Zambom, C.R.; Silva, G.D.B.d.; Fonseca, F.H.d.; Zolin, G.V.S.; Melo Faceto Portella, M.d.; Marin, L.M.; Crusca, E.; Krol, E.S.; Siqueira, W.L.; Garrido, S.S.
Reducing Functional Domain of Histatin 5 Improves Antifungal Activity and Prevents Proteolytic Degradation. Microorganisms 2025, 13, 1091.
https://doi.org/10.3390/microorganisms13051091
AMA Style
Zambom CR, Silva GDBd, Fonseca FHd, Zolin GVS, Melo Faceto Portella Md, Marin LM, Crusca E, Krol ES, Siqueira WL, Garrido SS.
Reducing Functional Domain of Histatin 5 Improves Antifungal Activity and Prevents Proteolytic Degradation. Microorganisms. 2025; 13(5):1091.
https://doi.org/10.3390/microorganisms13051091
Chicago/Turabian Style
Zambom, Carolina R., Gabriel Dalio Bernardes da Silva, Fauller Henrique da Fonseca, Gabriela Vieira Silva Zolin, Mariana de Melo Faceto Portella, Lina Maria Marin, Edson Crusca, Ed S. Krol, Walter L. Siqueira, and Saulo Santesso Garrido.
2025. "Reducing Functional Domain of Histatin 5 Improves Antifungal Activity and Prevents Proteolytic Degradation" Microorganisms 13, no. 5: 1091.
https://doi.org/10.3390/microorganisms13051091
APA Style
Zambom, C. R., Silva, G. D. B. d., Fonseca, F. H. d., Zolin, G. V. S., Melo Faceto Portella, M. d., Marin, L. M., Crusca, E., Krol, E. S., Siqueira, W. L., & Garrido, S. S.
(2025). Reducing Functional Domain of Histatin 5 Improves Antifungal Activity and Prevents Proteolytic Degradation. Microorganisms, 13(5), 1091.
https://doi.org/10.3390/microorganisms13051091