Palmitate increases superoxide production through mitochondrial electron transport chain and NADPH oxidase activity in skeletal muscle cells


Autoria(s): LAMBERTUCCI, Rafael Herling; HIRABARA, Sandro Massao; SILVEIRA, Leonardo Dos Reis; LEVADA-PIRES, Adriana Cristina; Curi, Rui; PITHON-CURI, Tania Cristina
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

20/10/2012

20/10/2012

2008

Resumo

The effect of unbound palmitic acid (PA) at plasma physiological concentration range on reactive oxygen species (ROS) production by cultured rat skeletal muscle cells was investigated. The participation of the main sites of ROS production was also examined. Production of ROS was evaluated by cytochrome c reduction and dihydroethidium oxidation assays. PA increased ROS production after 1 h incubation. A xanthine oxidase inhibitor did not change PA-induced ROS production. However, the treatment with a mitochondrial uncoupler and mitochondrial complex III inhibitor decreased superoxide production induced by PA. The importance of mitochondria was also evaluated in 1 h incubated rat soleus and extensor digitorum longus (EDL) muscles. Soleus muscle, which has a greater number of mitochondria than EDL, showed a higher superoxide production induced by PA. These results indicate that mitochondrial electron transport chain is an important contributor for superoxide formation induced by PA in skeletal muscle. Results obtained with etomoxir and bromopalmitate treatment indicate that PA has to be oxidized to raise ROS production. A partial inhibition of superoxide formation induced by PA was observed by treatment with diphenylene iodonium, an inhibitor of NADPH oxidase. The participation of this enzyme complex was confirmed through an increase of p47(phox) phosphorylation after treatment with PA.

Identificador

JOURNAL OF CELLULAR PHYSIOLOGY, v.216, n.3, p.796-804, 2008

0021-9541

http://producao.usp.br/handle/BDPI/27942

10.1002/jcp.21463

http://dx.doi.org/10.1002/jcp.21463

Idioma(s)

eng

Publicador

WILEY-LISS

Relação

Journal of Cellular Physiology

Direitos

restrictedAccess

Copyright WILEY-LISS

Palavras-Chave #FREE FATTY-ACIDS #UNCOUPLING PROTEIN-3 #XANTHINE-OXIDASE #OXIDATIVE STRESS #RAT #NEUTROPHILS #METABOLISM #EXERCISE #ROS #GLUCOSE #Cell Biology #Physiology
Tipo

article

original article

publishedVersion