Hobbs, B.E.; Matson, C.A.; Theofilou, V.I.; Webb, T.J.; Younis, R.H.; Barry, E.M.
Deletion Mutants of Francisella Phagosomal Transporters FptA and FptF Are Highly Attenuated for Virulence and Are Protective Against Lethal Intranasal Francisella LVS Challenge in a Murine Model of Respiratory Tularemia. Pathogens 2021, 10, 799.
https://doi.org/10.3390/pathogens10070799
AMA Style
Hobbs BE, Matson CA, Theofilou VI, Webb TJ, Younis RH, Barry EM.
Deletion Mutants of Francisella Phagosomal Transporters FptA and FptF Are Highly Attenuated for Virulence and Are Protective Against Lethal Intranasal Francisella LVS Challenge in a Murine Model of Respiratory Tularemia. Pathogens. 2021; 10(7):799.
https://doi.org/10.3390/pathogens10070799
Chicago/Turabian Style
Hobbs, Brandi E., Courtney A. Matson, Vasileios I. Theofilou, Tonya J. Webb, Rania H. Younis, and Eileen M. Barry.
2021. "Deletion Mutants of Francisella Phagosomal Transporters FptA and FptF Are Highly Attenuated for Virulence and Are Protective Against Lethal Intranasal Francisella LVS Challenge in a Murine Model of Respiratory Tularemia" Pathogens 10, no. 7: 799.
https://doi.org/10.3390/pathogens10070799
APA Style
Hobbs, B. E., Matson, C. A., Theofilou, V. I., Webb, T. J., Younis, R. H., & Barry, E. M.
(2021). Deletion Mutants of Francisella Phagosomal Transporters FptA and FptF Are Highly Attenuated for Virulence and Are Protective Against Lethal Intranasal Francisella LVS Challenge in a Murine Model of Respiratory Tularemia. Pathogens, 10(7), 799.
https://doi.org/10.3390/pathogens10070799