scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1039248703 |
P356 | DOI | 10.1007/S12035-015-9548-9 |
P698 | PubMed publication ID | 26607633 |
P50 | author | Bianca Seminotti | Q80665150 |
Marília Danyelle Nunes Rodrigues | Q86807699 | ||
Abel Santamaría | Q88868534 | ||
Moacir Wajner | Q89163680 | ||
Guilhian Leipnitz | Q73319960 | ||
P2093 | author name string | Ana Laura Colín-González | |
Alexandre Umpierrez Amaral | |||
Rafael Teixeira Ribeiro | |||
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Age and brain structural related effects of glutaric and 3-hydroxyglutaric acids on glutamate binding to plasma membranes during rat brain development | Q81041437 | ||
Protein measurement with the Folin phenol reagent | Q20900776 | ||
NRF2 cysteine residues are critical for oxidant/electrophile-sensing, Kelch-like ECH-associated protein-1-dependent ubiquitination-proteasomal degradation, and transcription activation | Q23923915 | ||
Activation of phosphatidylinositol 3-kinase in response to interleukin-1 leads to phosphorylation and activation of the NF-kappaB p65/RelA subunit | Q24554482 | ||
The Nrf2-ARE pathway: an indicator and modulator of oxidative stress in neurodegeneration | Q24644214 | ||
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Protection against electrophile and oxidant stress by induction of the phase 2 response: fate of cysteines of the Keap1 sensor modified by inducers | Q29616503 | ||
Phosphorylation of Nrf2 at Ser-40 by protein kinase C regulates antioxidant response element-mediated transcription | Q29617066 | ||
The unsolved puzzle of neuropathogenesis in glutaric aciduria type I. | Q33352180 | ||
Glutaric aciduria type I: from clinical, biochemical and molecular diversity to successful therapy | Q33688350 | ||
Regulatory mechanisms of cellular response to oxidative stress | Q33750101 | ||
Neonatal astrocyte damage is sufficient to trigger progressive striatal degeneration in a rat model of glutaric acidemia-I. | Q33941133 | ||
Evaluation of total reactive antioxidant potential (TRAP) of tissue homogenates and their cytosols | Q33947614 | ||
Protective and restorative potency of Vitamin D on persistent biochemical autistic features induced in propionic acid-intoxicated rat pups | Q34504716 | ||
Increased glutamate receptor and transporter expression in the cerebral cortex and striatum of gcdh-/- mice: possible implications for the neuropathology of glutaric acidemia type I. | Q35110544 | ||
Endothelial nitric oxide synthase: a determinant of TNFα production by human monocytes/macrophages | Q35555916 | ||
Excitotoxicity and bioenergetics in glutaryl-CoA dehydrogenase deficiency | Q35927885 | ||
Modulation of glutamatergic and GABAergic neurotransmission in glutaryl-CoA dehydrogenase deficiency | Q35927888 | ||
Glutaric aciduria type I and kynurenine pathway metabolites: a modified hypothesis | Q35927892 | ||
Mechanism of age-dependent susceptibility and novel treatment strategy in glutaric acidemia type I | Q36025285 | ||
Novel crosstalk between ERK MAPK and p38 MAPK leads to homocysteine-NMDA receptor-mediated neuronal cell death | Q36569325 | ||
On the relation of oxidative stress to neuroinflammation: lessons learned from the G93A-SOD1 mouse model of amyotrophic lateral sclerosis | Q36620598 | ||
CT and MR of the brain in glutaric acidemia type I: a review of 59 published cases and a report of 5 new patients | Q36687335 | ||
Neuroinflammation and regulation of glial glutamate uptake in neurological disorders | Q36819684 | ||
Hormetic dietary phytochemicals | Q37083908 | ||
Reduction of Na+, K+-ATPase activity and expression in cerebral cortex of glutaryl-CoA dehydrogenase deficient mice: a possible mechanism for brain injury in glutaric aciduria type I. | Q48367381 | ||
Inhibition of brain glutamate decarboxylase by glutarate, glutaconate, and β-Hydroxyglutarate: Explanation of the symptoms in glutaric aciduria? | Q48403320 | ||
Lysine intake and neurotoxicity in glutaric aciduria type I: towards a rationale for therapy? | Q48461876 | ||
Time course of oxidative events in the hippocampus following intracerebroventricular infusion of quinolinic acid in mice | Q48501833 | ||
Induction of oxidative stress in brain of glutaryl-CoA dehydrogenase deficient mice by acute lysine administration | Q48599620 | ||
Regional development of glutamate dehydrogenase in the rat brain | Q48648481 | ||
Test-strip method for measuring lactate in whole blood. | Q52521873 | ||
Some new aspects of creatine kinase (CK): compartmentation, structure, function and regulation for cellular and mitochondrial bioenergetics and physiology. | Q53938809 | ||
