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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.
Chlorophytum arundinaceum
Plante tubéreuse sauvage d'Inde apparentée au Safed Musli, utilisée en médecine ayurvédique comme tonique et aphrodisiaque.
Chlorophytum arundinaceum, a wild tuberous herb related to Safed Musli, is used in Ayurvedic medicine as a tonic and aphrodisiac. Modern uses include adaptogenic support, male reproductive health, and anti-inflammatory effects. Key active compounds include saponins, polysaccharides, stigmasterol, and alkaloids.
The saponins and polysaccharides in Chlorophytum arundinaceum are believed to modulate the hypothalamic-pituitary-gonadal axis, increasing luteinizing hormone and testosterone levels. Stigmasterol may act as a precursor to steroid hormones, while alkaloids exhibit anti-inflammatory activity via COX-2 inhibition. The adaptogenic effects are likely mediated through HPA axis regulation and antioxidant pathways.
Plante tubéreuse sauvage d'Inde apparentée au Safed Musli, utilisée en médecine ayurvédique comme tonique et aphrodisiaque.
Chlorophytum arundinaceum, a wild tuberous herb related to Safed Musli, is used in Ayurvedic medicine as a tonic and aphrodisiac. Modern uses include adaptogenic support, male reproductive health, and anti-inflammatory effects. Key active compounds include saponins, polysaccharides, stigmasterol, and alkaloids.
The saponins and polysaccharides in Chlorophytum arundinaceum are believed to modulate the hypothalamic-pituitary-gonadal axis, increasing luteinizing hormone and testosterone levels. Stigmasterol may act as a precursor to steroid hormones, while alkaloids exhibit anti-inflammatory activity via COX-2 inhibition. The adaptogenic effects are likely mediated through HPA axis regulation and antioxidant pathways.