Truchado, D.A.; Rincón, S.; Zurita, L.; Sánchez, F.; Ponz, F.
Isopeptide Bonding In Planta Allows Functionalization of Elongated Flexuous Proteinaceous Viral Nanoparticles, including Non-Viable Constructs by Other Means. Viruses 2023, 15, 375.
https://doi.org/10.3390/v15020375
AMA Style
Truchado DA, Rincón S, Zurita L, Sánchez F, Ponz F.
Isopeptide Bonding In Planta Allows Functionalization of Elongated Flexuous Proteinaceous Viral Nanoparticles, including Non-Viable Constructs by Other Means. Viruses. 2023; 15(2):375.
https://doi.org/10.3390/v15020375
Chicago/Turabian Style
Truchado, Daniel A., Sara Rincón, LucÃa Zurita, Flora Sánchez, and Fernando Ponz.
2023. "Isopeptide Bonding In Planta Allows Functionalization of Elongated Flexuous Proteinaceous Viral Nanoparticles, including Non-Viable Constructs by Other Means" Viruses 15, no. 2: 375.
https://doi.org/10.3390/v15020375
APA Style
Truchado, D. A., Rincón, S., Zurita, L., Sánchez, F., & Ponz, F.
(2023). Isopeptide Bonding In Planta Allows Functionalization of Elongated Flexuous Proteinaceous Viral Nanoparticles, including Non-Viable Constructs by Other Means. Viruses, 15(2), 375.
https://doi.org/10.3390/v15020375