Pulliam, T.L.; Awad, D.; Han, J.J.; Murray, M.M.; Ackroyd, J.J.; Goli, P.; Oakhill, J.S.; Scott, J.W.; Ittmann, M.M.; Frigo, D.E.
Systemic Ablation of Camkk2 Impairs Metastatic Colonization and Improves Insulin Sensitivity in TRAMP Mice: Evidence for Cancer Cell-Extrinsic CAMKK2 Functions in Prostate Cancer. Cells 2022, 11, 1890.
https://doi.org/10.3390/cells11121890
AMA Style
Pulliam TL, Awad D, Han JJ, Murray MM, Ackroyd JJ, Goli P, Oakhill JS, Scott JW, Ittmann MM, Frigo DE.
Systemic Ablation of Camkk2 Impairs Metastatic Colonization and Improves Insulin Sensitivity in TRAMP Mice: Evidence for Cancer Cell-Extrinsic CAMKK2 Functions in Prostate Cancer. Cells. 2022; 11(12):1890.
https://doi.org/10.3390/cells11121890
Chicago/Turabian Style
Pulliam, Thomas L., Dominik Awad, Jenny J. Han, Mollianne M. Murray, Jeffrey J. Ackroyd, Pavithr Goli, Jonathan S. Oakhill, John W. Scott, Michael M. Ittmann, and Daniel E. Frigo.
2022. "Systemic Ablation of Camkk2 Impairs Metastatic Colonization and Improves Insulin Sensitivity in TRAMP Mice: Evidence for Cancer Cell-Extrinsic CAMKK2 Functions in Prostate Cancer" Cells 11, no. 12: 1890.
https://doi.org/10.3390/cells11121890
APA Style
Pulliam, T. L., Awad, D., Han, J. J., Murray, M. M., Ackroyd, J. J., Goli, P., Oakhill, J. S., Scott, J. W., Ittmann, M. M., & Frigo, D. E.
(2022). Systemic Ablation of Camkk2 Impairs Metastatic Colonization and Improves Insulin Sensitivity in TRAMP Mice: Evidence for Cancer Cell-Extrinsic CAMKK2 Functions in Prostate Cancer. Cells, 11(12), 1890.
https://doi.org/10.3390/cells11121890