Manganese in children with attention-deficit/hyperactivity disorder: relationship with methylphenidate exposure
Antonio C Farias1, Alexandre Cunha, Cássia R Benko
1Department of Neuropsychopharmacology, Pelé Pequeno Príncipe Research Institute, Av. Silva Jardim 1632, Curitiba, Parana, Brazil.
Insights
Children with ADHD have higher manganese levels, which decrease with methylphenidate (MPH) treatment. This suggests manganese plays a role in ADHD and MPH
Area of Science:
- Neuroscience
- Pediatrics
- Environmental Health
Background:
- Attention-deficit/hyperactivity disorder (ADHD) is a prevalent neurobehavioral disorder with complex, incompletely understood etiology.
- Previous research linked elevated manganese (Mn) levels to attention deficits and ADHD.
- The dopamine (DA) system, crucial for ADHD pharmacotherapy, is affected by high Mn levels.
Purpose of the Study:
- To investigate serum manganese (Mn) concentrations in children with ADHD compared to controls.
- To examine the effect of methylphenidate (MPH) treatment on Mn levels in children with ADHD.
Main Methods:
- Serum Mn levels were measured in treatment-naïve children with ADHD and matched controls.
- Mn levels were assessed in children with ADHD before and after MPH treatment.
- Dopamine transporter (DAT) involvement in Mn accumulation in dopaminergic neurons was considered.
Main Results:
- Treatment-naïve children with ADHD exhibited significantly higher serum Mn concentrations than controls.
- Children with ADHD on concurrent MPH treatment showed no difference in Mn levels compared to controls.
- Prospective assessment revealed a significant reduction in Mn levels following MPH exposure.
Conclusions:
- Elevated serum Mn is associated with ADHD in children.
- Methylphenidate (MPH) treatment may reduce manganese accumulation in children with ADHD.
- Further research is warranted to explore the Mn-ADHD relationship and MPH's role.
Abstract:
Attention-deficit/hyperactivity disorder (ADHD) is a common neurobehavioral disorder that affects children worldwide. The etiology of ADHD is complex and not fully understood. Earlier studies associated elevated levels of manganese (Mn) with learning problems, attention deficits, and ADHD. Furthermore, it has also been shown that the dopamine (DA) system, the primary site of action of pharmacological ADHD treatments, is influenced by high levels of Mn. Recent studies have suggested that Mn accumulates in dopaminergic neurons via the presynaptic dopamine transporter (DAT). A role for altered functioning of the dopaminergic system in the etiology of ADHD has been well established through neurochemical, neurophysiological, imaging, and genetics studies. Methylphenidate (MPH) is a psychostimulant commonly used to manage ADHD symptoms. The pharmacotherapeutic effect of MPH occurs primarily through its action of inhibiting DAT, and thus increasing dopamine, as well as other catecholamines, at the synapse. We assessed a group of children with ADHD and matched control children without psychopathology attending public schools in a southern Brazilian city and reported elevated serum concentrations of Mn in treatment-naïve children with ADHD compared to normal controls. Interestingly, children with ADHD receiving concurrent MPH showed no difference in Mn serum levels versus controls. We then prospectively assessed the impact of naturalistic treatment with MPH and determined that Mn concentrations were significantly reduced from baseline values following MPH exposure.
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