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1.
Mol Cell Biochem ; 428(1-2): 67-77, 2017 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-28070834

RESUMO

Resveratrol is a dietary polyphenol that displays neuroprotective properties in several in vivo and in vitro experimental models, by modulating oxidative and inflammatory responses. Glutathione (GSH) is a key antioxidant in the central nervous system (CNS) that modulates several cellular processes, and its depletion is associated with oxidative stress and inflammation. Therefore, this study sought to investigate the protective effects of resveratrol against GSH depletion pharmacologically induced by buthionine sulfoximine (BSO) in C6 astroglial cells, as well as its underlying cellular mechanisms. BSO exposure resulted in several detrimental effects, decreasing glutamate-cysteine ligase (GCL) activity, cystine uptake, GSH intracellular content and the activities of the antioxidant enzymes glutathione peroxidase (GPx) and glutathione reductase (GR). Moreover, BSO increased reactive oxygen/nitrogen species (ROS/RNS) levels and pro-inflammatory cytokine release. Resveratrol prevented these effects by protecting astroglial cells against BSO-induced cytotoxicity, by modulating oxidative and inflammatory responses. Additionally, we observed that pharmacological inhibition of heme oxygenase 1 (HO-1), an essential cellular defense against oxidative and inflammatory injuries, abolished all the protective effects of resveratrol. These observations suggest HO-1 pathway as a cellular effector in the mechanism by which resveratrol protects astroglial cells against GSH depletion, a condition that may be associated to neurodegenerative diseases.


Assuntos
Astrócitos/enzimologia , Butionina Sulfoximina/efeitos adversos , Glutationa/metabolismo , Heme Oxigenase-1/metabolismo , Estilbenos/farmacologia , Animais , Astrócitos/efeitos dos fármacos , Astrócitos/imunologia , Linhagem Celular , Sobrevivência Celular/efeitos dos fármacos , Citocinas/metabolismo , Masculino , Estresse Oxidativo/efeitos dos fármacos , Ratos , Resveratrol , Transdução de Sinais/efeitos dos fármacos
2.
Neurochem Res ; 41(7): 1578-86, 2016 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-26915106

RESUMO

Astrocytes are multitasking players in brain complexity, possessing several receptors and mechanisms to detect, participate and modulate neuronal communication. The functionality of astrocytes has been mainly unraveled through the study of primary astrocyte cultures, and recently our research group characterized a model of astrocyte cultures derived from adult Wistar rats. We, herein, aim to characterize other basal functions of these cells to explore the potential of this model for studying the adult brain. To characterize the astrocytic phenotype, we determined the presence of GFAP, GLAST and GLT 1 proteins in cells by immunofluorescence. Next, we determined the concentrations of thirteen amino acids, ATP, ADP, adenosine and calcium in astrocyte cultures, as well as the activities of Na(+)/K(+)-ATPase and acetylcholine esterase. Furthermore, we assessed the presence of the GABA transporter 1 (GAT 1) and cannabinoid receptor 1 (CB 1) in the astrocytes. Cells demonstrated the presence of glutamine, consistent with their role in the glutamate-glutamine cycle, as well as glutamate and D-serine, amino acids classically known to act as gliotransmitters. ATP was produced and released by the cells and ADP was consumed. Calcium levels were in agreement with those reported in the literature, as were the enzymatic activities measured. The presence of GAT 1 was detected, but the presence of CB 1 was not, suggesting a decreased neuroprotective capacity in adult astrocytes under in vitro conditions. Taken together, our results show cellular functionality regarding the astrocytic role in gliotransmission and neurotransmitter management since they are able to produce and release gliotransmitters and to modulate the cholinergic and GABAergic systems.


