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Ce produit n'est pas destiné à diagnostiquer, traiter, guérir ou prévenir toute maladie. Ces déclarations n'ont pas été évaluées par la Food and Drug Administration.
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Ces informations sont fournies à titre éducatif uniquement et ne remplacent pas un avis médical professionnel, un diagnostic ou un traitement. Consultez toujours votre professionnel de santé avant d'utiliser des plantes, surtout si vous êtes enceinte, allaitez, prenez des médicaments ou avez une condition médicale.
Melia dubia
A fast-growing Asian tree used in folk medicine for pain, inflammation, and respiratory conditions.
Melia dubia is a fast-growing Asian tree traditionally used for pain, inflammation, and respiratory conditions. Its primary active compounds include limonoids, tannins, and flavonoids, which contribute to its analgesic and anti-inflammatory properties. Evidence level C supports its modern use in anti-inflammatory and analgesic research.
The limonoids in Melia dubia inhibit pro-inflammatory cytokines and cyclooxygenase (COX) enzymes, reducing prostaglandin synthesis. Flavonoids provide antioxidant effects and modulate the NF-κB pathway, while tannins contribute to astringent and anti-inflammatory actions. These mechanisms collectively produce analgesic and anti-inflammatory effects, with potential bronchodilatory activity for respiratory conditions.
A fast-growing Asian tree used in folk medicine for pain, inflammation, and respiratory conditions.
Melia dubia is a fast-growing Asian tree traditionally used for pain, inflammation, and respiratory conditions. Its primary active compounds include limonoids, tannins, and flavonoids, which contribute to its analgesic and anti-inflammatory properties. Evidence level C supports its modern use in anti-inflammatory and analgesic research.
The limonoids in Melia dubia inhibit pro-inflammatory cytokines and cyclooxygenase (COX) enzymes, reducing prostaglandin synthesis. Flavonoids provide antioxidant effects and modulate the NF-κB pathway, while tannins contribute to astringent and anti-inflammatory actions. These mechanisms collectively produce analgesic and anti-inflammatory effects, with potential bronchodilatory activity for respiratory conditions.