Longoria-GarcÃa, S.; Sánchez-DomÃnguez, C.N.; Sánchez-DomÃnguez, M.; Delgado-Balderas, J.R.; Islas-Cisneros, J.F.; Vidal-Gutiérrez, O.; Gallardo-Blanco, H.L.
Design and Characterization of pMyc/pMax Peptide-Coupled Gold Nanosystems for Targeting Myc in Prostate Cancer Cell Lines. Nanomaterials 2023, 13, 2802.
https://doi.org/10.3390/nano13202802
AMA Style
Longoria-GarcÃa S, Sánchez-DomÃnguez CN, Sánchez-DomÃnguez M, Delgado-Balderas JR, Islas-Cisneros JF, Vidal-Gutiérrez O, Gallardo-Blanco HL.
Design and Characterization of pMyc/pMax Peptide-Coupled Gold Nanosystems for Targeting Myc in Prostate Cancer Cell Lines. Nanomaterials. 2023; 13(20):2802.
https://doi.org/10.3390/nano13202802
Chicago/Turabian Style
Longoria-GarcÃa, Samuel, Celia N. Sánchez-DomÃnguez, Margarita Sánchez-DomÃnguez, Jesús R. Delgado-Balderas, José F. Islas-Cisneros, Oscar Vidal-Gutiérrez, and Hugo L. Gallardo-Blanco.
2023. "Design and Characterization of pMyc/pMax Peptide-Coupled Gold Nanosystems for Targeting Myc in Prostate Cancer Cell Lines" Nanomaterials 13, no. 20: 2802.
https://doi.org/10.3390/nano13202802
APA Style
Longoria-GarcÃa, S., Sánchez-DomÃnguez, C. N., Sánchez-DomÃnguez, M., Delgado-Balderas, J. R., Islas-Cisneros, J. F., Vidal-Gutiérrez, O., & Gallardo-Blanco, H. L.
(2023). Design and Characterization of pMyc/pMax Peptide-Coupled Gold Nanosystems for Targeting Myc in Prostate Cancer Cell Lines. Nanomaterials, 13(20), 2802.
https://doi.org/10.3390/nano13202802