Assuntos
Acetilcolinesterase/análise , Aminoácidos/análise , Astrócitos/química , Córtex Cerebral/química , ATPase Trocadora de Sódio-Potássio/análise , Acetilcolinesterase/metabolismo , Fatores Etários , Aminoácidos/metabolismo , Animais , Astrócitos/metabolismo , Células Cultivadas , Córtex Cerebral/metabolismo , Cromatografia Líquida de Alta Pressão/métodos , Proteínas da Membrana Plasmática de Transporte de GABA/análise , Proteínas da Membrana Plasmática de Transporte de GABA/metabolismo , Masculino , Ratos , Ratos Wistar , ATPase Trocadora de Sódio-Potássio/metabolismo
3.
Neurotox Res ; 29(2): 314-24, 2016 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-26646155

RESUMO

Astrocytes are important brain targets of ammonia, a neurotoxin implicated in the development of hepatic encephalopathy. During hyperammonemia, the pivotal role of astrocytes in brain function and homeostasis is impaired. These cells are abundantly interconnected by gap junctions (GJ), which are intercellular channels that allow the exchange of signaling molecules and metabolites. This communication may also increase cellular vulnerability during injuries, while GJ uncoupling could limit the extension of a lesion. Therefore, the current study was performed to investigate whether astrocyte coupling through GJ contributes to ammonia-induced cytotoxicity. We found that carbenoxolone (CBX), an effective GJ blocker, prevented the following effects induced by ammonia in astrocyte primary cultures: (1) decrease in cell viability and membrane integrity; (2) increase in reactive oxygen species production; (3) decrease in GSH intracellular levels; (4) GS activity; (5) pro-inflammatory cytokine release. On the other hand, CBX had no effect on C6 astroglial cells, which are poorly coupled via GJ. To our knowledge, this study provides the first evidence that GJ play a role in ammonia-induced cytotoxicity. Although more studies in vivo are required to confirm our hypothesis, our data suggest that GJ communication between astrocytes may transmit damage signals and excitotoxic components from unhealthy to normal cells, thereby contributing to the propagation of the neurotoxicity of ammonia.


Assuntos
Amônia/toxicidade , Astrócitos/efeitos dos fármacos , Astrócitos/metabolismo , Junções Comunicantes/efeitos dos fármacos , Junções Comunicantes/metabolismo , Animais , Carbenoxolona/farmacologia , Membrana Celular/efeitos dos fármacos , Sobrevivência Celular/efeitos dos fármacos , Células Cultivadas , Citocinas/metabolismo , Glutationa/metabolismo , Mediadores da Inflamação/metabolismo , Ratos Wistar , Espécies Reativas de Oxigênio/metabolismo
4.
Toxicol In Vitro ; 29(7): 1350-7, 2015 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-26043815

RESUMO

Hyperammonemia induces significant changes in the central nervous system (CNS) in direct association with astroglial functions, such as oxidative damage, glutamatergic excitotoxicity, and impaired glutamine synthetase (GS) activity and pro-inflammatory cytokine release. Classically, lipoic acid (LA) and N-acetylcysteine (NAC) exhibit antioxidant and anti-inflammatory activities by increasing glutathione (GSH) biosynthesis and decreasing pro-inflammatory mediator levels in glial cells. Thus, we evaluated the protective effects of LA and NAC against ammonia cytotoxicity in C6 astroglial cells. Ammonia decreased GSH levels and increased cytokine release and NFκB transcriptional activation. LA and NAC prevented these effects by the modulation of ERK and HO1 pathways. Taken together, these observations show that LA and NAC prevent the ammonia-induced inflammatory response.


Assuntos
Acetilcisteína/farmacologia , Anti-Inflamatórios/farmacologia , Antioxidantes/farmacologia , Astrócitos/efeitos dos fármacos , Ácido Tióctico/farmacologia , Amônia/toxicidade , Animais , Astrócitos/metabolismo , Linhagem Celular , Citocinas/metabolismo , MAP Quinases Reguladas por Sinal Extracelular/metabolismo , Glutationa/metabolismo , Heme Oxigenase (Desciclizante)/metabolismo , Nitritos/metabolismo , Ratos , Subunidade beta da Proteína Ligante de Cálcio S100/metabolismo , Transdução de Sinais/efeitos dos fármacos
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