Related Experiment Video
Updated: Jun 2, 2026

Modifying Levels of Maternal Dietary Folic Acid or Choline to Study the Impact of Deficiencies on Offspring Health Outcomes
Published on: June 28, 2024
Cerebral folate deficiency syndromes in childhood: clinical, analytical, and etiologic aspects
Belén Pérez-Dueñas1, Aida Ormazábal, Claudio Toma
1Department of Neurology, Hospital Sant Joan de Déu, Passeig Sant Joan de Déu 2, Esplugues, Barcelona, Spain. bperez@hsjdbcn.org
Insights
Cerebral folate deficiency (5-MTHF depletion) affects 12% of children with neurologic disorders. Mild deficiency links to various conditions, while severe depletion indicates specific metabolic or genetic defects.
Area of Science:
- Pediatric Neurology
- Neurochemistry
- Genetics
Background:
- Cerebral folate deficiency, characterized by cerebrospinal fluid 5-methyltetrahydrofolate (5-MTHF) depletion, can be treated therapeutically.
- Diverse factors contribute to 5-MTHF depletion, impacting neurologic function.
Purpose of the Study:
- To investigate the prevalence and spectrum of cerebral folate deficiency in children with various neurologic disorders.
- To analyze cerebrospinal fluid 5-MTHF levels in relation to specific neurological conditions.
Main Methods:
- Prospective analysis of cerebrospinal fluid 5-MTHF, biogenic amines, and pterins in 584 children with neurologic disorders.
- Direct sequencing of the FOLR1 transporter gene was performed in a subset of patients.
Main Results:
- 12% (71/584) of children exhibited 5-MTHF deficiency.
- Mild to moderate deficiency was linked to perinatal asphyxia, CNS infections, and genetic disorders.
- Severe 5-MTHF depletion was associated with MTHFR deficiency, Kearns-Sayre syndrome, and FOLR1 defects.
Conclusions:
- Cerebral folate deficiency presents in two main forms: mild/moderate and severe.
- Mild deficiency often co-occurs with non-folate-related neurologic issues, while severe deficiency points to specific metabolic, transporter, or genetic disorders.
- 5-MTHF levels are crucial indicators for diagnosing inborn folate metabolism disorders and general neurologic dysfunction.
Background:
Cerebral folate deficiency may be amenable to therapeutic supplementation. Diverse metabolic pathways and unrelated processes can lead to cerebrospinal fluid 5-methyltetrahydrofolate (5-MTHF) depletion, the hallmark of cerebral folate deficiency.
Objective:
To analyze cerebral folate abundance in a large prospective series of children diagnosed with any neurologic disorder for which a diagnostic lumbar puncture was indicated.
Design:
We studied the spectrum and frequency of disorders associated with cerebral folate deficiency by measuring cerebrospinal fluid 5-MTHF, biogenic amines, and pterins. Direct sequencing of the FOLR1 transporter gene was also performed in some patients.
Setting:
Academic pediatric medical center.
Participants:
We studied 134 individuals free of neurometabolic disease and 584 patients with any of several diseases of the central nervous system.
Results:
Of 584 patients, 71 (12%) exhibited 5-MTHF deficiency. Mild to moderate deficiency (n = 63; range, 19-63 nmol/L) was associated with perinatal asphyxia, central nervous system infection, or diseases of probable genetic origin (inborn errors of metabolism, white matter disorders, Rett syndrome, or epileptic encephalopathies). Severe 5-MTHF depletion (n = 8; range, 0.6-13 nmol/L) was detected in severe MTHF reductase deficiency, Kearns-Sayre syndrome, biotin-responsive striatal necrosis, acute necrotizing encephalitis of Hurst, and FOLR1 defect. A strong correlation was observed between cerebrospinal fluid and plasma folate levels in cerebral folate deficiency.
Conclusions:
Of the 2 main forms of cerebral folate deficiency identified, mild to moderate 5-MTHF deficiency was most commonly associated with disorders bearing no primary relation to folate metabolism, whereas profound 5-MTHF depletion was associated with specific mitochondrial disorders, metabolic and transporter defects, or cerebral degenerations. The results suggest that 5-MTHF can serve either as the hallmark of inborn disorders of folate transport and metabolism or, more frequently, as an indicator of neurologic dysfunction.
More Related Videos
05:44Concurrent Collection of Fetal Murine Brain and Serum to Assess Effects of Maternal Diet on Nutrition and Neurodevelopment in Neurofibromatosis Type 1
Published on: May 17, 2024
08:22A Novel Strategy Combining Array-CGH, Whole-exome Sequencing and In Utero Electroporation in Rodents to Identify Causative Genes for Brain Malformations
Published on: December 1, 2017
Related Concept Videos
Malaria
Vitamins
Encephalitis l: Introduction
Viral Meningitis
Cerebral Edema ll: Pathophysiology
Inborn Errors of Metabolism