3-Hydroxyglutaric and glutaric acids are neurotoxic through NMDA receptors in vitro. | Q54644825 | ||
Melatonin reduces oxidative neurotoxicity due to quinolinic acid: | Q59489064 | ||
Evaluation of the probe 2',7'-dichlorofluorescin as an indicator of reactive oxygen species formation and oxidative stress | Q67493487 | ||
The action of acute alcoholic intoxication on the antioxidant system and creatine kinase activity in the brain of rat embryos | Q67836358 | ||
Differential investigation of the capacity of succinate oxidation in human skeletal muscle | Q70117911 | ||
Glutathione reductase | Q70123854 | ||
Glutathione S-transferase (transferase π) from human placenta is identical or closely related to glutathione S-transferase (transferase ϱ) from erythrocytes | Q70968101 | ||
44 Glutathione peroxidase | Q71070215 | ||
Inhibition of creatine kinase by S-nitrosoglutathione | Q71448124 | ||
Biochemical and molecular investigations in respiratory chain deficiencies | Q72792351 | ||
Inhibition of synaptosomal [3H]glutamate uptake and [3H]glutamate binding to plasma membranes from brain of young rats by glutaric acid in vitro | Q73450645 | ||
Semiautomated measurement of nitrate in biological fluids | Q74339100 | ||
Pathogenesis of CNS involvement in disorders of amino and organic acid metabolism | Q37130117 | ||
Homocysteine-NMDA receptor-mediated activation of extracellular signal-regulated kinase leads to neuronal cell death | Q37357144 | ||
Kynurenines with neuroactive and redox properties: relevance to aging and brain diseases. | Q37623378 | ||
Quinolinic Acid, an endogenous molecule combining excitotoxicity, oxidative stress and other toxic mechanisms | Q37992617 | ||
Quinolinic acid: an endogenous neurotoxin with multiple targets | Q38148752 | ||
Oxidative damage and the Nrf2-ARE pathway in neurodegenerative diseases | Q38175104 | ||
Diabetes and the brain: oxidative stress, inflammation, and autophagy | Q38248610 | ||
Coordinate Regulation of Glutathione Biosynthesis and Release by Nrf2-Expressing Glia Potently Protects Neurons from Oxidative Stress | Q38355236 | ||
Identification of the NF-E2-related factor-2-dependent genes conferring protection against oxidative stress in primary cortical astrocytes using oligonucleotide microarray analysis | Q38358203 | ||
The kynurenine pathway and neurodegenerative disease. | Q38378952 | ||
Heme activates the heme oxygenase-1 gene in renal epithelial cells by stabilizing Nrf2. | Q40687391 | ||
p38 MAPK-mediated transcriptional activation of inducible nitric-oxide synthase in glial cells. Roles of nuclear factors, nuclear factor kappa B, cAMP response element-binding protein, CCAAT/enhancer-binding protein-beta, and activating transcriptio | Q40727546 | ||
Hypothesis: a role for quinolinic acid in the neuropathology of glutaric aciduria type I. | Q41356760 | ||
Regulation of aortic CuZn-superoxide dismutase with copper. Effects in vivo | Q42100930 | ||
Energetic dysfunction in quinolinic acid-lesioned rat striatum | Q42445269 | ||
Glutaric acid stimulates glutamate binding and astrocytic uptake and inhibits vesicular glutamate uptake in forebrain from young rats | Q42466797 | ||
Excitotoxic brain damage involves early peroxynitrite formation in a model of Huntington's disease in rats: protective role of iron porphyrinate 5,10,15,20-tetrakis (4-sulfonatophenyl)porphyrinate iron (III). | Q42482897 | ||
Activation of the antioxidant response element in primary cortical neuronal cultures derived from transgenic reporter mice | Q42522447 | ||
Evidence that 3-hydroxyglutaric acid interacts with NMDA receptors in synaptic plasma membranes from cerebral cortex of young rats. | Q42634601 | ||
Use of guidelines improves the neurological outcome in glutaric aciduria type I. | Q42843854 | ||
Mouse model of encephalopathy and novel treatment strategies with substrate competition in glutaric aciduria type I. | Q43124751 | ||
Changes in thiol content and expression of glutathione redox system genes in the hippocampus and cerebellum in Alzheimer's disease | Q43566869 | ||
Chemical modification of lysozyme, glucose 6-phosphate dehydrogenase, and bovine eye lens proteins induced by peroxyl radicals: role of oxidizable amino acid residues | Q43586101 | ||
Contribution of reactive oxygen species to 3-hydroxyglutarate neurotoxicity in primary neuronal cultures from chick embryo telencephalons | Q43649228 | ||
Potentiation of 3-hydroxyglutarate neurotoxicity following induction of astrocytic iNOS in neonatal rat hippocampal cultures | Q43650968 | ||
Distinct roles of the Ikappa B kinase alpha and beta subunits in liberating nuclear factor kappa B (NF-kappa B) from Ikappa B and in phosphorylating the p65 subunit of NF-kappa B. | Q43815830 | ||
