Occupational manganese (Mn) overexposure leads to accumulation in the brain and has been shown to cause progressive, permanent, neuro-degenerative damage with syndromes similar to idiopathic Parkinsonism. Mn is transported by an active mechanism across neural barriers (NB) finally into the brain; but to date, modes of Mn neurotoxic action are poorly understood. This paper investigates the relevant Mn-carrier species which are responsible for widely uncontrolled transport across NB. Mn speciation in paired serum/cerebrospinal fluid (CSF) samples was performed by size exclusion chromatography-inductively coupled plasma-dynamic reaction cell-mass spectrometry (SEC-ICP-DRC-MS) and capillary zone electrophoresis coupled to ICP-DRC-MS in a 2D app...
Manganese (Mn) is known to be a neurotoxic agent for nearly 175 years now. A lot of research has the...
Increased manganese (Mn) use in manufacturing and in gasoline has raised concern about Mn-induced pa...
Exposure to high concentrations of Manganese (Mn) is known to potentially induce an accumulation in ...
Manganese (Mn) at high concentrations can have adverse effects on health, mainly because of its toxi...
Manganese, at excess concentrations, can have adverse effects on health. Mn is a neurotoxicant. The ...
Occupational and environmental exposure to increased concentrations of Manganese (Mn) can lead to an...
Occupational and environmental exposure to increased concentrations of manganese (Mn) can lead to an...
The neurotoxic effects of manganese (Mn) at elevated concentrations are well known. This raises the ...
After high-dose-short-term exposure (usually from occupational exposure) and even more under low-dos...
AbstractNeurodegenerative diseases get a growing relevance for societies. But yet the complex multi-...
Background: Transition metals play a crucial role in brain metabolism: since they exist in different...
Background: Transition metals play a crucial role in brain metabolism: since they exist in different...
Chronic manganese exposure leads to accumulation in brain mainly in the basal ganglia. Continuous in...
Manganese (Mn) is an essential trace element, exerting important functions in metabolic and redox ho...
Manganese (Mn) is essential for brain growth and metabolism, but in excess can be a neurotoxicant. T...
Manganese (Mn) is known to be a neurotoxic agent for nearly 175 years now. A lot of research has the...
Increased manganese (Mn) use in manufacturing and in gasoline has raised concern about Mn-induced pa...
Exposure to high concentrations of Manganese (Mn) is known to potentially induce an accumulation in ...
Manganese (Mn) at high concentrations can have adverse effects on health, mainly because of its toxi...
Manganese, at excess concentrations, can have adverse effects on health. Mn is a neurotoxicant. The ...
Occupational and environmental exposure to increased concentrations of Manganese (Mn) can lead to an...
Occupational and environmental exposure to increased concentrations of manganese (Mn) can lead to an...
The neurotoxic effects of manganese (Mn) at elevated concentrations are well known. This raises the ...
After high-dose-short-term exposure (usually from occupational exposure) and even more under low-dos...
AbstractNeurodegenerative diseases get a growing relevance for societies. But yet the complex multi-...
Background: Transition metals play a crucial role in brain metabolism: since they exist in different...
Background: Transition metals play a crucial role in brain metabolism: since they exist in different...
Chronic manganese exposure leads to accumulation in brain mainly in the basal ganglia. Continuous in...
Manganese (Mn) is an essential trace element, exerting important functions in metabolic and redox ho...
Manganese (Mn) is essential for brain growth and metabolism, but in excess can be a neurotoxicant. T...
Manganese (Mn) is known to be a neurotoxic agent for nearly 175 years now. A lot of research has the...
Increased manganese (Mn) use in manufacturing and in gasoline has raised concern about Mn-induced pa...
Exposure to high concentrations of Manganese (Mn) is known to potentially induce an accumulation in ...