The appearance of new respiratory virus infections in humans with epidemic or pandemic potential has underscored the urgent need for effective broad-spectrum antivirals (BSAs). Bioactive compounds derived from plants may provide a natural source of new BSA candidates. Here, we investigated the novel phytocomplex formulation SP4⢠as a candidate direct-acting BSA against major current human respiratory viruses, including coronaviruses and influenza viruses. SP4⢠inhibited the in vitro replication of SARS-CoV-2, hCoV-OC43, hCoV-229E, Influenza A and B viruses, and respiratory syncytial virus in the low-microgram range. Using hCoV-OC43 as a representative respiratory virus, most of the antiviral activity of SP4⢠was observed to stem primarily from its dimeric A-type proanthocyanidin (PAC-A) component. Further investigations of the mechanistic mode of action showed SP4⢠and its PAC-A-rich fraction to prevent hCoV-OC43 from attaching to target cells and exert virucidal activity. This occurred through their interaction with the spike protein of hCoV-OC43 and SARS-CoV-2, thereby interfering with spike functions and leading to the loss of virion infectivity. Overall, these findings support the further development of SP4⢠as a candidate BSA of a natural origin for the prevention of human respiratory virus infections.
The Novel A-Type Proanthocyanidin-Rich Phytocomplex SP4⢠Acts as a Broad-Spectrum Antiviral Agent against Human Respiratory Viruses.
新型 A 型原花青素丰富的植物复合物 SP4™ 可作为广谱抗病毒剂对抗人类呼吸道病毒
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作者:Sibille Giulia, Mannino Giuseppe, Frasson Ilaria, Pavan Marta, Luganini Anna, Salata Cristiano, Maffei Massimo E, Gribaudo Giorgio
| 期刊: | International Journal of Molecular Sciences | 影响因子: | 4.900 |
| 时间: | 2024 | 起止号: | 2024 Jul 5; 25(13):7370 |
| doi: | 10.3390/ijms25137370 | 种属: | Human、Viral |
| 研究方向: | 其它 | ||
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