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The C-terminus of murine S100A9 protein inhibits hyperalgesia induced by the agonist peptide of protease-activated receptor 2 (PAR2)
Dale, CS; Cenac, N; Britto, LRG; Juliano, MA; Juliano, L; Vergnolle, N; Giorgi, R.
Afiliação
  • Dale, CS; Instituto Butantan. São Paulo. BR
  • Cenac, N; s.af
  • Britto, LRG; s.af
  • Juliano, MA; s.af
  • Juliano, L; s.af
  • Vergnolle, N; s.af
  • Giorgi, R; Instituto Butantan. São Paulo. BR
Br. j. pharmacol ; Br. j. pharmacol (Online);149(4): 374-384, 2006.
Article em En | SES-SP, SESSP-IBPROD, SES-SP, SESSP-IBACERVO | ID: biblio-1061581
Biblioteca responsável: BR78.1
Localização: BR78.1
ABSTRACT
Background and

purpose:

S100A9 protein induces anti-nociception in rodents, in different experimental models of inflammatory pain. Herein, we investigated the effects of a fragment of the C-terminus of S100A9 (mS100A9p), on the hyperalgesia induced by serine proteases, through the activation of protease-activated receptor-2 (PAR2). Experimental

approach:

Mechanical and thermal hyperalgesia induced by PAR2 agonists (SLIGRL-NH2 and trypsin) was measured in rats submitted to the paw pressure or plantar tests, and Egr-1 expression was determined by immunohistochemistry in rat spinal cord dorsal horn. Calcium flux in human embryonic kidney cells (HEK), which naturally express PAR2, in Kirsten virus-transformed kidney cells, transfected (KNRK-PAR2) or not (KNRK) with PAR2, and in mouse dorsal root ganglia neurons (DRG) was measured by fluorimetric methods. Key

results:

mS100A9p inhibited mechanical hyperalgesia induced by trypsin, without modifying its enzymatic activity. Mechanical and thermal hyperalgesia induced by SLIGRL-NH2 were inhibited by mS100A9p. SLIGRL-NH2 enhanced Egr-1 expression, a marker of nociceptor activation, and this effect was inhibited by concomitant treatment with mS100A9p. mS100A9p inhibited calcium mobilization in DRG neurons in response to the PAR2 agonists trypsin and SLIGRL-NH2, but also in response to capsaicin and bradykinin, suggesting a direct effect of mS100A9 on sensory neurons. No effect on the calcium flux induced by trypsin or SLIGRL in HEK cells or KNRK-PAR2 cells was observed. Conclusions and implications These data demonstrate that mS100A9p interferes with mechanisms involved in nociception and hyperalgesia and modulates, possibly directly on sensory neurons, the PAR2-induced nociceptive signal.
Assuntos
Texto completo: 1 Coleções: 06-national / BR Base de dados: SES-SP / SESSP-IBACERVO / SESSP-IBPROD Assunto principal: Inflamação Limite: Humans Idioma: En Revista: Br. j. pharmacol / Br. j. pharmacol (Online) Ano de publicação: 2006 Tipo de documento: Article
Texto completo: 1 Coleções: 06-national / BR Base de dados: SES-SP / SESSP-IBACERVO / SESSP-IBPROD Assunto principal: Inflamação Limite: Humans Idioma: En Revista: Br. j. pharmacol / Br. j. pharmacol (Online) Ano de publicação: 2006 Tipo de documento: Article