Reduction of the Double Bond of 6‑Arylvinyl-1,2,4-trioxanes Leads to a Remarkable Increase in Their Antimalarial Activity against Multidrug-Resistant Plasmodium yoelii nigeriensis in a Swiss Mice Model

Novel 6-arylethyl-1,2,4-trioxanes6a–i and 7a–i are easily accessible in one step from the diimide reduction of 6-arylvinyl-1,2,4-trioxanes 5a–i. All of these new trioxanes were assessed for their oral antimalarial activity against multidrug-resistant Plasmodium yoelii nigeriensis in a Swiss mice mod...

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Veröffentlicht in:ACS omega 2021-11, Vol.6 (45), p.30790-30799
Hauptverfasser: Hassam, Mohammad, Singh, Ajit Shankar, Yadav, Dinesh Kumar, Singh, Chandan, Puri, Sunil K, Verma, Ved Prakash
Format: Artikel
Sprache:eng
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Zusammenfassung:Novel 6-arylethyl-1,2,4-trioxanes6a–i and 7a–i are easily accessible in one step from the diimide reduction of 6-arylvinyl-1,2,4-trioxanes 5a–i. All of these new trioxanes were assessed for their oral antimalarial activity against multidrug-resistant Plasmodium yoelii nigeriensis in a Swiss mice model. Most of the saturated trioxanes 6c, 6f, 6g, 6h, and 6i, the active compounds of the series, provided 100% protection to the malaria-infected mice at a dose of 24 mg/kg × 4 days. Further, trioxane 6i, the most active compound of the series, also showed 100% protection even at a dose of 12 mg/kg × 4 days and 20% protection at a dose of 6 mg/kg × 4 days. In this model, β-arteether provided 100% protection at a dose of 48 mg/kg × 4 days and only 20% protection at a dose of 24 mg/kg × 4 days via the oral route, which was found to exhibit 4-fold antimalarial activity compared with the currently used drug β-arteether.
ISSN:2470-1343
2470-1343
DOI:10.1021/acsomega.1c05041