Chronic treatment with glutaric acid induces partial tolerance to excitotoxicity in neuronal cultures from chick embryo telencephalons | Q43981149 | ||
Ca(2+) and Na(+) dependence of 3-hydroxyglutarate-induced excitotoxicity in primary neuronal cultures from chick embryo telencephalons | Q44083758 | ||
3-Hydroxyglutaric acid induces oxidative stress and decreases the antioxidant defenses in cerebral cortex of young rats | Q44225349 | ||
Glutaric acid induces oxidative stress in brain of young rats | Q44306271 | ||
Keap1 regulates both cytoplasmic-nuclear shuttling and degradation of Nrf2 in response to electrophiles | Q44373729 | ||
Promotion of oxidative stress by 3-hydroxyglutaric acid in rat striatum. | Q45258661 | ||
JAK2 inhibition is neuroprotective and reduces astrogliosis after quinolinic acid striatal lesion in adult mice | Q45772805 | ||
Kinetic characterization of l-[(3)H]glutamate uptake inhibition and increase oxidative damage induced by glutaric acid in striatal synaptosomes of rats | Q46310001 | ||
Astrocytic proliferation and mitochondrial dysfunction induced by accumulated glutaric acidemia I (GAI) metabolites: possible implications for GAI pathogenesis | Q46310683 | ||
A diet-induced mouse model for glutaric aciduria type I. | Q46919023 | ||
Evidence that glutaric acid reduces glutamate uptake by cerebral cortex of infant rats. | Q46929065 | ||
Disruption of brain redox homeostasis in glutaryl-CoA dehydrogenase deficient mice treated with high dietary lysine supplementation. | Q46935800 | ||
Early modulation of the transcription factor Nrf2 in rodent striatal slices by quinolinic acid, a toxic metabolite of the kynurenine pathway | Q46956458 | ||
GM1 ganglioside prevents seizures, Na+,K+-ATPase activity inhibition and oxidative stress induced by glutaric acid and pentylenetetrazole | Q46975028 | ||
Mitochondrial creatine kinase is a prime target of peroxynitrite-induced modification and inactivation. | Q47921911 | ||
Rapid and irreversible inhibition of creatine kinase by peroxynitrite | Q48025871 | ||
Evidence for a synergistic action of glutaric and 3-hydroxyglutaric acids disturbing rat brain energy metabolism | Q48099180 | ||
Glutaric aciduria: biochemical and morphologic considerations | Q48295638 | ||
Inflammation induces mitochondrial dysfunction and dopaminergic neurodegeneration in the nigrostriatal system | Q48297749 | ||
Induction of oxidative stress by chronic and acute glutaric acid administration to rats | Q48304908 | ||
Evidence that quinolinic acid severely impairs energy metabolism through activation of NMDA receptors in striatum from developing rats. | Q48306465 | ||
Nitric oxide synthase inhibition prevents acute quinolinate-induced striatal neurotoxicity | Q48357956 | ||
P433 | issue | 9 | |
P921 | main subject | knockout mouse | Q1364740 |
Glutaric aciduria | Q5572455 | ||
P304 | page(s) | 6459-6475 | |
P577 | publication date | 2015-11-25 | |
P1433 | published in | Molecular Neurobiology | Q15716645 |
P1476 | title | Oxidative Stress, Disrupted Energy Metabolism, and Altered Signaling Pathways in Glutaryl-CoA Dehydrogenase Knockout Mice: Potential Implications of Quinolinic Acid Toxicity in the Neuropathology of Glutaric Acidemia Type I | |
P478 | volume | 53 |
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Q48092571 | Experimental Evidence that In Vivo Intracerebral Administration of L-2-Hydroxyglutaric Acid to Neonatal Rats Provokes Disruption of Redox Status and Histopathological Abnormalities in the Brain |
Q52092139 | Hypoxanthine Induces Neuroenergetic Impairment and Cell Death in Striatum of Young Adult Wistar Rats. |
Q47299503 | Induction of Neuroinflammatory Response and Histopathological Alterations Caused by Quinolinic Acid Administration in the Striatum of Glutaryl-CoA Dehydrogenase Deficient Mice. |
Q48589275 | Inter-relation between brain-derived neurotrophic factor and antioxidant enzymes in bipolar disorder |
Q93177598 | Mitochondrial energetics is impaired in very long-chain acyl-CoA dehydrogenase deficiency and can be rescued by treatment with mitochondria-targeted electron scavengers |
Q64971283 | Neurological manifestations of organic acidurias. |
Q48006992 | Quantitative profiling of neurotransmitter abnormalities in brain, cerebrospinal fluid, and serum of experimental diabetic encephalopathy male rat. |
Q46302938 | Toxic Synergism Between Quinolinic Acid and Glutaric Acid in Neuronal Cells Is Mediated by Oxidative Stress: Insights to a New Toxic Model. |
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