Fiche d'information compilée à partir de PubMed
Cette fiche a été compilée à partir de résumés PubMed (NIH) avec l'assistance d'une IA. Chaque affirmation factuelle est citée par un article PubMed réel (voir la liste des sources). Elle n'a pas encore été révisée par un humain — confirmez auprès d'un professionnel de santé avant utilisation.
Compilé à partir de 30 articles PubMed · modèle : gemma4:31b
Résumé
Contexte
Usages traditionnels
Composés actifs
Mécanisme d'action
Preuves cliniques
Buddleja globosa exhibits antimicrobial and regenerative properties; when incorporated into polymeric scaffolds, it shows efficacy against dual-species biofilms of Pseudomonas aeruginosa and Staphylococcus aureus in murine models [PMID:42196221, PMID:40509314].
Methanol extracts demonstrated antinociceptive activity in tail flick, formalin, and writhing models [PMID:18639621].
Extracts (0.05-1 mg/mL) acted as potent inhibitors of platelet aggregation in response to collagen, convulsion, and ADP [PMID:29321991].
Methanolic extract and an enriched iridoid fraction (6-O-methylcatalpol) showed trypanocidal activity against T. cruzi trypomastigotes [PMID:40941913].
Stem bark lipophilic extracts showed antifungal activity against three dermatophytic fungal species [PMID:11000021].
Sécurité et effets indésirables
Synthèse des preuves
Sources PubMed
- 1.PMID: 36986757 (2023) — Anti-Inflammatory Chilean Endemic Plants. · Pharmaceutics
- 2.PMID: 28386629 (2017) — An In Vitro Study of the Antioxidant and Antihemolytic Properties of Buddleja globosa (Matico). · The Journal of membrane biology
- 3.PMID: 29321991 (2018) — Buddleja globosa (matico) prevents collagen-induced platelet activation by decreasing phospholipase C-gamma 2 and protein kinase C phosphorylation signaling. · Journal of traditional and complementary medicine
- 4.PMID: 18639621 (2008) — Antinociceptive activity of Buddleja globosa (matico) in several models of pain. · Journal of ethnopharmacology
- 5.PMID: 42196221 (2026) — Optimization of Buddleja globosa-Loaded Polymeric Scaffolds for the Treatment of Biofilm-Infected Wounds.