Mechanisms involved in antinociception induced by a polysulfated fraction from seaweed Gracilaria cornea in the temporomandibular joint of rats
•A polysulfated fraction isolated from red seaweed Gracilaria cornea (Gc-FI) presents antinociceptive effect in TMJ of Rats.•The antinociceptive effect of Gc-FI is mediated by μ/δ/κ-opioid receptors and activation NO/cGMP/PKG/K+ATP channel pathway.•The present study provides evidence that the antino...
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Veröffentlicht in: | International journal of biological macromolecules 2017-04, Vol.97, p.76-84 |
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Sprache: | eng |
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Zusammenfassung: | •A polysulfated fraction isolated from red seaweed Gracilaria cornea (Gc-FI) presents antinociceptive effect in TMJ of Rats.•The antinociceptive effect of Gc-FI is mediated by μ/δ/κ-opioid receptors and activation NO/cGMP/PKG/K+ATP channel pathway.•The present study provides evidence that the antinociceptive effect of Gc-FI requires the integrity of the HO-1 pathway.
Temporomandibular disorder is a common clinical condition involving pain in the temporomandibular joint (TMJ) region. This study assessed the antinociceptive effects of a polysulfated fraction from the red seaweed Gracilaria cornea (Gc-FI) on the formalin-induced TMJ hypernociception in rats and investigated the involvement of different mechanisms. Male Wistar rats were pretreated with injection (sc) of saline or Gc-FI 1h before intra- TMJ injection of formalin to evaluate the nociception. The results showed that pretreatment with Gc-FI significantly reduced formalin-induced nociceptive behavior. Moreover, the antinociceptive effect of the Gc-FI was blocked by naloxone (a non-selective opioid antagonist), suggesting the involvement of opioids selective receptors. Thus, the pretreatment with selective opioids receptors antagonists, reversed the antinociceptive effect of the Gc-FI in the TMJ. The Gc-FI antinociceptive effect depends on the nitric oxide/cyclic GMP/protein kinase G/ATP-sensitive potassium channel (NO/cGMP/PKG/K+ATP) pathway because it was prevented by pretreatment with inhibitors of nitric oxide synthase, guanylate cyclase enzyme, PKG and a K+ATP blocker. In addition, after inhibition with a specific heme oxygenase-1 (HO-1) inhibitor, the antinociceptive effect of the Gc-FI was not observed. Collectively, these data suggest that the antinociceptive effect induced by Gc-FI is mediated by μ/δ/κ-opioid receptors and by activation NO/cGMP/PKG/K+ATP channel pathway, besides of HO-1. |
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ISSN: | 0141-8130 1879-0003 |
DOI: | 10.1016/j.ijbiomac.2017.01.017 |