Kalasariya, H.S.; Patel, N.B.; Gacem, A.; Alsufyani, T.; Reece, L.M.; Yadav, V.K.; Awwad, N.S.; Ibrahium, H.A.; Ahn, Y.; Yadav, K.K.;
et al. Marine Alga Ulva fasciata-Derived Molecules for the Potential Treatment of SARS-CoV-2: An In Silico Approach. Mar. Drugs 2022, 20, 586.
https://doi.org/10.3390/md20090586
AMA Style
Kalasariya HS, Patel NB, Gacem A, Alsufyani T, Reece LM, Yadav VK, Awwad NS, Ibrahium HA, Ahn Y, Yadav KK,
et al. Marine Alga Ulva fasciata-Derived Molecules for the Potential Treatment of SARS-CoV-2: An In Silico Approach. Marine Drugs. 2022; 20(9):586.
https://doi.org/10.3390/md20090586
Chicago/Turabian Style
Kalasariya, Haresh S., Nikunj B. Patel, Amel Gacem, Taghreed Alsufyani, Lisa M. Reece, Virendra Kumar Yadav, Nasser S. Awwad, Hala A. Ibrahium, Yongtae Ahn, Krishna Kumar Yadav,
and et al. 2022. "Marine Alga Ulva fasciata-Derived Molecules for the Potential Treatment of SARS-CoV-2: An In Silico Approach" Marine Drugs 20, no. 9: 586.
https://doi.org/10.3390/md20090586
APA Style
Kalasariya, H. S., Patel, N. B., Gacem, A., Alsufyani, T., Reece, L. M., Yadav, V. K., Awwad, N. S., Ibrahium, H. A., Ahn, Y., Yadav, K. K., & Jeon, B.-H.
(2022). Marine Alga Ulva fasciata-Derived Molecules for the Potential Treatment of SARS-CoV-2: An In Silico Approach. Marine Drugs, 20(9), 586.
https://doi.org/10.3390/md20090586