Literature DB >> 19774456

Experimental evidence that phenylalanine provokes oxidative stress in hippocampus and cerebral cortex of developing rats.

Carolina G Fernandes1, Guilhian Leipnitz, Bianca Seminotti, Alexandre U Amaral, Angela Zanatta, Carmen R Vargas, Carlos S Dutra Filho, Moacir Wajner.   

Abstract

High levels of phenylalanine (Phe) are the biochemical hallmark of phenylketonuria (PKU), a neurometabolic disorder clinically characterized by severe mental retardation and other brain abnormalities, including cortical atrophy and microcephaly. Considering that the pathomechanisms leading to brain damage and particularly the marked cognitive impairment in this disease are poorly understood, in the present study we investigated the in vitro effect of Phe, at similar concentrations as to those found in brain of PKU patients, on important parameters of oxidative stress in the hippocampus and cerebral cortex of developing rats. We found that Phe induced in vitro lipid peroxidation (increase of TBA-RS values) and protein oxidative damage (sulfhydryl oxidation) in both cerebral structures. Furthermore, these effects were probably mediated by reactive oxygen species, since the lipid oxidative damage was totally prevented by the free radical scavengers alpha-tocopherol and melatonin, but not by L-NAME, a potent inhibitor of nitric oxide synthase. Accordingly, Phe did not induce nitric oxide synthesis, but significantly decreased the levels of reduced glutathione (GSH), the major brain antioxidant defense, in hippocampus and cerebral cortex supernatants. Phe also reduced the thiol groups of a commercial GSH solution in a cell-free medium. We also found that the major metabolites of Phe catabolism, phenylpyruvate, phenyllactate and phenylacetate also increased TBA-RS levels in cerebral cortex, but to a lesser degree. The data indicate that Phe elicits oxidative stress in the hippocampus, a structure mainly involved with learning/memory, and also in the cerebral cortex, which is severely damaged in PKU patients. It is therefore presumed that this pathomechanism may be involved at least in part in the severe cognitive deficit and in the characteristic cortical atrophy associated with dysmyelination and leukodystrophy observed in this disorder.

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Year:  2009        PMID: 19774456     DOI: 10.1007/s10571-009-9455-6

Source DB:  PubMed          Journal:  Cell Mol Neurobiol        ISSN: 0272-4340            Impact factor:   5.046


  66 in total

Review 1.  Role of iron in neurodegenerative disorders.

Authors:  Daniela Berg; Moussa B H Youdim
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2.  Peroxynitrite inactivation of tyrosine hydroxylase: mediation by sulfhydryl oxidation, not tyrosine nitration.

Authors:  D M Kuhn; C W Aretha; T J Geddes
Journal:  J Neurosci       Date:  1999-12-01       Impact factor: 6.167

3.  Is there a relationship between 3-hydroxy-3-methylglutaryl coenzyme a reductase activity and forebrain pathology in the PKU mouse?

Authors:  S Shefer; G S Tint; D Jean-Guillaume; E Daikhin; A Kendler; L B Nguyen; M Yudkoff; C A Dyer
Journal:  J Neurosci Res       Date:  2000-09-01       Impact factor: 4.164

4.  Experimental hyperphenylalaninemia provokes oxidative stress in rat brain.

Authors:  Martine E Kienzle Hagen; Carolina D Pederzolli; Angela M Sgaravatti; Raquel Bridi; Moacir Wajner; Clóvis M D Wannmacher; Angela T S Wyse; Carlos S Dutra-Filho
Journal:  Biochim Biophys Acta       Date:  2002-04-24

5.  Long-term changes in glutamatergic synaptic transmission in phenylketonuria.

Authors:  A V Glushakov; O Glushakova; M Varshney; L K Bajpai; C Sumners; P J Laipis; J E Embury; S P Baker; D H Otero; D M Dennis; C N Seubert; A E Martynyuk
Journal:  Brain       Date:  2005-01-05       Impact factor: 13.501

6.  Cerebral energy metabolism in phenylketonuria: findings by quantitative In vivo 31P MR spectroscopy.

Authors:  Joachim Pietz; André Rupp; Friedrich Ebinger; Dietz Rating; Ertan Mayatepek; Chris Boesch; Roland Kreis
Journal:  Pediatr Res       Date:  2003-02-20       Impact factor: 3.756

7.  D-2-hydroxyglutaric acid induces oxidative stress in cerebral cortex of young rats.

Authors:  Alexandra Latini; Karina Scussiato; Rafael Borba Rosa; Susana Llesuy; Adriane Belló-Klein; Carlos Severo Dutra-Filho; Moacir Wajner
Journal:  Eur J Neurosci       Date:  2003-05       Impact factor: 3.386

8.  Phenylalanine reduces synaptic density in mixed cortical cultures from mice.

Authors:  Friederike Hörster; Marina A Schwab; Sven W Sauer; Joachim Pietz; Georg F Hoffmann; Jürgen G Okun; Stefan Kölker; Stefan Kins
Journal:  Pediatr Res       Date:  2006-04       Impact factor: 3.756

9.  Effect of short- and long-term exposition to high phenylalanine blood levels on oxidative damage in phenylketonuric patients.

