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Biomed Pharmacother ; 98: 609-618, 2018 Feb.
Article in English | MEDLINE | ID: mdl-29289835

ABSTRACT

Inflammation is a key component of many clinical conditions that affect the temporomandibular joint (TMJ) and Moringa oleifera Lam. has been used to treat inflammatory diseases. Here, we evaluated the toxicological effects on mice of a naturally-occurring isothiocyanate from M. oleifera and its seven analogue molecules. Further, the anti-nociceptive and anti-inflammatory effects on a rat model of TMJ inflammatory hypernociception were assessed. The systemic toxicological profile was determined in mice over a 14-day period: MC-1 1 µg/kg; MC-D1 1 µg/kg, MC-D3 100 µg/kg, MC-D6 1 µg/kg, MC-D7 1 µg/kg, MC-D8 1 µg/kg, MC-D9 10 µg/kg, and MC-H 1 µg/kg. The safest molecules were assayed for anti-nociceptive efficacy in the formalin (1.5%, 50 µL) and serotonin (255 mg) induced TMJ inflammatory hypernociception tests. The anti-inflammatory effect was evaluated through the vascular permeability assay using Evans blue. Further, the rota-rod test evaluated any motor impairment. Among the tested molecules, MC-D7, MC-D9, and MC-H were not toxic at the survival rate test, biochemical, and hystological analysis. They reduced the formalin-induced TMJ inflammatory hypernociception, but only MC-H decreased the serotonin-induced TMJ inflammation, suggesting an adrenergic receptor-dependent effect. They diminished the plasmatic extravasation, showing anti-inflammatory activity. At the rota-rod test, no difference was observed in comparison with control groups, reinforcing the hypothesis of anti-nociceptive effetc without motor impairment in animals. The analogues MC-D7, MC-D9, and MC-H were safe at the tested doses and efficient in reducing the formalin-induced TMJ hypernociception in rats. Our next steps include determining their mechanisms of anti-nociceptive action.


Subject(s)
Analgesics/pharmacology , Anti-Inflammatory Agents/pharmacology , Inflammation/drug therapy , Isothiocyanates/chemistry , Moringa oleifera/adverse effects , Moringa oleifera/chemistry , Pain/drug therapy , Analgesics/adverse effects , Analgesics/chemistry , Animals , Anti-Inflammatory Agents/adverse effects , Anti-Inflammatory Agents/chemistry , Disease Models, Animal , Female , Inflammation/metabolism , Male , Mice , Pain/metabolism , Plant Extracts/adverse effects , Plant Extracts/chemistry , Plant Extracts/pharmacology , Rats , Rats, Wistar , Temporomandibular Joint/drug effects
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