Attention-deficit hyperactivity disorder (ADHD) as a pyridoxine-dependent condition: urinary diagnostic biomarkers
S Dolina1, D Margalit1, S Malitsky1
1Advanced Neuroprotective Systems, Ltd., Kaplan's Medical Center Pediatric Dept, Rehovot, Israel.
Insights
Children with ADHD show impaired vitamin B6 metabolism, similar to epilepsy. Long-term pyridoxine treatment normalized ADHD behavior, suggesting a metabolic basis for the disorder.
Area of Science:
- Biochemistry
- Neuroscience
- Pediatrics
Background:
- Epilepsy is linked to inborn errors in pyridoxine (vitamin B6) metabolism.
- Attention-Deficit/Hyperactivity Disorder (ADHD) shares interconnections with epilepsy, suggesting a potential common metabolic pathway.
Purpose of the Study:
- To investigate pyridoxal phosphate (PLP)-dependent tryptophan (TRP) degradation in children with ADHD.
- To compare TRP degradation parameters in ADHD patients with those in epileptic children and healthy controls.
Main Methods:
- High-performance liquid chromatography (HPLC) was used to detect TRP levels, TRP degradation metabolites, and 4-pyridoxic acid (4PA) in ADHD children and controls.
- Analysis focused on specific ratios, including 4PA/TRP, IND/TRP, and IND/KYN, indicative of enzyme activity.
Main Results:
- ADHD patients exhibited significantly impaired activity of pyridoxine-dependent enzymes, evidenced by low 4PA/TRP, IND/TRP, and IND/KYN ratios.
- Ritalin treatment showed a balancing effect on some metabolites but did not alter the low diagnostic marker ratios.
- TRP degradation patterns in untreated ADHD patients closely mirrored those in epileptic patients.
Conclusions:
- Inborn disorders of vitamin B6 metabolism are proposed as a common biochemical background for both ADHD and epilepsy.
- Disturbed PLP-dependent enzyme activity in ADHD likely contributes to neurotransmitter system dysregulation and amino acid metabolism disorders.
- Long-term pyridoxine treatment offers a pathogenetically based replacement therapy for ADHD, normalizing behavior without significant side effects.
Abstract:
The data obtained in children with different forms of epilepsy allowed us to consider epilepsy as an inborn error of pyridoxine (vitamin B6) metabolism (Dolina et al., 2012). Mutual interconnections between ADHD and epilepsy indicate that such an approach is reasonable for ADHD. To check such an assumption we analyzed in ADHD patients the same parameters of pyridoxal phosphate (PLP)-dependent tryptophan (TRP) degradation, which were analyzed in epileptic children. The level of TRP and concentrations of compounds formed or metabolized by TRP degradation, the ratios between some of them, and the level of 4-pyridoxic acid were HPLC detected in ADHD children and healthy controls. The data obtained, including low values of 4PA/TRP, IND/TRP and IND/KYN ratios, have evidenced dramatically impaired activity of pyridoxine-dependent enzymes in ADHD patients. Ritalin treatment did not change the general pattern of TRP degradation, but still created a kind of balance between some of detected metabolites. However, the 4PA/TRP, IND/TRP and IND/KYN ratios remained as low as in untreated patients, keeping the importance of diagnostic markers. Almost identical parameters of TRP degradation in untreated ADHD and epileptic patients allow to assume that inborn disorders of vitamin B6 metabolism are the common biochemical background of both diseases. The disturbed activity of PLP dependent enzymes apparently forms those profound disturbances of neurotransmitter systems, which are inherent in ADHD: low concentrations of monoamines and disordered amino acid metabolism. If vitamin B6 disorders are the core biochemical disturbances inherent in ADHD, then the long-term pyridoxine treatment is pathogenetically based replacement therapy of the disease. According to our data, multi-year pyridoxine treatment normalizes completely the pattern of ADHD behavior, without causing any serious side effects.
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