Authors:  Angela Sitta; Alethéa G Barschak; Marion Deon; Amanda T Barden; Giovana B Biancini; Paula R Vargas; Carolina F de Souza; Cristina Netto; Moacir Wajner; Carmen R Vargas
Journal:  Int J Dev Neurosci       Date:  2009-01-20       Impact factor: 2.457

10.  Antioxidant status in hyperphenylalaninemia.

Authors:  C Sierra; M A Vilaseca; D Moyano; N Brandi; J Campistol; N Lambruschini; F J Cambra; R Deulofeu; A Mira
Journal:  Clin Chim Acta       Date:  1998-08-10       Impact factor: 3.786

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  23 in total

Review 1.  Oxidative stress in phenylketonuria: what is the evidence?

Authors:  Graziela S Ribas; Angela Sitta; Moacir Wajner; Carmen R Vargas
Journal:  Cell Mol Neurobiol       Date:  2011-04-23       Impact factor: 5.046

Review 2.  Antioxidant treatment strategies for hyperphenylalaninemia.

Authors:  Priscila Nicolao Mazzola; George Albert Karikas; Kleopatra H Schulpis; Carlos Severo Dutra-Filho
Journal:  Metab Brain Dis       Date:  2013-05-09       Impact factor: 3.584

3.  Effects of a co-treatment with pyruvate and creatine on dendritic spines in rat hippocampus and posterodorsal medial amygdala in a phenylketonuria animal model.

Authors:  Eleonora Araújo Dos Reis; Elenara Rieger; Sthefanie Souza de Souza; Alberto Antonio Rasia-Filho; Clóvis Milton Duval Wannmacher
Journal:  Metab Brain Dis       Date:  2013-02-22       Impact factor: 3.584

4.  Phenylpyruvic acid decreases glucose-6-phosphate dehydrogenase activity in rat brain.

Authors:  Andrea Pereira Rosa; Carlos Eduardo Dias Jacques; Tarsila Barros Moraes; Clóvis M D Wannmacher; Angela de Mattos Dutra; Carlos Severo Dutra-Filho
Journal:  Cell Mol Neurobiol       Date:  2012-04-04       Impact factor: 5.046

Review 5.  Oxidative stress in phenylketonuria: future directions.

Authors:  Júlio César Rocha; Maria João Martins
Journal:  J Inherit Metab Dis       Date:  2011-11-25       Impact factor: 4.982

6.  Pyruvate and creatine prevent oxidative stress and behavioral alterations caused by phenylalanine administration into hippocampus of rats.

Authors:  Simone Luisa Berti; Guilherme Marmontel Nasi; Cristina Garcia; Fernanda Luz de Castro; Michely Lopes Nunes; Denise Bertin Rojas; Tarsila Barros Moraes; Carlos Severo Dutra-Filho; Clóvis Milton Duval Wannmacher
Journal:  Metab Brain Dis       Date:  2011-11-19       Impact factor: 3.584

7.  Role of catalase and superoxide dismutase activities on oxidative stress in the brain of a phenylketonuria animal model and the effect of lipoic acid.

Authors:  Tarsila Barros Moraes; Carlos Eduardo Diaz Jacques; Andrea Pereira Rosa; Giovana Reche Dalazen; Melaine Terra; Juliana Gonzalez Coelho; Carlos Severo Dutra-Filho
Journal:  Cell Mol Neurobiol       Date:  2012-12-12       Impact factor: 5.046

Review 8.  Phenylketonuria Pathophysiology: on the Role of Metabolic Alterations.

Authors:  Patrícia Fernanda Schuck; Fernanda Malgarin; José Henrique Cararo; Fabiola Cardoso; Emilio Luiz Streck; Gustavo Costa Ferreira
Journal:  Aging Dis       Date:  2015-10-01       Impact factor: 6.745

Review 9.  Insights from Animal Models on the Pathophysiology of Hyperphenylalaninemia: Role of Mitochondrial Dysfunction, Oxidative Stress and Inflammation.

Authors:  Angela T S Wyse; Tiago M Dos Santos; Bianca Seminotti; Guilhian Leipnitz
Journal:  Mol Neurobiol       Date:  2021-02-06       Impact factor: 5.590

10.  Hyperphenylalaninemia Correlated with Global Decrease of Antioxidant Genes Expression in White Blood Cells of Adult Patients with Phenylketonuria.

Authors:  Charlotte Veyrat-Durebex; Christelle Debeissat; Hélène Blasco; Franck Patin; Hélène Henique; Patrick Emond; Catherine Antar; Valérie Gissot; Olivier Herault; François Maillot
Journal:  JIMD Rep       Date:  2017-03-15
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