Hu, R.; Guan, L.; Li, S.; Liu, C.; Huang, G.; Lou, F.; Jiang, H.; Wang, S.; Pang, Z.; Wang, Y.;
et al. HSBDF-Derived Bioactive Components Broadly Inhibit Enteroviruses by Targeting 3C Protease and Attenuating Inflammatory Responses. Biology 2025, 14, 1615.
https://doi.org/10.3390/biology14111615
AMA Style
Hu R, Guan L, Li S, Liu C, Huang G, Lou F, Jiang H, Wang S, Pang Z, Wang Y,
et al. HSBDF-Derived Bioactive Components Broadly Inhibit Enteroviruses by Targeting 3C Protease and Attenuating Inflammatory Responses. Biology. 2025; 14(11):1615.
https://doi.org/10.3390/biology14111615
Chicago/Turabian Style
Hu, Ruolan, Lin Guan, Siyue Li, Chunlin Liu, Gang Huang, Fuxing Lou, Hongzheng Jiang, Shuqi Wang, Zehan Pang, Yaxin Wang,
and et al. 2025. "HSBDF-Derived Bioactive Components Broadly Inhibit Enteroviruses by Targeting 3C Protease and Attenuating Inflammatory Responses" Biology 14, no. 11: 1615.
https://doi.org/10.3390/biology14111615
APA Style
Hu, R., Guan, L., Li, S., Liu, C., Huang, G., Lou, F., Jiang, H., Wang, S., Pang, Z., Wang, Y., Li, Z., Zhang, H., Tong, Y., Fan, H., & Hong, B.
(2025). HSBDF-Derived Bioactive Components Broadly Inhibit Enteroviruses by Targeting 3C Protease and Attenuating Inflammatory Responses. Biology, 14(11), 1615.
https://doi.org/10.3390/biology14111615