dc.contributorUniversidade Federal de São Paulo (UNIFESP)
dc.contributorHosp Israelita Albert Einstein
dc.contributorCtr Res & Adv Studies
dc.contributorUniv Basel
dc.creatorArida, Ricardo Mario [UNIFESP]
dc.creatorSilva, Sergio Gomes da [UNIFESP]
dc.creatorAlmeida, Alexandre Aparecido de [UNIFESP]
dc.creatorCavlheiro, Esper Abrao [UNIFESP]
dc.creatorZavala-Tecuapetla, Cecilia
dc.creatorBrand, Serge
dc.creatorRocha, Luisa
dc.date.accessioned2016-01-24T14:39:52Z
dc.date.accessioned2022-10-07T20:49:52Z
dc.date.available2016-01-24T14:39:52Z
dc.date.available2022-10-07T20:49:52Z
dc.date.created2016-01-24T14:39:52Z
dc.date.issued2015-01-01
dc.identifierJournal of Neurochemistry. Hoboken: Wiley-Blackwell, v. 132, n. 2, p. 206-217, 2015.
dc.identifier0022-3042
dc.identifierhttp://repositorio.unifesp.br/handle/11600/38611
dc.identifier10.1111/jnc.12976
dc.identifierWOS:000348712000006
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/4023553
dc.description.abstractPhysical exercise stimulates the release of endogenous opioid peptides supposed to be responsible for changes in mood, anxiety, and performance. Exercise alters sensitivity to these effects that modify the efficacy at the opioid receptor. Although there is evidence that relates exercise to neuropeptide expression in the brain, the effects of exercise on opioid receptor binding and signal transduction mechanisms downstream of these receptors have not been explored. Here, we characterized the binding and G protein activation of mu opioid receptor, kappa opioid receptor or delta opioid receptor in several brain regions following acute (7 days) and chronic (30 days) exercise. As regards short-(acute) or longterm effects (chronic) of exercise, overall, higher opioid receptor binding was observed in acute-exercise animals and the opposite was found in the chronic-exercise animals. the binding of [S-35]GTP gamma S under basal conditions (absence of agonists) was elevated in sensorimotor cortex and hippocampus, an effect more evident after chronic exercise. Divergence of findings was observed for mu opioid receptor, kappa opioid receptor, and delta opioid receptor receptor activation in our study. Our results support existing evidence of opioid receptor binding and G protein activation occurring differentially in brain regions in response to diverse exercise stimuli.
dc.languageeng
dc.publisherWiley-Blackwell
dc.relationJournal of Neurochemistry
dc.rightshttp://olabout.wiley.com/WileyCDA/Section/id-406071.html
dc.rightsAcesso restrito
dc.subjectbrain
dc.subjectDOR
dc.subjectexercise
dc.subjectKOR
dc.subjectMOR
dc.subjectopioid receptor
dc.titleDifferential effects of exercise on brain opioid receptor binding and activation in rats
dc.typeArtigo


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