Hyperforin, the major metabolite of St. John's wort, exhibits pan-coronavirus antiviral activity

圣约翰草的主要代谢产物贯叶金丝桃素具有泛冠状病毒抗病毒活性

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作者:Imelda Raczkiewicz, Céline Rivière #, Peggy Bouquet #, Lowiese Desmarets, Audrey Tarricone, Charline Camuzet, Nathan François, Gabriel Lefèvre, Fabiola Silva Angulo, Cyril Robil, François Trottein, Sevser Sahpaz, Jean Dubuisson, Sandrine Belouzard, Anne Goffard, Karin Séron

Discussion

In conclusion, hyperforin has been identified as a novel pan-coronavirus inhibitor with activity in human primary airway epithelial cells, a preclinical model for coronaviruses. These findings collectively suggest that hyperforin has potential as a candidate antiviral agent against current and future human coronaviruses.

Methods

Antiviral assays were conducted in cell culture with four human coronaviruses: three of high virulence, SARS-CoV-2, SARS-CoV, and MERS-CoV, and one causing mild symptoms, HCoV-229E. The antiviral activity was also evaluated in human primary airway epithelial cells. To ascertain the viral step inhibited by hyperforin, time-of-addition assays were conducted. Subsequently, a combination assay of hyperforin with remdesivir was performed.

Results

The results demonstrated that hyperforin exhibited notable antiviral activity against the four tested human coronaviruses, with IC50 values spanning from 0.24 to 2.55 µM. Kinetic studies indicated that the observed activity occur at a post-entry step, potentially during replication. The antiviral efficacy of hyperforin was additionally corroborated in human primary airway epithelial cells. The results demonstrated a reduction in both intracellular and extracellular SARS-CoV-2 viral RNA, confirming that hyperforin targeted the replication step. Finally, an additive antiviral effect on SARS-CoV-2 was observed when hyperforin was combined with remdesivir.

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