Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A culture model for the assessment of phenylalanine neurotoxicity in phenylketonuria

View through CrossRef
Abstract Objective Phenylketonuria (PKU) is caused by a specific mutation of the phenylalanine hydroxylase (PAH) gene. The deficiency of PAH results in high phenylalanine levels (Phe), low tyrosine levels (Tyr), and reduced catecholamine neurotransmitters. The majority of PKU patients, if untreated, develop severe mental retardation. The specific contribution of high Phe and low Tyr levels in mental retardation is largely unknown. In this study, we used organic hippocampal slice cultures in an optimized medium as an adequate culture model to decipher the precise role of high Phe and low Tyr levels on synaptic and glial integrity in PKU. The hippocampus is closely related to learning and memory and reduced catecholamine neurotransmitter levels can be neglected since these neurotransmitters do not derive from the hippocampus. Cultures exposed to physiological concentrations of Phe were compared with cultures exposed to doses of Phe/Tyr, as in the cerebral fluid of PKU patients. Methods Using capillary western blot analysis and immunohistochemistry, followed by quantitative image analysis, we tested the expression of various pre- and postsynaptic proteins (PSD95, synaptopodin, SNAP25, synaptophysin), glial cell markers (GFAP, Iba1, P2Y12, CD68, C3b), and the morphology of glial cells. Results We found a downregulation of the postsynaptic protein PSD95 and the presynaptic protein SNAP25 in the presence of high/low Phe/Tyr levels after 3 weeks, which, then however, recovered after 6 weeks in culture. Furthermore, no change in the expression pattern of glial proteins was observed. Conclusion Our results show that high Phe levels/low Tyr levels alone are unlikely to substantially contribute to mental retardation in PKU. The direct neurotoxic potency of high Phe/low Tyr concentrations is almost negligible since the effects are transient. The transient character in the presence of unchanged levels of high Phe/low Tyr points to a role of reduced catecholamine derivate neurotransmitters, rather than of high Phe/low Tyr levels in PKU.
Title: A culture model for the assessment of phenylalanine neurotoxicity in phenylketonuria
Description:
Abstract Objective Phenylketonuria (PKU) is caused by a specific mutation of the phenylalanine hydroxylase (PAH) gene.
The deficiency of PAH results in high phenylalanine levels (Phe), low tyrosine levels (Tyr), and reduced catecholamine neurotransmitters.
The majority of PKU patients, if untreated, develop severe mental retardation.
The specific contribution of high Phe and low Tyr levels in mental retardation is largely unknown.
In this study, we used organic hippocampal slice cultures in an optimized medium as an adequate culture model to decipher the precise role of high Phe and low Tyr levels on synaptic and glial integrity in PKU.
The hippocampus is closely related to learning and memory and reduced catecholamine neurotransmitter levels can be neglected since these neurotransmitters do not derive from the hippocampus.
Cultures exposed to physiological concentrations of Phe were compared with cultures exposed to doses of Phe/Tyr, as in the cerebral fluid of PKU patients.
Methods Using capillary western blot analysis and immunohistochemistry, followed by quantitative image analysis, we tested the expression of various pre- and postsynaptic proteins (PSD95, synaptopodin, SNAP25, synaptophysin), glial cell markers (GFAP, Iba1, P2Y12, CD68, C3b), and the morphology of glial cells.
Results We found a downregulation of the postsynaptic protein PSD95 and the presynaptic protein SNAP25 in the presence of high/low Phe/Tyr levels after 3 weeks, which, then however, recovered after 6 weeks in culture.
Furthermore, no change in the expression pattern of glial proteins was observed.
Conclusion Our results show that high Phe levels/low Tyr levels alone are unlikely to substantially contribute to mental retardation in PKU.
The direct neurotoxic potency of high Phe/low Tyr concentrations is almost negligible since the effects are transient.
The transient character in the presence of unchanged levels of high Phe/low Tyr points to a role of reduced catecholamine derivate neurotransmitters, rather than of high Phe/low Tyr levels in PKU.

Related Results

Financial justification of investments into special diet for patients with phenylketonuria
Financial justification of investments into special diet for patients with phenylketonuria
Introduction. Phenylketonuria is a genetic disorder of metabolism of amino acid phenylalanine, which results in the absence of phenylalanine hydroxylase, an enzyme that catal...
Phenylketonuria
Phenylketonuria
Abstract Phenylketonuria (PKU) is the most frequent disorder of amino acid metabolism. First described by Fölling in 1934, PKU is an autosomal recessive disorder inv...
Phenylketonuria: A Comprehensive Review of Pathophysiology, Diagnosis, and Management Strategies
Phenylketonuria: A Comprehensive Review of Pathophysiology, Diagnosis, and Management Strategies
Introduction: Phenylketonuria (PKU) is a genetically determined congenital metabolic disorder characterized by the body's inability to properly metabolize the amino acid phenylalan...
Metabolic physiology of aroma‐producing Kluyveromyces marxianus
Metabolic physiology of aroma‐producing Kluyveromyces marxianus
AbstractKluyveromyces marxianus has a high potential for industrial production of aroma compounds, such as 2‐phenylethanol, which is derived in a bioconversion from L‐phenylalanine...
Phenylketonuria: Brain Phenylalanine Concentrations Relate Inversely to Cerebral Protein Synthesis
Phenylketonuria: Brain Phenylalanine Concentrations Relate Inversely to Cerebral Protein Synthesis
In phenylketonuria, elevated plasma phenylalanine concentrations may disturb blood-to-brain large neutral amino acid (LNAA) transport and cerebral protein synthesis (CPS). We inves...
Extremely low birthweight neonates with phenylketonuria require special dietary management
Extremely low birthweight neonates with phenylketonuria require special dietary management
AbstractAimExtremely low birthweight (ELBW) neonates require a high protein intake, but this can be challenging in the very rare cases when they also have phenylketonuria (PKU). Th...
Structural Properties of Phenylalanine-Based Dimers Revealed Using IR Action Spectroscopy
Structural Properties of Phenylalanine-Based Dimers Revealed Using IR Action Spectroscopy
Peptide segments with phenylalanine residues are commonly found in proteins that are related to neurodegenerative diseases. However, the self-assembly of phenylalanine-based peptid...

Back to Top