Paulo Alexandre de Oliveira
Overview
Explore the profile of Paulo Alexandre de Oliveira including associated specialties, affiliations and a list of published articles.
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Articles
12
Citations
136
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Recent Articles
1.
Remor A, da Silva R, de Matos F, Glaser V, de Paula Martins R, Ghisoni K, et al.
Mol Neurobiol
. 2018 Jun;
56(3):1539-1557.
PMID: 29948953
Chronic metabolic alterations may represent a risk factor for the development of cognitive impairment, dementia, or neurodegenerative diseases. Hyperglycemia and obesity are known to imprint epigenetic markers that compromise the...
2.
Latini A, da Silva L, da Luz Scheffer D, Staats Pires A, de Matos F, Nesi R, et al.
Mol Genet Metab
. 2018 Jun;
125(1-2):104-111.
PMID: 29935801
Tetrahydrobiopterin (BH4) is synthesized by the combined action of three metabolic pathways, namely de novo synthesis, recycling, and salvage pathways. The best-known function of BH4 is its mandatory action as...
3.
Cattani D, Cesconetto P, Tavares M, Parisotto E, de Oliveira P, Rieg C, et al.
Toxicology
. 2017 Jun;
387:67-80.
PMID: 28627408
We have previously demonstrated that maternal exposure to glyphosate-based herbicide (GBH) leads to glutamate excitotoxicity in 15-day-old rat hippocampus. The present study was conducted in order to investigate the effects...
4.
de Oliveira P, Ben J, Matheus F, Schwarzbold M, Moreira E, Rial D, et al.
Brain Res
. 2017 Mar;
1663:78-86.
PMID: 28288867
Moderate traumatic brain injury (TBI) might increase the vulnerability to neuronal neurodegeneration, but the basis of such selective neuronal susceptibility has remained elusive. In keeping with the disruption of the...
5.
Ghisoni K, Aguiar Jr A, de Oliveira P, Matheus F, Gabach L, Perez M, et al.
Brain Behav Immun
. 2016 Feb;
56:156-64.
PMID: 26916218
Neopterin is found at increased levels in biological fluids from individuals with inflammatory disorders. The biological role of this pteridine remains undefined; however, due to its capacity to increase hemeoxygenase-1...
6.
Loss C, Binder L, Muccini E, Martins W, de Oliveira P, Vandresen-Filho S, et al.
Neurobiol Learn Mem
. 2015 Aug;
125:63-72.
PMID: 26247375
Environmental enrichment (EE) is a non-pharmacological manipulation that promotes diverse forms of benefits in the central nervous system of captive animals. It is thought that EE influences animal behavior in...
7.
Ben J, de Oliveira P, Goncalves F, Peres T, Matheus F, Hoeller A, et al.
Neurochem Res
. 2014 Oct;
39(12):2492-500.
PMID: 25316496
The epileptogenesis process involves cell signaling events associated with neuroplasticity. The mitogen-activated protein kinases (MAPKs) integrate signals originating from a variety of extracellular stimuli and may regulate cell differentiation, survival,...
8.
Schmitz A, de Oliveira P, de Souza L, da Silva D, Danielski S, Santos D, et al.
Biol Trace Elem Res
. 2014 Apr;
158(3):399-409.
PMID: 24723215
Manganese (Mn) exposure is related to industrial activities, where absorption by inhalation has high relevance. Manganism, a syndrome caused as a result of excessive accumulation of Mn in the central...
9.
de Paula Martins R, Glaser V, da Luz Scheffer D, de Paula Ferreira P, Duval Wannmacher C, Farina M, et al.
J Bioenerg Biomembr
. 2013 Mar;
45(5):449-57.
PMID: 23471523
Interactions of chemicals with cerebral cellular systems are often accompanied by similar changes involving components in non-neural tissues. On this basis, indirect strategies have been developed to investigate neural cell...
10.
de Oliveira P, Lino F, Cappelari S, Brum L, Picada J, Pereira P
Exp Brain Res
. 2008 Feb;
187(1):161-6.
PMID: 18251015
Gamma-decanolactone is a monoterpene compound, and its psychopharmacological evaluation in mice revealed that it has a dose-dependent effect on the central nervous system, with hypnotic, anticonvulsant, and hypothermic activity. The...