual susceptibility and symptom presentation in Mn overexposure.
Area of Science:
- Neuroscience
- Toxicology
- Genetics
Background:
- Manganese (Mn) toxicity, known as manganism, involves Mn accumulation in the globus pallidus, a key basal ganglia region.
- The basal ganglia's complexity and neurotransmitter balance mean manganism symptoms often mimic Parkinson's disease.
- Neurological symptoms of Mn toxicity vary unpredictably due to individual genetic differences.
Purpose of the Study:
- To review the mechanisms and factors regulating manganese toxicity.
- To explore the overlap in symptoms and genetic predispositions between manganism and Parkinson's disease.
- To understand how genetic variability influences Mn toxicity susceptibility and presentation.
Main Methods:
- Review of existing literature on manganese toxicity and Parkinson's disease.
- Analysis of the role of the globus pallidus in Mn-induced neurological damage.
- Examination of genetic factors, including mutations in parkin and ATP13A2, in Mn toxicity and Parkinsonism.
Main Results:
- Manganese accumulation in the globus pallidus is a primary site of injury in manganism.
- Genetic variations significantly impact individual responses to manganese overexposure.
- Shared genetic links, such as mutations in parkin and ATP13A2, suggest a common pathway in Parkinson's disease and Mn toxicity.
Conclusions:
- Individual genetic makeup is a critical determinant of susceptibility and symptomology in manganese toxicity.
- While not a direct cause, chronic manganese exposure may predispose individuals to Parkinson's-like dystonic movements.
- Further research into genetic and environmental factors is crucial for understanding the onset and severity of manganism.
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